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Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation - P. Brandhuber#M. Frey#M. McGuire
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P. Brandhuber#M. Frey#M. McGuire:

Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation - nouveau livre

2005, ISBN: 9781843399247

ID: 240455390

In February 1999, the California Office of Environmental Health Hazard Assessment issued a Public Health Goal (PHG) for total chromium of 2.5 µg/L. The PHG, based on a 10^6 risk level for 0.2 µg/L hexavalent chromium [Cr(VI)], was 40 times less than the USEPA´s contaminant MCL of 100 µg/L for total chromium [Cr(III) + Cr(VI)]. The success of the movie Erin Brockovich, which popularized a groundwater chromium pollution lawsuit in Hinkley, California, sensitized the public to the health hazards of chromium in drinking water. In 2001, the California state legislature passed a bill requiring the California Department of Health Services to adopt an MCL for Cr(VI). All of these actions must be viewed from the perspective that, at the time, no technology had been demonstrated to be effective at treating chromium to concentrations consistent with the total chromium PHG or the Cr(VI) 10^6 risk level of 0.2 µg/L. The purpose of this report was to present the results of this partnership study, which included an analysis of chromium occurrence and co-occurrence, an evaluation of Cr(VI) removal technologies, and an examination of chromium oxidation and reduction chemistry. This study investigated nearly all of the potential methods of controlling Cr(VI) either through the use of technologies that remove Cr(VI) directly (adsorption, anion exchange, membrane filtration) or those that remove the reduced form of chromium, Cr(III) (precipitation with membranes or coagulation and precipitation with conventional or membrane filters). These technologies were investigated using laboratory-scale testing methods, including batch isotherm tests, bench membrane systems, flow-through mini-columns, and jar testing techniques. For most technologies, controlled water matrices were used to screen performance. Selected technologies were further assessed using natural groundwater matrices from the Los Angeles Department of Water and Power and the Glendale Water and Power groundwater facilities. Bench-Scale Evaluation Bücher > Fremdsprachige Bücher > Englische Bücher Taschenbuch 01.07.2005, Awwarf, .200

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Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation - P. Brandhuber#M. Frey#M. McGuire
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P. Brandhuber#M. Frey#M. McGuire:

Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation - nouveau livre

2001, ISBN: 9781843399247

ID: e58e55875d5def947f574d9e79c0c105

Bench-Scale Evaluation In February 1999, the California Office of Environmental Health Hazard Assessment issued a Public Health Goal (PHG) for total chromium of 2.5 µg/L. The PHG, based on a 10^6 risk level for 0.2 µg/L hexavalent chromium [Cr(VI)], was 40 times less than the USEPA's contaminant MCL of 100 µg/L for total chromium [Cr(III) + Cr(VI)]. The success of the movie Erin Brockovich, which popularized a groundwater chromium pollution lawsuit in Hinkley, California, sensitized the public to the health hazards of chromium in drinking water. In 2001, the California state legislature passed a bill requiring the California Department of Health Services to adopt an MCL for Cr(VI). All of these actions must be viewed from the perspective that, at the time, no technology had been demonstrated to be effective at treating chromium to concentrations consistent with the total chromium PHG or the Cr(VI) 10^6 risk level of 0.2 µg/L. The purpose of this report was to present the results of this partnership study, which included an analysis of chromium occurrence and co-occurrence, an evaluation of Cr(VI) removal technologies, and an examination of chromium oxidation and reduction chemistry. This study investigated nearly all of the potential methods of controlling Cr(VI) either through the use of technologies that remove Cr(VI) directly (adsorption, anion exchange, membrane filtration) or those that remove the reduced form of chromium, Cr(III) (precipitation with membranes or coagulation and precipitation with conventional or membrane filters). These technologies were investigated using laboratory-scale testing methods, including batch isotherm tests, bench membrane systems, flow-through mini-columns, and jar testing techniques. For most technologies, controlled water matrices were used to screen performance. Selected technologies were further assessed using natural groundwater matrices from the Los Angeles Department of Water and Power and the Glendale Water and Power groundwater facilities. Bücher / Fremdsprachige Bücher / Englische Bücher 978-1-84339-924-7, Awwarf

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Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation - P. Brandhuber#M. Frey#M. McGuire
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P. Brandhuber#M. Frey#M. McGuire:
Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation - nouveau livre

