Grantee Research Project Results
Selected Publications Details for Grant Number R828206
Development of a Heterogeneous Catalyst for Hydroformylation in Supercritical CO2
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| Reference Type | Reference Title | Journal | Author | Citation | Progress Report Year | Document Sources |
|---|---|---|---|---|---|---|
| Journal Article | “Green engineering: defining the principles”— results from the Sandestin Conference. | ENVIRONMENTAL PROGRESS | Abraham MA, Nguyen N | Abraham MA, Nguyen N. “Green engineering: defining the principles”— results from the Sandestin Conference. Environmental Progress & Sustainable Energy 2003;22(4):233-236. |
R828206 (Final) |
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| Journal Article | Analysis of the hydroformylation reaction over an immobilized catalyst in supercritical carbon dioxide. | INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH | Bektesevic S, Tack T, Mason MR, Abraham MA | Bektesevic S, Tack T, Mason MR, Abraham MA. Analysis of the hydroformylation reaction over an immobilized catalyst in supercritical carbon dioxide. Industrial & Engineering Chemistry Research 2005;44(14):4973-4981. |
R828206 (Final) |
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| Journal Article | Hydroformylation in supercritical carbon dioxide: catalysis and benign solvents. | THE JOURNAL OF SUPERCRITICAL FLUIDS | Bektesevic S, Kleman AM, Marteel-Parrish AE, Abraham MA | Bektesevic S, Kleman AM, Marteel-Parrish AE, Abraham MA. Hydroformylation in supercritical carbon dioxide: catalysis and benign solvents. The Journal of Supercritical Fluids 2006;38(2):232-241. |
R828206 (Final) |
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| Journal Article | Hydroformylation of 1-hexene in supercritical carbon dioxide using a heterogeneous rhodium catalyst. 3. Evaluation of solvent effects. | GREEN CHEMISTRY | Hemminger O, Marteel A, Mason MR, Davies JA, Tadd AR, Abraham MA | Hemminger O, Marteel A, Mason MR, Davies JA, Tadd AR, Abraham MA. Hydroformylation of 1-hexene in supercritical carbon dioxide using a heterogeneous rhodium catalyst. 3. Evaluation of solvent effects. Green Chemistry 2002;4(5):507-512. |
R828206 (Final) |
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| Journal Article | Asymmetric hydroformylation of styrene in supercritical carbon dioxide | INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH | Kleman AM, Abraham MA | Kleman AM, Abraham MA. Asymmetric hydroformylation of styrene in supercritical carbon dioxide. Industrial & Engineering Chemistry Research 2006;45(4):1324-1330. |
R828206 (Final) |
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| Journal Article | Hydroformylation of 1-hexene in supercritical carbon dioxide: characterization, activity, and regioselectivity studies. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Marteel AE, Tack TT, Bektesevic S, Davies JA, Mason MR, Abraham MA | Marteel AE, Tack TT, Bektesevic S, Davies JA, Mason MR, Abraham MA. Hydroformylation of 1-hexene in supercritical carbon dioxide: characterization, activity, and regioselectivity studies. Environmental Science & Technology 2003;37(23):5424-5431. |
R828206 (Final) |
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| Journal Article | Green chemistry and engineering: drivers, metrics, and reduction to practice. | ANNUAL REVIEW OF ENVIRONMENT AND RESOURCES | Marteel AE, Davies JA, Olson WW, Abraham MA | Marteel AE, Davies JA, Olson WW, Abraham MA. Green chemistry and engineering: drivers, metrics, and reduction to practice. Annual Review of Environment and Resources 2003;28:401-428. |
R828206 (Final) |
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| Journal Article | Supported platinum/tin complexes as catalysts for hydroformylation of 1-hexene in supercritical carbon dioxide. | CATALYSIS COMMUNICATIONS | Marteel A, Davies JA, Mason MR, Tack T, Bektesevic S, Abraham MA | Marteel A, Davies JA, Mason MR, Tack T, Bektesevic S, Abraham MA. Supported platinum/tin complexes as catalysts for hydroformylation of 1-hexene in supercritical carbon dioxide. Catalysis Communications 2003;4(7):309-314. |
R828206 (Final) |
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| Journal Article | Evaluation of catalyst support effects during rhodium-catalyzed hydroformylation in supercritical CO2. | INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH | Snyder G, Tadd A, Abraham MA | Snyder G, Tadd A, Abraham MA. Evaluation of catalyst support effects during rhodium-catalyzed hydroformylation in supercritical CO2. Industrial & Engineering Chemistry Research 2001;40(23):5317-5325. |
R828206 (Final) |
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| Journal Article | Effect of cardiac resynchronization therapy on left ventricular size and function in chronic heart failure. | CIRCULATION | St John Sutton MG, Plappert T, Abraham WT, Smith AL, DeLurgio DB, Leon AR, Loh E, Kocovic DZ, Fisher WG, Ellestad M, Messenger J, Kruger K, Hilpisch KE, Hill MR, Multicenter InSync Randomized Clinical Evaluation (MIRACLE) Study Group | St John Sutton MG, Plappert T, Abraham WT, Smith AL, DeLurgio DB, Leon AR, Loh E, Kocovic DZ, Fisher WG, Ellestad M, Messenger J, Kruger K, Hilpisch KE, Hill MRS, Multicenter InSync Randomized Clinical Evaluation (MIRACLE) Study Group. Effect of cardiac resynchronization therapy on left ventricular size and function in chronic heart failure. Circulation 2003;107(15):1985-1990. |
R828206 (Final) |
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| Journal Article | Hydroformylation of 1-hexene in supercritical carbon dioxide using a heterogeneous rhodium catalyst. | INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH | Tadd AR, Marteel A, Mason MR, Davies JA, Abraham MA | Tadd AR, Marteel A, Mason MR, Davies JA, Abraham MA. Hydroformylation of 1-hexene in supercritical carbon dioxide using a heterogeneous rhodium catalyst. 2. Evaluation of reaction kinetics. Industrial & Engineering Chemistry Research 2002;41(18):4514-4522. |
R828206 (Final) |
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| Journal Article | Hydroformylation of 1-hexene in supercritical carbon dioxide using a heterogeneous rhodium catalyst. | THE JOURNAL OF SUPERCRITICAL FLUIDS | Tadd AR, Marteel A, Mason MR, Davies JA, Abraham MA | Tadd AR, Marteel A, Mason MR, Davies JA, Abraham MA. Hydroformylation of 1-hexene in supercritical carbon dioxide using a heterogeneous rhodium catalyst. 1. Effect of process parameters. The Journal of Supercritical Fluids 2003;25(2):183-196. |
R828206 (Final) |
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The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.