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Research Domain:Catalysis and Surface Science |
Country:[CN] |
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Characterization of active sites on solid surfaces and of reaction intermediates;
Interaction of metals with oxides, in particular zeolites, and other promoter effects;
Selectivity of advanced oxidation catalysis;
Environmental catalysis directed toward destruction of gaseous pollutants. |
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Research Domain:advanced materials |
Country:[CN] |
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1.Developing advanced technology for materials synthesis and processing, especially focused on the lower-dimension composite technology,including nano-composite technology and membrane–composite technology.
2.Developing advanced structural and functional materials,especially focused on functional materials for information technology,new energy application and biomedical application.
3.Developing the fundamental research and materials design, especially focused on the principle and design of materials with multi- composition and multi-scale microstructure.. |
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Research Domain:new chemical materials and chemical engineering processes. |
Country:[CN] |
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Fertilizer Catalyst;
Gas Purification Catalyst;
Chemical Material for Optical Communication;
Electronic Chemicals Products;
Fine Chemicals;
Pharmeceutical intermediate; |
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Research Domain:development and deployment of fuel cell technology and fuel cell systems |
Country:[CN] |
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Research is the foundation of the development mission of the NFCRC and encompasses five principal thrust areas:Systems, Operations, Analyses, Component/Enabling Technologies, Market
Systems:
Systems research consists of studies that address substantial systems development strategies for fuel cell technologies. A principal example is the hybrid cycle formed by integrating a fuel cell--as a topping or bottoming
cycle--with a gas turbine. Analyses project that the efficiency gains in such cycles can reach in excess of 70%. A Systems study analyzes, develops, and demonstrates such a system.
Operations:
Operations research addresses the operation of fuel cells and fuel cell systems, including the balance of plant, reliability, maintainability, grid connectivity, and operability. Such research is essential to understanding, projecting, evaluating, and enhancing performance in the marketplace.
Analyses:
This research encompasses the wide variety of analyses required to understand and upon the fundamental operation of fuel cell systems, and to project the corresponding impacts of fuel cell technologies in the marketplace. Included are systems analyses, cycle analyses, cost-benefit analyses, and market analyses.
Component/Enabling Technologies:
Component research includes sub systems of fuel cell technologies that require direct attention for the overall improvement of performance. Examples include fuel processors, materials, controls, inverters, and power electronics.
This research is the most akin to traditional university engineering research and is inspired by the beta testing activity. Component research is a critical asset to the siting of the NFCRC at UCI, in that fundamental research capabilities of the university may be drawn upon to enhance the basic science and engineering of fuel cell technology, and allow for its broader marketability by overcoming existing barriers of cost, size, and materials constraints.
The enabling technologies research is component research, which is on a critical time line, or is critical to the successful implementation of general or specific fuel cell technology. Examples could include reformer technology for a specific application, or inverter technology. Without the successful and rapid development of enabling technology research, the application and marketing of the fuel cell technology as a whole could be compromised.
Market:
Market research provides the foundation for directing the load range, the applications, and the operating characteristics of the fuel cell technologies. Historically, market research and business planning has not been integral to technology development. The NFCRC integrates this component, complementing it with leadership from the Outreach Advisory Committee to assure that the technologies developed domestic and international markets. |
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Research Domain:science and technology at the nanoscale |
Country:[CN] |
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The Lieber group is focused broadly on science and technology at the nanoscale. Central to the vision underlying this work is the idea that by developing and following a common intellectual path – a bottom-up paradigm for nanoscale science and technology – it will be possible to assemble virtually any kind of device or functional system, ranging from ultra-sensitive medical sensors to powerful nanocomputers, and also to explore new areas of science that exist, for example, at the interface between biology and nanotechnology.
We are committed to realizing this intellectual vision through studies currently focused on five major areas: (1) synthesis and characterization of novel nanoscale building blocks or materials, (2) elucidation of fundamental physical properties of the nanoscale building blocks, (3) hierarchical organization and interconnection of nanoscale building blocks in two and three dimensions, (4) design and demonstration of functional nanoscale devices and integrated nanosystems, and (5) exploration of the interface/communication between biological systems and nanoscale devices. This research by definition is highly interdisciplinary. Group members utilize and develop concepts and techniques from biology, chemistry, physics and the engineering sciences to achieve our goals. |
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Research Domain:drug |
Country:[CN] |
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Since the establishment of the Institute, more than 270 prizes have been awarded for its research achievements. More than 100 new drugs have been developed. Since the research fund system was established in China in 1986, the Institute has been granted approximately 500 research subjects of all kinds. 3100 scientific papers and 115 monographs have been published by staff members. More than 135 patents, both domestic and abroad, have been applied for.
In addition, a pharmaceutical plant - Beijing Union Pharmaceutical Factory is attached the institute. The main products are as follows: Artificial Moschus, Taxol injection, DDB, Homoharringtonine and Ftibamone. The latter three drugs are on sale in international market. The approval of the production of the novel anti-hepatitis drug Bicyclol developed by the institute was granted in October 2001. |
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Research Domain:phosphate industrial chemicals, fine industrial chemicals and calcium carbide, dissolved acetylene serials products |
Country:[CN] |
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Phosphoric Acid;Sodium Hexametaphosphate;Sodium Dihydrogen Phosphate, Anhydrous; Sodium Hydrogen Phosphate, Anhydrous;Sodium Phosphate, Anhydrous;Sodium Trimetaphosphate;Sodium Pyrophosphate, Anhydrous;Sodium Tripolyphosphate;Ammonium Dihydrogen Phosphate;Ammonium Hydrogen Phosphate |
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Research Domain:macromolecule synthetic materials |
Country:[CN] |
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AHF,F22,PTFE, PVDF, LFBX,CGF206、CGF218、SFN—1、SFN—A and 274、275 silicone fluid for high vacuum diffusion pum ,FPM26 fluororubber and CGZ—351, 352;Silicone fluid ,Organic silicone resin,Hexafluoropropylene,Polytetrafluoroethylene(PTFE),Polytetrafluoroethylene,EOCN,Fluoroelastomer,Poly(phenyl p-hydroxybenzoate) |
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Research Domain:chemical Reagent |
Country:[CN] |
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Methoxy ethoxy chloromethane,18-Crown-6,5-Fluoro-1H-indole-2,3-dione,Aminothiazoyloximoacelamide,Ethyl succinyl chloride(ESC),2,5-Dimercaplothiadiazole. |
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Research Domain:Petrochemical |
Country:[CN] |
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BPDI has all occupational qualification certificates issued by Chinese government, including: Class A engineering design qualification in chemical, petrochemical and pharmaceutical industries, design qualification of pressure vessels covering Class I, II and III and the design qualification of GB and GC pressure pipelines. Besides, BPDI has its ISO 9001:2000 quality assurance system certified. BPDI’s technical personnel cover all disciplines that are necessary for engineering consultation, engineering design, project-contracting and project management. BPDI has been very active in providing technical services for project consultation, project cost estimation, engineering design, project-contracting, project management, project supervision, etc. in such fields as petrochemical industry, chemical industry, rubber, building, building materials, light industry, textile, pharmaceuticals, environmental protection and so on. |
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