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		    <title>PatentStorm ->  Applications -> Catalyst, solid sorbent, or support therefor: product or process of making</title>
		    <link>http://www.patentstorm.us/rss/class/applications/rss-502.xml</link>
		    <description>Recent patent applications filings in USPTO Class 502 Catalyst, solid sorbent, or support therefor: product or process of making.</description>
		    <pubDate>Thu, 16 Feb 2012 15:02:52</pubDate>
		    <managingEditor>patents@patentstorm.us</managingEditor>
		    <language>en</language><item>
			         <title><![CDATA[CATALYST FOR PRODUCING ALKENE, THE METHOD FOR PRODUCING THE SAME AND THE METHOD FOR PRODUCING ALKENE]]></title>
			         <link>http://www.patentstorm.us/applications/20120041247/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120041247</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Saihata, Meiko; Inoue, Gen</li></ul>The present invention relates to a catalyst for producing alkene using as a starting material alkane obtained by reducing an Mo—V—Te composite oxide having a crystal structure and being represented by formula (1):</p>
<p id="p-0002" num="0000">
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<span class="spFormula">Mo<sub>a</sub>V<sub>b</sub>Te<sub>c</sub>O<sub>d</sub>  (1)</span>
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        <li id="ul0002-0001" ...<br />]]></description>		         
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			         <title><![CDATA[NANOWIRE CATALYSTS]]></title>
			         <link>http://www.patentstorm.us/applications/20120041246/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120041246</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Cizeron, Joel M.; Gamoras, Joel; Scher, Erik C.; Karshtedt, Dmitry; Zurcher, Fabio R.; Schammel, Wayne P.; Tkachenko, Alex; Nyce, Greg</li></ul>Nanowires useful as heterogeneous catalysts are provided. The nanowire catalysts are useful in a variety of catalytic reactions, for example, the oxidative coupling of methane to ethylene. Related methods for use and manufacture of the same are also ...<br />]]></description>		         
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			         <title><![CDATA[OLIGOMERISATION OF OLEFINIC COMPOUNDS IN THE PRESENCE OF AN ACTIVATED OLIGOMERISATION CATALYST]]></title>
			         <link>http://www.patentstorm.us/applications/20120041241/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120041241</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Morgan, David Hedley; Dixon, John Thomas; Ewart, Sean William; Kolthammer, Brian William Stiring; Smith, David Matthew; Hanton, Martin John; De Bod, Henriette; Gabrielli, William Fullard; Evans, Stephen John</li></ul>This invention relates to the oligomerisation of olefinic compounds in the presence of an activated oligomerisation catalyst. The invention also extends to a particular manner for providing an activated oligomerisation catalyst. According to the present invention, there is provided a process for producing an oligomeric product by the oligomerisation of at least one olefinic compound, the process including (a) providing an activated oligomerisation catalyst by combining, in any order, iii) a ...<br />]]></description>		         
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			         <title><![CDATA[CATALYSTS AND METHOD FOR THE HYDROAMINATION OF OLEFINS]]></title>
			         <link>http://www.patentstorm.us/applications/20120041236/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120041236</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Heidemann, Thomas; Kehrer, Jens</li></ul>The present invention relates to a hydroamination catalyst comprising boron beta zeolites, wherein the hydroamination catalyst is doped with lithium, and also a process for producing it. The present patent application further relates to a process for preparing amines by reaction of ammonia or primary or secondary amines with olefins at elevated temperatures and pressures in the presence of the hydroamination catalyst of the ...<br />]]></description>		         
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			         <title><![CDATA[TWO-STAGE CALCINATION FOR CATALYST PRODUCTION]]></title>
			         <link>http://www.patentstorm.us/applications/20120041217/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120041217</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Allen, Stephen R.; Bhise, Vijay S.; Bortinger, Arie</li></ul>The invention relates to an improved process for producing a catalyst useful for the epoxidation of ethylene to ethylene oxide. In forming the catalyst, a silver-impregnated support is subjected to two calcinations. The support is subjected to a first calcination in a first atmosphere comprising air. Next the support is subjected to a second calcination in a second atmosphere which is substantially entirely comprised of inert gas, and which second atmosphere is substantially absent of hydrogen. ...<br />]]></description>		         
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			         <title><![CDATA[ADDITIVES TO CHROMIUM CATALYST MIX TANK]]></title>
			         <link>http://www.patentstorm.us/applications/20120041160/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120041160</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Collins, Kathy S.; Benham, Elizabeth A.; McDaniel, Max P.</li></ul>Systems and methods for the maintenance of active chromium-based catalysts and their use in polymerization processes are described. In one embodiment, a system for the introduction of multiple polymerization components to activate a chromium based catalyst within a mix tank is described. Other described features may include materials and methods to purify the liquid medium of a catalyst slurry so that the catalyst slurry maintains a high level of activity. The active chromium-based catalyst may ...<br />]]></description>		         
