Sodium Hydroxide,三氯化铝置于hematite 水,Hematite体系中,用 水 作为反应溶剂,化学反应 0.5H,反应生成 六水三氯化铝 参考文献:Agent For Improving Chroma And Brightness Of Pigments 标题:Agent For Improving Chroma And Brightness Of Pigments 摘要:本发明涉及由碱性多聚铝或铝盐与基于氨基酸的阴离子表面活性剂反应所得的产品.这种剂对于提高颜料的色度和亮度特别有效,即使这种颜料经过混合处理与多聚铝盐混合.除此之外,多聚铝盐还增加了颜料的亲油性能,改善了它们的油分散性,并防止颜料出血.
专利信息
专利号:US-9422216-B2 优先权日:2012-08-27 标 题:Method for synthesis of lactic acid and its derivatives and catalyst for preparing same 发明人:ZHOU XIAOPING 权利人:MICROVAST POWER SYSTEMS CO LTD; MICROVAST POWER SYSTEMS CO LTD 摘要:The present disclosure provides a catalyst for preparing lactic acid and derivatives thereof, comprising at least one of metallic compounds MX n , wherein M is selected from Na, K, Mg, Ca, Sr, Ba, Al, Ga, In, Sn, Sb, Bi, Cr, Mn, Fe, Co, Ni and Zn, and n is an integer of 1 to 6. The present disclosure further provides a method for synthesis of lactic acid and derivatives thereof, wherein at least one raw material including carbohydrates, at least one alcohol, at least one of the aforesaid catalysts and at least one solvent are heated to react to prepare lactic acid and derivatives thereof.
专利号:US-11607677-B2 优先权日:2017-10-30 标 题:Homogeneous and reusable superacid polymer catalyst useful for the synthesis of 5-hydroxymethylfurfural from glucose 发明人:ALBA RUBIO ANA C; COLEMAN MARIA R; KALIDINDI SUBHASH; JOSHI ANUP S; OMODOLOR IBEH S 权利人:UNIV TOLEDO; TJIE UNIV OF TOLEDO 摘要:A superacid polymeric catalyst having both Lewis acidity and Brønsted acidity is described, along with methods of making and methods of using the same.
专利号:US-11298676-B2 优先权日:2017-10-17 标 题:Porous material for storing of molecules and its use 发明人:DEMEL JAN; HYNEK JAN 权利人:INST OF INORGANIC CHEMISTRY CAS 摘要:The invention concerns new types of porous coordination polymers (MOF) and a method for their preparation. MOFs have been prepared through synthesis of salts of trivalent cations M 3+ , the source of which are aluminium, chromium, iron or yttrium salts, it is advantageous if of chlorides, nitrates or sulphates, with linkers carrying two or more phosphinic groups under presence of solvent. Linkers are phenylene-1,4-bis(R phosphinic acid) (PBPA) and biphenylene-4,4′-bis(R phosphinic acid) (BBPA). For the prepared MOFs, the structure has been tested using x-ray powder diffraction, specific surface and porousness which have been characterised through adsorption isotherm of nitrogen and further the stability of prepared MOFs has been determined using thermogravimetric analysis. n All the prepared MOFs have been stable around 400° C. and have contained mesopores or micropores where hydrogen or CO 2 , for example, can be stored.
专利号:US-6033624-A 优先权日:1995-02-15 标题 :Methods for the manufacturing of nanostructured metals, metal carbides, and metal alloys 发明人:GONSALVES KENNETH E; RANGARAJAN SRI PRAKASH 权利人:UNIV CONNETICUT 摘要:Methods for the manufacture of nanostructured metals, metal carbides, and metal alloys are presented, such metals including nanostructured aluminum, chromium, iron, molybdenum, vanadium, and steel. Preferably, the nanostructured steel is of the M50 type, and comprises iron, molybdenum, chromium, vanadium and carbon. Synthesis of M50 steel further comprising nanostructured aluminum, aluminum oxide, or aluminum nitride is also described. In accordance with an important feature of this invention, the grain size of the metals and metal alloys is in the nanometer range. In accordance with the method of the present invention, the nanostructured metals, metal carbides, and metal alloys are prepared via chemical synthesis from aluminum, iron, molybdenum, chromium and vanadium starting materials. Decomposition of metal precursors or co-precipitation or precipitation of metal precursors is followed by consolidation of the resulting nanostructured powders. Alternatively, nanostructured M50 steel may be obtained by mixing of nanocrystalline chromium, iron, molybdenum, and vanadium powders, followed by ball-milling, and consolidation. The nanostructured metals, metal carbides, and metal alloys of this invention find particular utility in the manufacture of cutting tools and bearings, and in ferrofluids, magnetic memory systems, and catalysis.
专利号:US-9174849-B2 优先权日:2011-08-25 标题 :Molecular sieve precursors and synthesis of molecular sieves 发明人:MOINI AHMAD; ALERASOOL SAEED; PRASAD SUBRAMANIAN 权利人:MOINI AHMAD; ALERASOOL SAEED; PRASAD SUBRAMANIAN; BASF CORP 摘要:Molecular sieves, improved methods for their synthesis, and catalysts, systems and methods of using these molecular sieves as catalysts in a variety of processes such as abating pollutants in exhaust gases and conversion processes are described. The molecular sieves are made using a tailored colloid including an alumina source, a silica source and a structure directing agent.
专利号:US-2017121258-A1 优先权日:2014-04-10 标题 :Synthesis of r-glucosides, sugar alcohols, reduced sugar alcohols, and furan derivatives of reduced sugar alcohols 发明人:SANBORN ALEXANDRA; BINDER THOMAS P 权利人:ARCHER DANIELS MIDLAND CO 摘要:Disclosed herein are methods for synthesizing 1,2,5,6-hexanetetrol (HTO), 1,6 hexanediol (HDO) and other reduced polyols from C5 and C6 sugar alcohols or R glycosides. The methods include contacting the sugar alcohol or R-glycoside with a copper catalyst, most desirably a Raney copper catalyst with hydrogen for a time, temperature and pressure sufficient to form reduced polyols having 2 to 3 fewer hydoxy groups than the starting material. When the starting compound is a C6 sugar alcohol such as sorbitol or R-glycoside of a C6 sugar such as methyl glucoside, the predominant product is HTO. The same catalyst can be used to further reduce the HTO to HDO.
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