US-Indo Cooperative Research: Synthesis of Higher Alcohols from Synthesis Gas Through Modified Fischer-Tropsch Synthesis, Award in US and Indian Currency

美印合作研究:通过改进的费托合成法从合成气合成高级醇,获得美国和印度货币奖

基本信息

项目摘要

9515453 Dadyburjor Description: This proposal is for a US-Indo research collaboration between materials scientists Carlos Levi of the University of California, Santa Barbara and Vikram Jayaram of the Indian Institute of Science, Bangalore. The project is entitled "Phase Selection in Ceramic Oxides Under Non-Equilibrium Conditions." The investigators will study the evolution of oxide microstructures in ceramic oxides synthesized under conditions wherein thermodynamic equilibrium is highly constrained. The program will focus on relatively simple binary and higher component systems using techniques with proven potential to bring about substantial metastability. Compositions produced in this manner will be heat treated to study the hierarchy of states by which the non- equilibrium structure evolves towards a more stable one. The primary objective is to enhance the understanding of phase selection processes, their relationship to fundamental forms of metastability, as well as their impact on microstructure evolution through subsequent transformations. Scope: The PIs have extensive experience in this area and have collaborated productively in the past. The bulk of the experimental work will be carried out at the Indian Institute of Science. The US collaborator will provide guidance in the design of experiments and analysis of results, as well as access to atomization and characterization facilities at the UC, Santa Barbara. The research is expected to generate a mutually beneficial interaction with the ongoing research on the synthesis of structural ceramics and functional inorganic oxides at the NSF Materials Research Laboratory at UC. This project will provide a unique international opportunity for a US graduate student to participate in the experimental research at the IISc, Bangalore. *** This research will investigate small signal stability of electric power systems as affected by the ad dition of High Voltage DC (HVDC) lines and control devices such as Static Var Compensators (SVC), Power System Stabilizer (PSS) and other Flexible AC Transmission System (FACTS) devices. The objective will be to develop an overall linearized model to include the above mentioned devices and to examine their relative influence on dynamic stability. This research is important in determining the causes of low frequency oscillations and voltage collapse. Both of these are operating problems faced by utilities in both countries. Prof. M.A. Pai, University of Illinois Urbana will collaborate with Profs. D.P. Sen Gupta & L.R. Padiyar, Indian Institute of Science, Bangalore. The research team is exceptional. Prof. Pai is an internationally recognized leader in the use of direct methods for power system stability, Sen Gupta and Padiyar have done state-of-the-art system studies involving FACTS and adaptive PSS. Scope: This research will address a problem in the area of power systems that is of importance in the U.S. and India. While there is much accumulated experience in the U.S., the Indian academic institutions are very good at keeping up with state-of-the-art, and the power industry there quite mature in terms of their absorption of technology. The results expected from this collaboration include research papers, course development at the University of Illinois, and an advanced level monograph emanating from the research. ***
描述:该提案是由圣巴巴拉加利福尼亚大学的材料科学家Carlos Levi和班加罗尔印度科学研究所的Vikram Jayaram进行的美印研究合作。该项目名为“非平衡条件下陶瓷氧化物的相选择”。研究人员将研究在热力学平衡受到高度限制的条件下合成的陶瓷氧化物中氧化物微结构的演变。该计划将侧重于相对简单的二元和更高组分系统,使用已被证明有潜力带来实质性亚稳态的技术。以这种方式产生的组合物将被热处理,以研究由非平衡结构向更稳定结构演变的状态层次。主要目的是加强对相选择过程的理解,它们与亚稳态基本形式的关系,以及它们通过随后的转变对微观结构演变的影响。范围:pi在这个领域有丰富的经验,并且在过去有过富有成效的合作。大部分实验工作将在印度科学研究所进行。美国合作者将在实验设计和结果分析方面提供指导,以及访问加州大学圣巴巴拉分校的雾化和表征设施。该研究有望与加州大学NSF材料研究实验室正在进行的结构陶瓷和功能无机氧化物合成研究产生互利的相互作用。该项目将为一名美国研究生提供一个独特的国际机会,参与班加罗尔印度科学院的实验研究。***本研究将研究高压直流(HVDC)线路和控制设备(如静态无功补偿器(SVC)、电力系统稳定器(PSS)和其他柔性交流传输系统(FACTS)设备)对电力系统小信号稳定性的影响。目标是建立一个整体线性化模型,包括上述装置,并检查它们对动态稳定性的相对影响。这项研究对于确定低频振荡和电压崩溃的原因具有重要意义。这两个问题都是两国公用事业公司面临的运营问题。伊利诺伊大学厄巴纳分校的M.A. Pai教授将与D.P. Sen Gupta & L.R. Padiyar,印度科学研究所,班加罗尔。这个研究团队是独一无二的。Pai教授是国际公认的使用直接方法实现电力系统稳定性的领导者,Sen Gupta和Padiyar已经完成了最先进的系统研究,包括FACTS和自适应PSS。范围:本研究将解决美国和印度电力系统领域的一个重要问题。虽然美国积累了很多经验,但印度的学术机构非常善于跟上最先进的技术,而且印度的电力行业在吸收技术方面相当成熟。此次合作的预期成果包括研究论文、伊利诺伊大学的课程开发以及由研究产生的高级专著。* * *