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			         <title><![CDATA[GEL FORMING SOLUTION AND METHOD FOR PRODUCING GEL]]></title>
			         <link>http://www.patentstorm.us/applications/20120041076/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120041076</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventor:</strong> &nbsp;HIRUMA, Kei</li></ul>A method for producing a gel includes a liquid droplet ejection step in which a first liquid is ejected in the form of a droplet to a second liquid to allow the first liquid and the second liquid to react with each other, thereby producing a gel. The first liquid is a gel forming solution containing an alcohol-based solvent, wherein the alcohol-based solvent is contained therein in an amount of 4% or more by weight and less than 70% by weight of the total amount of the gel forming ...<br />]]></description>		         
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			         <title><![CDATA[Hydrogen Storage Material and Method for Producing the Same]]></title>
			         <link>http://www.patentstorm.us/applications/20120040825/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040825</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Furuta, Terumi; Kanoya, Izuru; Hosoe, Mitsuya; Sakai, Hiroshi</li></ul>A mixed powder of AlH<sub>3 </sub>and MgH<sub>2 </sub>is ball-milled in a hydrogen atmosphere while applying force of 5 G through 30 G (in which G is gravitational acceleration), and the thus-obtained milled product is dehydrogenated to produce a hydrogen storage material. The hydrogen storage material comprises an amorphous phase containing an Al—Mg alloy as a mother phase, and a crystalline Al phase having a maximum length of 100 nm or less, the crystalline Al phase being distributed as a ...<br />]]></description>		         
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			         <title><![CDATA[EXHAUST GAS-PURIFYING CATALYST]]></title>
			         <link>http://www.patentstorm.us/applications/20120040824/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040824</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Kanazawa, Takaaki; Takeuchi, Michihiko; Katoh, Satoru; Takahashi, Naoki; Kamada, Masaya; Itou, Minoru; Shinozaki, Tetsuya; Suzuki, Tadashi</li></ul>An exhaust gas-purifying catalyst includes a support provided with one or more through-holes through which exhaust gas flows, and a catalytic layer supported by the support and containing an oxygen storage material. The exhaust gas-purifying catalyst includes a first section to which the exhaust gas is supplied, and a second section to which the exhaust gas having passed through the first section is supplied. The catalytic layer includes a layered structure of a first catalytic layer containing ...<br />]]></description>		         
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			         <title><![CDATA[METHOD FOR PRODUCING CATALYST FOR USE IN PREFERENTIAL OXIDATION REACTION OF CARBON MONOXIDE]]></title>
			         <link>http://www.patentstorm.us/applications/20120040823/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040823</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Matsumoto, Takaya; Iwasa, Yasuyuki</li></ul>The present invention provides a method for producing a catalyst for use in preferential carbon monoxide oxidation, which catalyst has a high preferential carbon monoxide oxidation activity and a high methanation activity with respect to the carbon monoxide contained in hydrogen gas, can thus stably reduce the carbon monoxide concentration to an extremely lower level and comprises porous inorganic oxide support particles and, on the basis of the mass thereof, 0.01 to 10 percent by mass of ...<br />]]></description>		         
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			         <title><![CDATA[Non-destructive process for the elimination of silicon from alumina based materials]]></title>
			         <link>http://www.patentstorm.us/applications/20120040822/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040822</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Pérez Romo, Patricia; Julien Fripiat, José Marie Maurice; Rodríguez Otal, Luis Miguel; Vega Merino, Pedro Martín; Guzmán Castillo, María de Lourdes Alejandra; Aguilar Barrera, Candido; Armendáriz Herrera, Héctor; Hernández Beltrán, Francisco Javier</li></ul>The present invention refers to a method for eliminating silicon or silicon compounds that are contained in alumina based materials without destroying such alumina based materials allowing for their reutilization, its main application is being the regeneration of alumina based catalyst contaminated with silicon, which are used in hydro-treating processes in the oil industry for sulfur elimination and silicon removal from process streams. It is important to note that the procedures and/or ...<br />]]></description>		         
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			         <title><![CDATA[PROCESS FOR IN-SITU CLEANING OF DRINKING WATER FILTRATION MEDIA]]></title>
			         <link>http://www.patentstorm.us/applications/20120040821/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040821</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Schulhoff, Jeffrey; Reimann-Philipp, Ulrich; Zwanziger, Friedrich Wolfgang</li></ul>The present invention provides a process to clean water filtration media in a filtration bed. The process includes applying a granular cleaner to the water filtration media and applying an activator to the water filtration media. This causes a chemical reaction between the granular cleaner, activator and water filtration media resulting in the cleaning of the water filtration media. The residual granular cleaner and activator, along with suspended and dissolved contamination from the water ...<br />]]></description>		         
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			         <title><![CDATA[CATALYST EXHIBITING HYDROGEN SPILLOVER EFFECT]]></title>