2001

ISBN: 9781843399247

ID: 61104528

In February 1999, the California Office of Environmental Health Hazard Assessment issued a Public Health Goal (PHG) for total chromium of 2.5 µg/L. The PHG, based on a 10^6 risk level for 0.2 µg/L hexavalent chromium [Cr(VI)], was 40 times less than the USEPA´s contaminant MCL of 100 µg/L for total chromium [Cr(III) + Cr(VI)]. The success of the movie Erin Brockovich, which popularized a groundwater chromium pollution lawsuit in Hinkley, California, sensitized the public to the health hazards of chromium in drinking water. In 2001, the California state legislature passed a bill requiring the California Department of Health Services to adopt an MCL for Cr(VI). All of these actions must be viewed from the perspective that, at the time, no technology had been demonstrated to be effective at treating chromium to concentrations consistent with the total chromium PHG or the Cr(VI) 10^6 risk level of 0.2 µg/L. The purpose of this report was to present the results of this partnership study, which included an analysis of chromium occurrence and co-occurrence, an evaluation of Cr(VI) removal technologies, and an examination of chromium oxidation and reduction chemistry. This study investigated nearly all of the potential methods of controlling Cr(VI) either through the use of technologies that remove Cr(VI) directly (adsorption, anion exchange, membrane filtration) or those that remove the reduced form of chromium, Cr(III) (precipitation with membranes or coagulation and precipitation with conventional or membrane filters). These technologies were investigated using laboratory-scale testing methods, including batch isotherm tests, bench membrane systems, flow-through mini-columns, and jar testing techniques. For most technologies, controlled water matrices were used to screen performance. Selected technologies were further assessed using natural groundwater matrices from the Los Angeles Department of Water and Power and the Glendale Water and Power groundwater facilities. Bench-Scale Evaluation Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, Awwarf

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Low-Level Hexavalent Chromium Treatment Options - P Brandhuber, M Frey, M McGuire, Philip Brandhuber
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Low-Level Hexavalent Chromium Treatment Options - Livres de poche

2005, ISBN: 1843399245

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Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation (Awwarf Report) - P. Brandhuber, M. Frey, Michael J. McGuire
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Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation (Awwarf Report) - Livres de poche

2005, ISBN: 9781843399247

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Détails sur le livre
Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation
Auteur:

Brandhuber, P.; Frey, M.; McGuire, M.

Titre:

Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation

ISBN:

1843399245

In February 1999, the California Office of Environmental Health Hazard Assessment issued a Public Health Goal (PHG) for total chromium of 2.5 A g/L. The PHG, based on a 10^6 risk level for 0.2 A g/L hexavalent chromium [Cr(VI)], was 40 times less than the USEPA's contaminant MCL of 100 A g/L for total chromium [Cr(III) + Cr(VI)]. The success of the movie Erin Brockovich, which popularized a groundwater chromium pollution lawsuit in Hinkley, California, sensitized the public to the health hazards of chromium in drinking water. In 2001, the California state legislature passed a bill requiring the California Department of Health Services to adopt an MCL for Cr(VI). All of these actions must be viewed from the perspective that, at the time, no technology had been demonstrated to be effective at treating chromium to concentrations consistent with the total chromium PHG or the Cr(VI) 10^6 risk level of 0.2 A g/L. The purpose of this report was to present the results of this partnership study, which included an analysis of chromium occurrence and co-occurrence, an evaluation of Cr(VI) removal technologies, and an examination of chromium oxidation and reduction chemistry. This study investigated nearly all of the potential methods of controlling Cr(VI) either through the use of technologies that remove Cr(VI) directly (adsorption, anion exchange, membrane filtration) or those that remove the reduced form of chromium, Cr(III) (precipitation with membranes or coagulation and precipitation with conventional or membrane filters). These technologies were investigated using laboratory-scale testing methods, including batch isotherm tests, bench membrane systems, flow-through mini-columns, and jar testing techniques. For most technologies, controlled water matrices were used to screen performance. Selected technologies were further assessed using natural groundwater matrices from the Los Angeles Department of Water and Power and the Glendale Water and Power groundwater facilities.

Informations détaillées sur le livre - Low-Level Hexavalent Chromium Treatment Options: Bench-Scale Evaluation


EAN (ISBN-13): 9781843399247
ISBN (ISBN-10): 1843399245
Livre de poche
Date de parution: 2005
Editeur: AWWARF
212 Pages
Poids: 0,490 kg
Langue: eng/Englisch

Livre dans la base de données depuis 24.06.2007 17:47:38
Livre trouvé récemment le 14.12.2016 14:46:15
ISBN/EAN: 1843399245

ISBN - Autres types d'écriture:
1-84339-924-5, 978-1-84339-924-7

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