Grantee Research Project Results
Selected Publications Details for Grant Number R835174
Sustainable Catalytic Treatment of Waste Ion Exchange Brines for Reuse During Oxyanion Treatment in Drinking Water
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Reference Type | Reference Title | Journal | Author | Citation | Progress Report Year | Document Sources |
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Journal Article | Evaluation of a hybrid ion exchange-catalyst treatment technology for nitrate removal from drinking water. | WATER RESEARCH | Bergquist AM, Choe JK, Strathmann TJ, Werth CJ | Bergquist AM, Choe JK, Strathmann TJ, Werth CJ. Evaluation of a hybrid ion exchange-catalyst treatment technology for nitrate removal from drinking water. Water Research 2016;96:177-187. |
R835174 (2014) R835174 (2015) R835174 (Final) |
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Journal Article | Catalytic denitrification in a trickle bed reactor: ion exchange waste brine treatment. | JOURNAL OF THE AMERICAN WATER WORKS ASSOCIATION | Bergquist AM, Bertoch M, Gildert G, Strathmann TJ, Werth CJ | Bergquist AM, Bertoch M, Gildert G, Strathmann TJ, Werth CJ. Catalytic denitrification in a trickle bed reactor: ion exchange waste brine treatment. Journal of the American Water Works Association 2017;109(5):E129-E151. |
R835174 (Final) |
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Journal Article | Catalytic nitrate removal in a trickle bed reactor: direct drinking water treatment. | JOURNAL OF THE AMERICAN WATER WORKS ASSOCIATION | Bertoch M, Bergquist AM, Gildert G, Strathmann TJ, Werth CJ | Bertoch M, Bergquist AM, Gildert G, Strathmann TJ, Werth CJ. Catalytic nitrate removal in a trickle bed reactor: direct drinking water treatment. Journal of the American Water Works Association 2017;109(5):E144-E171. |
R835174 (Final) |
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Journal Article | Exploring beyond palladium: catalytic reduction of aqueous oxyanion pollutants with alternative platinum group metals and new mechanistic implications. | CHEMICAL ENGINEERING JOURNAL | Chen X, Huo X, Liu J, Wang Y, Werth CJ, Strathmann TJ | Chen X, Huo X, Liu J, Wang Y, Werth CJ, Strathmann TJ. Exploring beyond palladium:catalytic reduction of aqueous oxyanion pollutants with alternative platinum group metals and new mechanistic implications. Chemical Engineering Journal 2017;313:745-752. |
R835174 (Final) |
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Journal Article | Comparative assessment of the environmental sustainability of existing and emerging perchlorate treatment technologies for drinking water. | Environmental Science and Technology | Choe JK, Mehnert MH, Guest JS, Strathmann TJ, Werth CJ | Choe JK, Mehnert MH, Guest JS, Strathmann TJ, Werth CJ. Comparative assessment of the environmental sustainability of existing and emerging perchlorate treatment technologies for drinking water. Environmental Science & Technology 2013;47(9):4644-4652. |
R835174 (2012) R835174 (2013) R835174 (2014) R835174 (2015) R835174 (Final) |
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Journal Article | X-ray spectroscopic characterization of immobilized rhenium species in hydrated rhenium–palladium bimetallic catalysts used for perchlorate water treatment. | None | Choe JK, Boyanov MI, Liu J, Kemner KM, Werth CJ, Strathmann TJ | Choe JK, Boyanov MI, Liu J, Kemner KM, Werth CJ, Strathmann TJ. X-ray spectroscopic characterization of immobilized rhenium species in hydrated rhenium–palladium bimetallic catalysts used for perchlorate water treatment. The Journal of Physical Chemistry C 2014;118(22):11666-11676. |
R835174 (2014) R835174 (2015) R835174 (Final) |
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Journal Article | Performance and life cycle environmental benefits of recycling spent ion exchange brines by catalytic treatment of nitrate. | WATER RESEARCH | Choe JK, Bergquist AM, Jeong S, Guest JS, Werth CJ, Strathmann TJ | Choe JK, Bergquist AM, Jeong S, Guest JS, Werth CJ, Strathmann TJ. Performance and life cycle environmental benefits of recycling spent ion exchange brines by catalytic treatment of nitrate. Water Research 2015;80:267-280. |
R835174 (2014) R835174 (2015) R835174 (Final) |