			         <link>http://www.patentstorm.us/applications/20120040820/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040820</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;INUI (DECEASED), TOMOYUKI; INUI, MASAYUKI; KIMURA, TAKUMA; AL-SALEH, MOHAMMAD ABDULLAH; REDHWI, HALIM HAMID; ALI, MOHAMMAD ASHRAF; AHMED, SHAKEEL</li></ul>The catalyst exhibiting hydrogen spillover effect relates to the composition of a catalyst exhibiting hydrogen spillover effect and to a process for preparing the catalyst. The catalyst has a reduced transition base metal of Group VIB or Group VIIIB, such as cobalt, nickel, molybdenum or tungsten, supported on a high porous carrier, such as saponite, the base metal being ion-exchanged with at least one precious metal of Group VIIIB. The process includes the steps of loading the base metal onto ...<br />]]></description>		         
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			         <title><![CDATA[METHOD OF PRODUCING PHOTOCATALYST LAYER]]></title>
			         <link>http://www.patentstorm.us/applications/20120040819/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040819</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventor:</strong> &nbsp;Matsuda, Norio</li></ul>A method of producing a photocatalyst layer can increase a photocatalyst effect without increasing light irradiation energy for activation. The method includes: an irradiation process of irradiating an ultraviolet ray on a titanium oxide layer formed on a substrate, an aqueous photocatalyst solution application process of applying an aqueous photocatalyst solution containing fine particles on the titanium oxide layer to form a photocatalyst layer, and a drying process of drying the ...<br />]]></description>		         
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			         <title><![CDATA[SURFACE-TREATED PRECOATED METAL SHEET, PROCESS FOR PRODUCING SAME, AND SURFACE-TREATING SOLUTION]]></title>
			         <link>http://www.patentstorm.us/applications/20120040194/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040194</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Kanai, Takao; Kanai, Hiroshi; Nomura, Hiromasa; Hamamura, Tomonari; Oyokawa, Hiroyuki</li></ul>Disclosed is a surface-treated precoated metal sheet of which resistance against contamination with a photocatalyst and a self-cleaning function can be retained for a long period. Also disclosed are a method and a surface-treating solution for producing the surface-treated precoated metal sheet properly. The surface-treated precoated metal sheet is characterized by comprising a precoated metal sheet comprising an under metal sheet and an organic resin coating layer provided on the surface of ...<br />]]></description>		         
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			         <title><![CDATA[Process For Preparing Catalyst Composition For The Synthesis Of Carbon Nanotube With High Yields Using The Spray Pyrolysis Method]]></title>
			         <link>http://www.patentstorm.us/applications/20120040186/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120040186</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Kim, Dong Hwan; Choi, Namsun; Jang, Youngchan; Ryu, Sang-Hyo; Sung, Hyun-Kyung; Lee, Wan Sung</li></ul>The present invention relates to a process for preparing catalyst composition for the synthesis of carbon nanotube with high yields using the spray pyrolysis method. More particularly, this invention relates to a process for preparing catalyst composition for the synthesis of carbon nanotube comprising the steps of i) dissolving multi-component metal precursors of catalyst composition in de-ionized water; ii) spraying obtained catalytic metal precursor solution into the high temperature reactor ...<br />]]></description>		         
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			         <title><![CDATA[CATALYST-COATED SUPPORT, METHOD FOR PRODUCING THE SAME, REACTOR COMPRISING THE SAME AND USE THEREOF]]></title>
			         <link>http://www.patentstorm.us/applications/20120039775/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120039775</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Becker, Frank; Machnik, Reinhard; Schirmeister, Steffen; Langanke, Bernd; Büker, Karsten; Geisselmann, Andreas; Markowz, Georg; Schmitz-Niederau, Martin; Schwarz, Klaus Thomas; Klemm, Elias Johannes</li></ul>Supports having a catalytic coating comprising at least one porous and cavity-containing catalyst layer are described, cavities being irregular spaces having dimensions greater than 5 μm in at least two dimensions or having cross-sectional areas of at least 10 μm<sup>2</sup>.</p>
<p id="p-0002" num="0000">The catalytic coatings are distinguished by a high adhesive strength and can preferably be used in ...<br />]]></description>		         
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			         <title><![CDATA[ZEOLITE-BASED SCR CATALYSTS AND THEIR USE IN DIESEL ENGINE EMISSION TREATMENT]]></title>
			         <link>http://www.patentstorm.us/applications/20120039759/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120039759</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Narula, Chaitanya K.; Yang, Xiaofan</li></ul>A catalyst comprising a zeolite loaded with copper ions and at least one trivalent metal ion other than Al<sup>+3</sup>, wherein the catalyst decreases NO<sub>x </sub>emissions in diesel exhaust. The trivalent metal ions are selected from, for example, trivalent transition metal ions, trivalent main group metal ions, and/or trivalent lanthanide metal ions. In particular embodiments, the catalysts are selected from Cu—Fe-ZSM5, Cu—La-ZSM-5, Fe—Cu—La-ZSM5, Cu—Sc-ZSM-5, and Cu—In-ZSM5. ...<br />]]></description>		         
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			         <title><![CDATA[POROUS BLOCK NANOFIBER COMPOSITE FILTERS]]></title>