项目成果

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Dady Dadyburjor其他文献

Dady Dadyburjor的其他文献

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{{ truncateString('Dady Dadyburjor', 18)}}的其他基金

Support for Thirteenth North American Meeting, Catalysis Society, to be held May 2-7, 1993 in Pittsburgh, PA
支持将于 1993 年 5 月 2-7 日在宾夕法尼亚州匹兹堡举行的第十三届北美催化学会会议
  • 批准号:
    9224886
  • 财政年份:
    1993
  • 资助金额:
    $ 1.69万
  • 项目类别:
    Standard Grant
Travel to attend: Fourth Symposium on Catalyst Deactivation Antwerp, Belgium, Sept. 28-Oct. 1, 1987
前往参加:第四届催化剂失活研讨会,比利时安特卫普,9 月 28 日至 10 月。
  • 批准号:
    8719016
  • 财政年份:
    1987
  • 资助金额:
    $ 1.69万
  • 项目类别:
    Standard Grant
Determination of Site Suppression and Pore Choking of a Cracking Catalyst
裂化催化剂位点抑制和孔堵塞的测定
  • 批准号:
    8600329
  • 财政年份:
    1986
  • 资助金额:
    $ 1.69万
  • 项目类别:
    Continuing grant
Industry/University Cooperative Research Activity: Sinteringand Redispersion of Supported Metal Catalysts: In-Situ Meas-urements and Analysis of Multiparticle Interaction
产学合作研究活动:负载型金属催化剂的烧结和再分散:多颗粒相互作用的原位测量和分析
  • 批准号:
    8320400
  • 财政年份:
    1984
  • 资助金额:
    $ 1.69万
  • 项目类别:
    Standard Grant
Use of Unsupported Clusters of Specified Size and Charge As Model Acid Catalysts
使用指定尺寸和电荷的无负载簇作为模型酸催化剂
  • 批准号:
    8316847
  • 财政年份:
    1983
  • 资助金额:
    $ 1.69万
  • 项目类别:
    Standard Grant
Research Initiation - Thermodynamic Properties of Micelles
研究启动 - 胶束的热力学性质
  • 批准号:
    7805412
  • 财政年份:
    1978
  • 资助金额:
    $ 1.69万
  • 项目类别:
    Standard Grant

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美印合作研究:非平衡条件下陶瓷氧化物的相选择,以美元和印度货币获奖
  • 批准号:
    9521945
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结构系统优化设计处理器:印美合作研究,美国和印度货币奖
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    9421297
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    1995
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    $ 1.69万
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U.S.-Australia Cooperative Research: Systematics and Biogeography of the East Indo-Pacific Orthotylini (Insecta: Heteroptera: Miridae)
美国-澳大利亚合作研究:东印度太平洋直翅目昆虫的系统学和生物地理学(昆虫纲:异翅目:蝽科)
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