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Journal Article | Application of a Re–Pd bimetallic catalyst for treatment of perchlorate in waste ion-exchange regenerant brine. | WATER RESEARCH | Liu J, Choe JK, Sasnow Z, Werth CJ, Strathmann TJ | Liu J, Choe JK, Sasnow Z, Werth CJ, Strathmann TJ. Application of a Re–Pd bimetallic catalyst for treatment of perchlorate in waste ion-exchange regenerant brine. Water Research 2013:47(1):91-101. |
R835174 (2012) R835174 (2013) R835174 (2014) R835174 (2015) R835174 (Final) |
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Journal Article | Bioinspired complex-nanoparticle hybrid catalyst system for aqueous perchlorate reduction: rhenium speciation and its influence on catalyst activity. | None | Liu J, Choe JK, Wang Y, Shapley JR, Werth CJ, Strathman TJ | Liu J, Choe JK, Wang Y, Shapley JR, Werth CJ, Strathman TJ. Bioinspired complex-nanoparticle hybrid catalyst system for aqueous perchlorate reduction:rhenium speciation and its influence on catalyst activity. ACS Catalysis 2015;5(2):511-522. |
R835174 (2014) R835174 (2015) R835174 (Final) |
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Journal Article | Mechanism and mitigation of the decomposition of an oxorhenium complex-based heterogeneous catalyst for perchlorate reduction in water. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Liu J, Chen X, Wang Y, Strathmann TJ, Werth CJ | Liu J, Chen X, Wang Y, Strathmann TJ, Werth CJ. Mechanism and mitigation of the decomposition of an oxorhenium complex-based heterogeneous catalyst for perchlorate reduction in water. Environmental Science & Technology 2015;49(21):12932-12940. |
R835174 (2014) R835174 (2015) R835174 (Final) |
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Journal Article | A new bioinspired perchlorate reduction catalyst with significantly enhanced stability via rational tuning of rhenium coordination chemistry and heterogeneous reaction pathway. | None | Liu J, Han M, Wu D, Chen X, Choe JK, Werth CJ, Strathmann TJ | Liu J, Han M, Wu D, Chen X, Choe JK, Werth CJ, Strathmann TJ. A new bioinspired perchlorate reduction catalyst with significantly enhanced stability via rational tuning of rhenium coordination chemistry and heterogeneous reaction pathway. Environmental Science & Technology 2016;50(11):5874-5881. |
R835174 (Final) |
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Journal Article | Configuration control in the synthesis of homo- and heteroleptic bis(oxazolinylphenolato/thiazolinylphenolato) chelate ligand complexes of oxorhenium(V): isomer effect on ancillary ligand exchange dynamics and implications for perchlorate reduction catalysis. | None | Liu J, Wu D, Su X, Han M, Kimura SY, Gray DL, Shapley JR, Abu-Omar MM, Werth CJ, Strathmann TJ | Liu J, Wu D, Su X, Han M, Kimura SY, Gray DL, Shapley JR, Abu-Omar MM, Werth CJ, Strathmann TJ. Configuration control in the synthesis of homo- and heteroleptic bis(oxazolinylphenolato/thiazolinylphenolato) chelate ligand complexes of oxorhenium(V): isomer effect on ancillary ligand exchange dynamics and implications for perchlorate reduction catalysis. Inorganic Chemistry 2016;55(5):2597-2611. |
R835174 (Final) |
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Journal Article | Ligand design for isomer-selective oxorhenium(V) complex synthesis. | None | Liu J, Su X, Han M, Wu D, Gray DL, Shapley JR, Werth CJ, Strathmann TJ | Liu J, Su X, Han M, Wu D, Gray DL, Shapley JR, Werth CJ, Strathmann TJ. Ligand design for isomer-selective oxorhenium(V) complex synthesis. Inorganic Chemistry 2017;56(3):1757-1769. |
R835174 (Final) |
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Journal Article | Zhang, D. | None | R | R. Zhang, D. Shuai, K. A. Guy, J. R. Shapley, T. J. Strathmann, C. J. Werth. Elucidation of Nitrate Reduction Mechanisms on a Pd-In Bimetallic Catalyst using Isotope Labeled Nitrogen Species. ChemCatChem., 5. 313-321, 2013. |
R835174 (2014) |
not available |
Journal Article | Elucidation of nitrate reduction mechanisms on a Pd-In bimetallic catalyst using isotope labeled nitrogen species. | None | Zhang R, Shuai D, Guy KA, Shapley JR, Strathmann TJ, Werth CJ | Zhang R, Shuai D, Guy KA, Shapley JR, Strathmann TJ, Werth CJ. Elucidation of nitrate reduction mechanisms on a Pd-In bimetallic catalyst using isotope labeled nitrogen species. ChemCatChem 2013;5(1):313-321. |
R835174 (2012) R835174 (2013) R835174 (2014) R835174 (2015) R835174 (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.