			         <link>http://www.patentstorm.us/applications/20120037560/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037560</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Ginley, David S.; Curtis, Calvin J.; Miedaner, Alexander; Weiss, Alan J.; Paddock, Arnold</li></ul>Porous block nano-fiber composite (<b>110</b>), a filtration system (<b>10</b>) and methods of using the same are disclosed. An exemplary porous block nano-fiber composite (<b>110</b>) includes a porous block (<b>100</b>) having one or more pores (<b>200</b>). The porous block nano-fiber composite (<b>110</b>) also includes a plurality of inorganic nano-fibers (<b>211</b>) formed within at least one of the pores ...<br />]]></description>		         
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			         <title><![CDATA[Multi-Metallic bulk catalyst with layered structure and method for the preparation and use thereof]]></title>
			         <link>http://www.patentstorm.us/applications/20120037541/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037541</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Li, Can; Jiang, Zongxuan; Wang, Lu; Zhang, Yuliang</li></ul>The invention discloses a multi-metallic bulk catalyst with layered structure, wherein the metals in the multi-metallic bulk catalyst is consisted of a Group VIII metal M<sub>I</sub>, at least one metal M<sub>II </sub>with the valence of +3 and at least two Group VIB metals M<sub>III</sub>+M<sub>IV</sub>, wherein (the mole number of M<sub>I</sub>+the mole number of M<sub>II</sub>):(the mole number of M<sub>III</sub>+the mole number of M<sub>IV</sub>) is from 1:9 to 9:1; the mole number of ...<br />]]></description>		         
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			         <title><![CDATA[Hydrotreating Catalyst Containing Phosphorus And Boron]]></title>
			         <link>http://www.patentstorm.us/applications/20120037540/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037540</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Nieman, Jan; Oogjen, Bob Gerardus; Tromp, Henk Jan; Jansen, Marcel Adriaan; Thoonen, Sander Hendrikus Lambertus; Veerman, Wilhelmus Clemens Jozef</li></ul>A catalyst having at least one Group VIB metal component, at least one Group VIII metal component, a phosphorus component, and a boron-containing carrier component. The amount of the phosphorus component is at least 1 wt %, expressed as an oxide (P<sub>2</sub>O<sub>5</sub>) and based on the total weight of the catalyst, and the amount of boron content is in the range of about 1 to about 13 wt %, expressed as an oxide (B<sub>2</sub>O<sub>3</sub>) and based on the total weight of the catalyst. In ...<br />]]></description>		         
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			         <title><![CDATA[METHOD FOR PRODUCING METAL NANOPARTICLES AND NANOPARTICLES OBTAINED IN THIS WAY AND USE THEREOF]]></title>
			         <link>http://www.patentstorm.us/applications/20120037041/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120037041</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Nolte, Ulrich; Berkei, Michael; Sawilowski, Thomas</li></ul>The invention relates to a method for producing metal nanoparticles, wherein metal ions are reduced by means of at least one reducing agent in the presence of at least one polymer stabilizer and are converted into metal nanoparticles. The invention further relates to metal nanoparticles obtained in this way and to the use ...<br />]]></description>		         
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			         <title><![CDATA[NOx Storage and Reduction Catalyst, Preparation Method, and NOx Removing System]]></title>
			         <link>http://www.patentstorm.us/applications/20120036840/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120036840</li><li><strong>Publication Date:</strong> &nbsp;2012-02-16</li><li><strong>Inventors:</strong> &nbsp;Park, Sang Jun; Lee, Jin Ha; Nam, In-Sik; Youn, Young-Kee</li></ul>A catalyst for NOx storage and reduction may include a carrier that contains alkali metal and Al, or alkali earth metal and Al, a NOx storage element of alkali metal, alkali earth metal or rare earth element, and one or more noble metals that are selected from the group consisting of Pt, Pd, Ru, Ag, Au and Rh. The catalyst for NOx storage and reduction shows excellent NOx storage and reduction capability, maintains excellent storage and reduction capability especially before and after ...<br />]]></description>		         
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			         <title><![CDATA[PLATINUM/CARBON NANOTUBE CATALYST, THE PREPARATION PROCESS AND USE THEREOF]]></title>
			         <link>http://www.patentstorm.us/applications/20120035388/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120035388</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Chen, Zhijian; Li, Can</li></ul>This invention provides a platinum/carbon nanotube catalyst applicable to heterogeneous asymmetric hydrogenation, which is fabricated by supporting platinum on carbon nanotube carriers. The catalyst is prepared by the steps of: heating purified carbon nanotubes in nitric acid, filtering and washing the same with water until pH value of the filtrate becomes neutral, drying the carbon nanotubes; immersing the carbon nanotube carriers obtained in an aqueous chloroplatinic acid solution and ...<br />]]></description>		         
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			         <title><![CDATA[CATALYST COMPONENT USED FOR OLEFIN POLYMERIZATION, PROCESS FOR PREPARING THE SAME, AND CATALYST CONTAINING THE SAME]]></title>
			         <link>http://www.patentstorm.us/applications/20120035338/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120035338</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Tan, Zhong; Wang, Ying; Yan, Lian; Xu, Xiudong; Zhou, Qilong; Song, Weiwei; Li, Fengkul; Yin, Shanshan; Yu, Jinhua; Ren, Chunghong</li></ul>A process for preparing a solid particle-type catalyst component used for olefin polymerization which contains magnesium, titanium, a halogen and an electron donor as essential ingredients, a catalyst component obtained by said process, and a catalyst containing the catalyst component are ...<br />]]></description>		         
