科技报告详细信息
Accelerated deployment of nanostructured hydrotreating catalysts. Final CRADA Report.
Libera, J.A. ; Snyder, S.W. ; Mane, A. ; Elam, J.W. ; Cronauer, D.C. ; Muntean, J.A. ; Wu, T. ; Miller, J.T. (Chemical Sciences and Engineering Division) ; ( ES)
关键词: AGING;    ANL;    CATALYSTS;    CHEMICAL ENGINEERING;    DEPOSITION;    ECONOMIC DEVELOPMENT;    ECONOMICS;    ENERGY EFFICIENCY;    ENVIRONMENTAL IMPACTS;    HYDROGENATION;    LUBRICANTS;    MANUFACTURING;    PERFORMANCE;    PETROLEUM;    VELOCITY;   
DOI  :  10.2172/1050814
RP-ID  :  ANL/ES/C0900101
PID  :  OSTI ID: 1050814
Others  :  TRN: US201218%%1079
美国|英语
来源: SciTech Connect
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【 摘 要 】
Nanomanufacturing offers an opportunity to create domestic jobs and facilitate economic growth. In response to this need, U.S. Department of Energy, Office of Energy Efficiency and Renewable Energy issued a Research Call to develop nanomanufacturing capabilities at the National Laboratories. High performance catalysts represent a unique opportunity to deploy nanomanufacturing technologies. Re-refining of used lube oil offers an opportunity to create manufacturing jobs and decrease dependence on imported petroleum. Improved catalysts are required to produce a better quality product, decrease environmental impact, extend catalyst life, and improve overall economics of lube oil re-refining. Argonne National Laboratory (Argonne) in cooperation with Universal Lubricants, Inc. (ULI) and Chemical Engineering Partners (CEP) have carried out a Cooperative Research and Development Agreement (CRADA) to prepare nanostructured hydrotreating catalysts using atomic layer deposition (ALD) to exhibit superior performance for the re-refining of used lube oil. We investigated the upgrading of recycled lube oil by hydrogenation using commercial, synthetically-modified commercial catalysts, and synthesized catalysts. A down-flow (trickle bed) catalytic unit was used for the hydrogenation experiments. In addition to carrying out elemental analyses of the various feed and product fractions, characterization was undertaken using H{sup 1} and C{sup 13} NMR. Initially commercial were evaluated. Second these commercial catalysts were promoted with precious metals using atomic layer deposition (ALD). Performance improvements were observed that declined with catalyst aging. An alternate approach was undertaken to deeply upgrade ULI product oils. Using a synthesized catalyst, much lower hydrogenation temperatures were required than commercial catalysts. Other performance improvements were also observed. The resulting lube oil fractions were of high purity even at low reaction severity. The products recovered from both the ALD and other processes were water-white (even those from the low temperature, low residence time (high space velocity), low conversion runs). These results indicate that highly upgraded recycle lube oils can be produced using ALD-deposited active metal catalysts. The use of H{sup 1} and C{sup 13} NMR for the characterization of the treated lube oils has been shown to be effective.
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