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1:

Decoupling of arsenic and iron release from ferrihydrite suspension under reducing conditions: a biogeochemical model.

Burnol A, Garrido F, Baranger P, Joulian C, Dictor MC, Bodénan F, Morin G, Charlet L.

Geochem Trans. 2007 Nov 29;8:12.

PMID: 18047666 [PubMed - in process]

2:

Contrasting effects of dissimilatory iron (III) and arsenic (V) reduction on arsenic retention and transport.

Kocar BD, Herbel MJ, Tufano KJ, Fendorf S.

Environ Sci Technol. 2006 Nov 1;40(21):6715-21.

PMID: 17144301 [PubMed - indexed for MEDLINE]

3:

XAS and XMCD evidence for species-dependent partitioning of arsenic during microbial reduction of ferrihydrite to magnetite.

Coker VS, Gault AG, Pearce CI, van der Laan G, Telling ND, Charnock JM, Polya DA, Lloyd JR.

Environ Sci Technol. 2006 Dec 15;40(24):7745-50.

PMID: 17256522 [PubMed - indexed for MEDLINE]

4:

Biogeochemical transformations of arsenic in circumneutral freshwater sediments.

Nicholas DR, Ramamoorthy S, Palace V, Spring S, Moore JN, Rosenzweig RF.

Biodegradation. 2003 Apr;14(2):123-37.

PMID: 12877467 [PubMed - indexed for MEDLINE]

5:

Confounding impacts of iron reduction on arsenic retention.

Tufano KJ, Fendorf S.

Environ Sci Technol. 2008 Jul 1;42(13):4777-83.

PMID: 18678005 [PubMed - indexed for MEDLINE]

6:

Sorption and desorption of arsenic to ferrihydrite in a sand filter.

Jessen S, Larsen F, Koch CB, Arvin E.

Environ Sci Technol. 2005 Oct 15;39(20):8045-51.

PMID: 16295873 [PubMed - indexed for MEDLINE]

7:

Retention of arsenic on hydrous ferric oxides generated by electrochemical peroxidation.

Arienzo M, Adamo P, Chiarenzelli J, Bianco MR, De Martino A.

Chemosphere. 2002 Sep;48(10):1009-18.

PMID: 12227505 [PubMed - indexed for MEDLINE]

8:

Bacterial formation of tooeleite and mixed arsenic(III) or arsenic(V)-iron(III) gels in the Carnoulès acid mine drainage, France. A XANES, XRD, and SEM study.

Morin G, Juillot F, Casiot C, Bruneel O, Personné JC, Elbaz-Poulichet F, Leblanc M, Ildefonse P, Calas G.

Environ Sci Technol. 2003 May 1;37(9):1705-12.

PMID: 12775038 [PubMed - indexed for MEDLINE]

9:

Arsenic release from iron rich mineral processing waste: Influence of pH and redox potential.

Al-Abed SR, Jegadeesan G, Purandare J, Allen D.

Chemosphere. 2007 Jan;66(4):775-82. Epub 2006 Sep 1.

PMID: 16949129 [PubMed - indexed for MEDLINE]

10:

Arsenic(III) and arsenic(V) reactions with zerovalent iron corrosion products.

Manning BA, Hunt ML, Amrhein C, Yarmoff JA.

Environ Sci Technol. 2002 Dec 15;36(24):5455-61.

PMID: 12521175 [PubMed - indexed for MEDLINE]

11:

Comparison of arsenic(V) and arsenic(III) sorption onto iron oxide minerals: implications for arsenic mobility.

Dixit S, Hering JG.

Environ Sci Technol. 2003 Sep 15;37(18):4182-9.

PMID: 14524451 [PubMed - indexed for MEDLINE]

12:

Interactions between microbial iron reduction and metal geochemistry: effect of redox cycling on transition metal speciation in iron bearing sediments.

Cooper DC, Picardal FF, Coby AJ.

Environ Sci Technol. 2006 Mar 15;40(6):1884-91.

PMID: 16570612 [PubMed - indexed for MEDLINE]

13:

Surface complexation of ferrous iron and carbonate on ferrihydrite and the mobilization of arsenic.

Appelo CA, Van Der Weiden MJ, Tournassat C, Charlet L.

Environ Sci Technol. 2002 Jul 15;36(14):3096-103.

PMID: 12141489 [PubMed - indexed for MEDLINE]

14:

Sorption and redox processes controlling arsenic fate and transport in a stream impacted by acid mine drainage.

Casiot C, Lebrun S, Morin G, Bruneel O, Personné JC, Elbaz-Poulichet F.

Sci Total Environ. 2005 Jul 15;347(1-3):122-30.

PMID: 16084973 [PubMed - indexed for MEDLINE]

15:

Role of iron in controlling speciation and mobilization of arsenic in subsurface environment.

Bose P, Sharma A.

Water Res. 2002 Nov;36(19):4916-26.

PMID: 12448536 [PubMed - indexed for MEDLINE]

16:

Iron and arsenic release from aquifer solids in response to biostimulation.

McLean JE, Dupont RR, Sorensen DL.

J Environ Qual. 2006 Jul 6;35(4):1193-203. Print 2006 Jul-Aug.

PMID: 16825439 [PubMed - indexed for MEDLINE]

17:

Reductive processes controlling arsenic retention: revealing the relative importance of iron and arsenic reduction.

Tufano KJ, Reyes C, Saltikov CW, Fendorf S.

Environ Sci Technol. 2008 Nov 15;42(22):8283-9.

PMID: 19068807 [PubMed - indexed for MEDLINE]

18:

Kinetic analysis of the bacterial reduction of goethite.

Liu C, Kota S, Zachara JM, Fredrickson JK, Brinkman CK.

Environ Sci Technol. 2001 Jun 15;35(12):2482-90.

PMID: 11432552 [PubMed - indexed for MEDLINE]

19:

Role of metal-reducing bacteria in arsenic release from Bengal delta sediments.

Islam FS, Gault AG, Boothman C, Polya DA, Charnock JM, Chatterjee D, Lloyd JR.

Nature. 2004 Jul 1;430(6995):68-71.

PMID: 15229598 [PubMed - indexed for MEDLINE]

20:

Experimental study and steady-state simulation of biogeochemical processes in laboratory columns with aquifer material.

Amirbahman A, Schönenberger R, Furrer G, Zobrist J.

J Contam Hydrol. 2003 Jul;64(3-4):169-90.

PMID: 12814879 [PubMed - indexed for MEDLINE]

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