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			         <title><![CDATA[CATALYST COMPOSITION FOR PRODUCTION OF RIGID POLYURETHANE FOAM AND ISOCYANURATE-MODIFIED RIGID POLYURETHANE FOAM AND RAW-MATERIAL COMPOSITION CONTAINING THE SAME]]></title>
			         <link>http://www.patentstorm.us/applications/20120035289/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120035289</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Tamano, Yutaka; TOKUMOTO, Katsumi</li></ul>An object of the present invention is to provide a catalyst for producing a rigid polyurethane foam and an isocyanurate-modified rigid polyurethane foam excellent in storage stability in the case that water is contained as a blowing agent, and a raw material-blended composition using the same.</p>
<p id="p-0002" num="0000">In the present invention, a catalyst composition comprising the following amine compounds of (A) and (B) and/or (C) is used and further, a raw material-blended composition ...<br />]]></description>		         
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			         <title><![CDATA[PROCESSES FOR PREPARING AMINES AND ZIRCONIUM DIOXIDE- AND NICKELCONTAINING CATALYSTS FOR USE THEREIN]]></title>
			         <link>http://www.patentstorm.us/applications/20120035049/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120035049</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Hoffer, Bram Willem; Evers, Holger; Kubanek, Petr; Schwab, Ekkehard; Melder, Johann-Peter; Gerlach, Till</li></ul>A catalytically active composition comprising, prior to reduction with hydrogen: 10 to 75% by weight of an oxygen compound of zirconium, calculated as ZrO<sub>2</sub>; 1 to 30% by weight of an oxygen compound of copper, calculated as CuO; 10 to 50% by weight of an oxygen compound of nickel, calculated as NiO; 10 to 50% by weight of an oxygen compound of cobalt, calculated as CoO; and 0.1 to 10% by weight of one or more oxygen compounds of one or more metals selected from the group consisting of ...<br />]]></description>		         
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			         <title><![CDATA[Composition Based on Zirconium Oxides, Praseodymium, Lanthanum or Neodymium, Method for the Preparation and Use Thereof in a Catalytic System]]></title>
			         <link>http://www.patentstorm.us/applications/20120035048/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120035048</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Rohart, Emmanuel; Moissonnier, Philippe; Larcher, Olivier</li></ul>The composition is based on zirconium oxide and at least one additive selected from zirconium oxide and at least one additive chosen from praseodymium, lanthanum or neodymium oxides, has a specific surface of at least 29 m 2/g after calcination at 1000° C. during a period of 10 hours and is obtained by a method wherein a mixture of zirconium compounds and additive is precipitated with a base; the medium thus obtained, containing a precipitate, is heated and a compound chosen from anionic ...<br />]]></description>		         
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			         <title><![CDATA[CATALYST AND PROCESS FOR OBTAINING CATALYST OF HIGH ACTIVITY]]></title>
			         <link>http://www.patentstorm.us/applications/20120035047/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120035047</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Tatizawa, Noemi; Correia Da Silva, Jaime; De Carvalho Pinto Freitas, Danielle; Simone Zanco Palma, Katia; Faraco Amorim, Richard; Dos Santos Silveira, Leandro</li></ul>The present invention relates to a process for obtaining a catalyst of high activity based on a mixture of supports, more specifically, the mixture of supports being Al<sub>2</sub>O<sub>3 </sub>plus MgCl<sub>2</sub>, intended for the production of polyolefins. The catalyst of the present invention involves the use of a spherical support based on special alumina that serves as a porous matrix, which is impregnated, by precipitation, with magnesium chloride by dissolving the latter in ethers ...<br />]]></description>		         
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			         <title><![CDATA[Oil spill remediation, oil recovery product and process]]></title>
			         <link>http://www.patentstorm.us/applications/20120031847/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031847</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventor:</strong> &nbsp;Shook, Kraig</li></ul>An oil sorbent material particularly for removing an oil slick from water is hydrophobic, in the form of a free-flowing dry powder, and preferentially absorbs oil from the slick, forming buoyant clumps which are easily skimmed or screened from water. Absorbed oil can be recovered from the clumps of sorbent material by several methods including solvent extraction, and heating to liquefy or vaporize the absorbed oil, allowing recovery of a significant fraction of oil spilled on or in ...<br />]]></description>		         
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			         <title><![CDATA[AGGLOMERATION OF HIGH SURFACE AREA RARE EARTHS]]></title>
			         <link>http://www.patentstorm.us/applications/20120031827/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120031827</li><li><strong>Publication Date:</strong> &nbsp;2012-02-09</li><li><strong>Inventors:</strong> &nbsp;Burba, John L.; Hassler, Carl R.; Lahlouh, John; Wright, Brandt; Lupo, Joseph A.; Whitehead, Charles F.; Vogdes, Chris</li></ul>The subject invention relates generally to friable metal oxide agglomerates and specifically to agglomerates containing high surface area rare earth-containing materials and a polymeric ...<br />]]></description>		         
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			         <title><![CDATA[Catalyst Composition and Process for Oligomerization of Ethylene]]></title>
			         <link>http://www.patentstorm.us/applications/20120029258/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029258</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Mosa, Fuad; Wöhl, Anina; Rosenthal, Uwe; Peulecke, Normen; Müller, Bernd H.; Al-Hazmi, Mohammed; Müller, Wolfgang; Peitz, Stephan; Bött, Heinz; Meiswinkel, Andreas; Aluri, Bhaskar Reddy; Al-Masned, Mohammed; Al-Eidan, Khalid</li></ul>The present invention relates to a catalyst composition for oligomerization of ethylene, comprising a chromium compound; a ligand of the general structure R<sub>1</sub>R<sub>2</sub>P—N(R<sub>3</sub>)—P(R<sub>4</sub>)—N(R<sub>5</sub>)—H, wherein R<sub>1</sub>, R<sub>2</sub>, R<sub>3</sub>, R<sub>4 </sub>and R<sub>5 </sub>are independently selected from halogen, amino, trimethylsilyl, C<sub>1</sub>-C<sub>10</sub>-alkyl, aryl and substituted aryl; a modifier containing organic or inorganic ...<br />]]></description>		         
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			         <title><![CDATA[ORDERED COBALT-ALUMINUM AND IRON-ALUMINUM INTERMETALLIC COMPOUNDS AS HYDROGENATION CATALYSTS]]></title>
			         <link>http://www.patentstorm.us/applications/20120029254/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029254</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Schlogl, Robert; Grin, Juri; Kovnir, Kirill; Armbruster, Marc; Gille, Peter; Heggen, Marc; Feuerbacher, Michael</li></ul>The present invention relates to a process for the hydrogenation, in particular the selective hydrogenation of unsaturated hydrocarbon compounds, such as the selective hydrogenation of acetylene to ethylene, using a hydrogenation catalyst comprising an ordered intermetallic compound, namely an ordered cobalt-aluminum or iron-aluminum intermetallic compound. According to another aspect, the present invention relates to a catalyst comprising a support and at least one specific ordered ...<br />]]></description>		         
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			         <title><![CDATA[METHOD FOR PRODUCING CARBONYL COMPOUND, CATALYST, AND METHOD FOR PRODUCING CATALYST]]></title>
			         <link>http://www.patentstorm.us/applications/20120029241/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029241</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Kobayashi, Shu; Matsubara, Ryosuke; Miyamura, Hiroyuki; Yamada, Jun</li></ul>The method for producing a carbonyl compound according to the invention comprises a step of obtaining a carbonyl compound by oxidation of a secondary alcohol in the presence of a catalyst, wherein the catalyst comprises a carrier obtained by the use of a styrene-based polymer with side chains containing crosslinkable functional groups, wherein the crosslinkable functional groups in the carrier are crosslinked, gold-platinum nanosize clusters supported on the carrier and carbon black supported ...<br />]]></description>		         
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			         <title><![CDATA[SUPPORTED CATALYST SYSTEMS AND METHOD OF MAKING BIODIESEL PRODUCTS USING SUCH CATALYSTS]]></title>
			         <link>http://www.patentstorm.us/applications/20120029218/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029218</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Yan, Shuli; Kim, Manhoe; Salley, Steven O; NG, K.Y. Simon</li></ul>A heterogeneous catalyst system, a method of preparing the catalyst system and a method of forming a biodiesel product via transesterification reactions using the catalyst system is disclosed. The catalyst system according to one aspect of the present disclosure represents a class of supported mixed metal oxides that include at least calcium oxide and another metal oxide deposited on a lanthanum oxide or cerium oxide support. Preferably, the catalysts include ...<br />]]></description>		         
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			         <title><![CDATA[Epoxy Curing Compositions and Methods]]></title>
			         <link>http://www.patentstorm.us/applications/20120029156/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029156</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Shah, Shailesh; Natesh, Anbazhagan; Ananthachar, Sudhir; Polykarpov, Alexander Y.</li></ul>Disclosed are accelerator/curing agent compositions for epoxy resins, comprising (a) at least one aromatic or alicyclic compound containing at least two amine moieties, such amine-containing aromatic or alicyclic compound(s) preferably having from 3 to 5 amine hydrogens per compound and preferably two primary amines per compound, (b) at least one aliphatic compound containing at least two amine moieties, such compound(s) preferably having from 2 to 4 amine hydrogens per compound and one primary ...<br />]]></description>		         
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			         <title><![CDATA[OLEFIN SELECTIVE FT CATALYST COMPOSITION AND PREPARATION THEREOF]]></title>
			         <link>http://www.patentstorm.us/applications/20120029096/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120029096</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Crous, Reinier; Bromfield, Tracy Carolyn; Booyens, Sharon</li></ul>The present invention relates to a hydrocarbon synthesis catalyst comprising in its unreduced form a) Fe as catalytically active metal, b) an alkali metal and/or alkaline-earth metal in an alkali metal- and/or alkaline-earth metal-containing promoter, the alkali metal, c) and a further promoter comprising, or consisting of, one or more element(s) selected from the group of boron, germanium, nitrogen, phosphorus, arsenic, antimony, sulphur, selenium and tellurium, to a process for the synthesis ...<br />]]></description>		         
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			         <title><![CDATA[POROUS SUBSTRATES FILLED WITH NANOMATERIALS]]></title>
			         <link>http://www.patentstorm.us/applications/20120028798/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028798</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Satcher, JR., Joe H.; Baumann, Theodore F.; Worsley, Marcus A.; Stadermann, Michael</li></ul>A composition comprising: at least one porous carbon monolith, such as a carbon aerogel, comprising internal pores, and at least one nanomaterial, such as carbon nanotubes, disposed uniformly throughout the internal pores. The nanomaterial can be disposed in the middle of the monolith. In addition, a method for making a monolithic solid with both high surface area and good bulk electrical conductivity is provided. A porous substrate having a thickness of 100 microns or more and comprising ...<br />]]></description>		         
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			         <title><![CDATA[METAL CATALYST SUBSTRATE AND ITS MANUFACTURING METHOD]]></title>
			         <link>http://www.patentstorm.us/applications/20120028797/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028797</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Tanabe, Hiroshi; Sano, Akio; Kodama, Hiroshi; Nishizawa, Kimiyoshi; Oinuma, Misao</li></ul>A metal catalyst substrate <b>1</b> is equipped with a honeycomb body <b>2</b> in which a corrugated metal foil <b>4</b> and a flat metal foil <b>5</b> are multiply rolled, their leader portions being overlapped with each other. A restricting portion <b>8</b> is formed at a core portion <b>7</b> of the honeycomb body <b>2</b> by a portion of the core portion being deformed to restrict flow of exhaust gas in a core portion <b>7. ...<br />]]></description>		         
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			         <title><![CDATA[NICOTINE ADSORBENT, QUINOLINE ADSORBENT, BENZOPYRENE ADSORBENT, TOLUIDINE ADSORBENT, AND CARCINOGEN ADSORBENT]]></title>
			         <link>http://www.patentstorm.us/applications/20120028796/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028796</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Yamanoi, Shun; Iida, Hironori; Yamada, Shinichiro; Tabata, Seiichiro; Minatoya, Machiko</li></ul>A nicotine adsorbent includes a porous carbon material having a specific surface area of 10 m<sup>2</sup>/g or more according to the nitrogen BET method and a pore volume of 0.2 cm<sup>3</sup>/g or more according to the BJH ...<br />]]></description>		         
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			         <title><![CDATA[Methods For Producing Nanoparticles Using Palladium Salt And Uses Thereof]]></title>
			         <link>http://www.patentstorm.us/applications/20120028795/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028795</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Chan, Siu-Wai; Liang, Hongying</li></ul>The disclosed subject matter is directed to a method for producing nanoparticles, as well as the nanoparticles produced by this method. In one embodiment, the nanoparticles produced by the disclosed method have a high defect ...<br />]]></description>		         
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			         <title><![CDATA[CATALYSTS FOR THE PRODUCTION OF HYDROGEN]]></title>
			         <link>http://www.patentstorm.us/applications/20120028794/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028794</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Mysore, Narayana; Lam, Khiet Thanh; Murray, Brendan Dermot; Wellington, Scott Lee</li></ul>The invention provides a bio-based feedstock steam reforming catalyst comprising: a modified support; a metal component; and a promoter. The process also provides a method of preparing a bio-based feedstock steam reforming catalyst comprising: providing a support material comprising a transition metal oxide; providing a modifier comprising an alkaline earth element; contacting the support material with the modifier to form a modified support; providing a metal component comprising a Group VIII ...<br />]]></description>		         
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			         <title><![CDATA[DUAL-OXIDE SINTER RESISTANT CATALYST]]></title>
			         <link>http://www.patentstorm.us/applications/20120028793/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028793</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Fanson, Paul T.; Grayson, Benjamin Alan; Xia, Younan; Campbell, Charles Taylor; Dai, Yunqian; Lim, Byungkwon</li></ul>A catalyst material for use at elevated temperatures is provided. The material can include a plurality of fibers and a plurality of particles supported on the fibers. In addition, a porous layer can cover the plurality of particles and allow for process fluid to come into contact with the particles, and yet retard sintering of the particles at elevated temperatures is present. The plurality of fibers can be a plurality of nanofibers which may or may not be oxide nanofibers. The particles can be ...<br />]]></description>		         
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			         <title><![CDATA[METHOD FOR PRODUCING ELECTRODE CATALYST, AND ELECTRODE CATALYST]]></title>
			         <link>http://www.patentstorm.us/applications/20120028792/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028792</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Hattori, Takeshi; Ito, Yutaka; Maki, Hajime</li></ul>A method for producing an electrode catalyst, comprising a step of calcining a precursor of the electrode catalyst under conditions under which a second material defined below can change into a carbonaceous material,
<ul id="ul0001" list-style="none">
    <li id="ul0001-0001" num="0000">the precursor having been obtained by hydrothermally reacting a mixture containing a first material defined below and the second material defined below in the presence of supercritical or subcritical water, ...<br />]]></description>		         
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			         <title><![CDATA[Highly Reactive Photocatalytic Material and Manufacturing Thereof]]></title>
			         <link>http://www.patentstorm.us/applications/20120028791/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028791</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Westin, Gunnar; Österlund, Lars; Leideborg, Michael</li></ul>A method for manufacturing anatase TiO<sub>2 </sub>nanoparticles comprises mixing (210) of Ti-containing alkoxide precursors with a solvent into a precursor solution, hydrolyzing (212) the precursor solution to yield a mixture of a fine titanium containing precipitate and the solvent and hydrothermally treating (214) the precipitate at an elevated temperature in a basic medium. The basic medium is provided after the hydrolysis. The basic medium comprises basic amines. A highly active ...<br />]]></description>		         
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			         <title><![CDATA[NON-PLATINUM OXYGEN REDUCTION CATALYSTS FOR POLYMER ELECTROLYTE MEMBRANE FUEL CELL AND METHOD FOR PREPARING THE SAME]]></title>
			         <link>http://www.patentstorm.us/applications/20120028790/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028790</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Cho, Il Hee; Kim, Han Sung; Oh, Hyung-Suk; Kwon, Nak Hyun; Roh, Bum Wook</li></ul>Provided are a non-platinum oxygen reduction catalyst for a polymer electrolyte membrane fuel cell and a method for preparing the same. More particularly, an oxygen reduction catalyst in which chelated cobalt is impregnated on a conductive polymer coated on a carbon support and a method for preparing the oxygen reduction catalyst by coating a conductive polymer on a carbon support, impregnating chelated cobalt on the conductive polymer and then treating the same with heat and an acid are ...<br />]]></description>		         
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			         <title><![CDATA[CATALYST FOR REDUCING NITROGEN OXIDES AND METHOD FOR PRODUCING THE SAME]]></title>
			         <link>http://www.patentstorm.us/applications/20120028789/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028789</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Takewaki, Takahiko; Kakiuchi, Hiroyuki; MATSUO, Takeshi; Nishioka, Daisuke; Oshima, Kazunori; Chen, Haijun</li></ul>The object is to provide an exhaust gas reduction catalyst that exhibit high nitrogen oxide reduction performance, and to provide a simple and efficient method for producing the catalyst, in which the amount of the waste liquid is reduced, further, an object of the invention is to provide a zeolite-containing catalyst for reducing nitrogen oxides, which does not use an expensive noble metal or the like and which has high nitrogen oxide reduction performance. The present invention relates to a ...<br />]]></description>		         
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			         <title><![CDATA[Age-Resistant Catalyst for Oxidation of NO to NO2 in Exhaust Streams]]></title>
			         <link>http://www.patentstorm.us/applications/20120028788/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028788</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Wanninger, Klaus; Manoylova, Olga; Hutt, Markus; Tißler, Arno</li></ul>The present invention relates to a zeolite comprising platinum. The invention furthermore relates to a method for producing said zeolite comprising platinum according to the invention, to the use of said zeolite as an oxidation catalyst and hydrocarbon reservoir and to a catalyst component comprising the zeolite according to the ...<br />]]></description>		         
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			         <title><![CDATA[OPTICALLY TRANSPARENT GLASS AND GLASS-CERAMIC FOAMS, METHOD FOR PRODUCTION THEREOF AND USE THEREOF]]></title>
			         <link>http://www.patentstorm.us/applications/20120028329/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028329</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Scheffler, Michael; Ohl, Christiane; Olschewski, Christina; Wilker, Viola; Scheffler, Franziska</li></ul>The present invention relates to an optically transparent glass foam or glass-ceramic foam as well as to a method for the production of an optically transparent glass foam or glass-ceramic foam. A method is described for the production of optically transparent foams, wherein the following steps are conducted:</p>
<p id="p-0002" num="0000">a) Mixing of pre-ceramic Si polymer, glass powder and glass converter;
<br/>
b) Heating of the mixture to a temperature below the decomposition temperature of ...<br />]]></description>		         
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			         <title><![CDATA[ELECTRODE CATALYST AND METHOD OF PREPARING ELECTRODE CATALYST FOR FUEL CELL, AND MEMBRANE ELECTRODE ASSEMBLY AND FUEL CELL INCLUDING SAME]]></title>
			         <link>http://www.patentstorm.us/applications/20120028171/description.html</link>
			         <description><![CDATA[<ul><li><strong>Application Number:</strong> &nbsp;20120028171</li><li><strong>Publication Date:</strong> &nbsp;2012-02-02</li><li><strong>Inventors:</strong> &nbsp;Chang, Hyuk; Lee, Jae-sung; PAK, Chan-ho; Yoo, Dae-jong; Ham, Dong-jin; Han, Sueng-hoon; Bae, Gang-hong</li></ul>An electrode catalyst for a fuel cell, a membrane electrode assembly including the electrode catalyst, and a fuel cell including the electrode catalyst. The electrode catalyst has excellent electrochemical activity compared to the currently commercially available Pt/C catalyst and is much cheaper than a catalyst using platinum. The electrode catalyst includes tungsten carbide having a specific surface area of about 10 to about 30 m<sup>2</sup>/g, and a metal catalyst comprising palladium (Pd) ...<br />]]></description>		         
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