Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
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Microbial transformations of arsenic: perspectives for biological removal of arsenic from waterMicrobial community in high arsenic shallow groundwater aquifers in Hetao Basin of Inner Mongolia, ChinaDynamic microbial community associated with iron-arsenic co-precipitation products from a groundwater storage system in Bangladesh.Arsenic(V) reduction in relation to Iron(III) transformation and molecular characterization of the structural and functional microbial community in sediments of a basin-fill aquifer in Northern Utah.Methane production from protozoan endosymbionts following stimulation of microbial metabolism within subsurface sediments.Diversity, metabolic properties and arsenic mobilization potential of indigenous bacteria in arsenic contaminated groundwater of West Bengal, IndiaDiversity of arsenite oxidizing bacterial communities in arsenic-rich deltaic aquifers in West Bengal, IndiaHumic acids enhance the microbially mediated release of sedimentary ferrous iron.Dissimilatory Arsenate Reduction and In Situ Microbial Activities and Diversity in Arsenic-rich Groundwater of Chianan Plain, Southwestern Taiwan.Diversity and Distribution of Arsenic-Related Genes Along a Pollution Gradient in a River Affected by Acid Mine Drainage.Molecular analysis of microbial community in arsenic-rich groundwater of Kolsor, West Bengal.Characterization and transcription of arsenic respiration and resistance genes during in situ uranium bioremediationEvidence of Decoupling between Arsenic and Phosphate in Shallow Groundwater of Bangladesh and Potential Implications.Characterization of arsenite-oxidizing bacteria isolated from arsenic-contaminated groundwater of West Bengal.Microbial ecology of arsenic-mobilizing Cambodian sediments: lithological controls uncovered by stable-isotope probing.Diverse arsenic- and iron-cycling microbial communities in arsenic-contaminated aquifers used for drinking water in Bangladesh.New Arsenate Reductase Gene (arrA) PCR Primers for Diversity Assessment and Quantification in Environmental Samples.Arsenic Detoxification by Geobacter Species.Carbon, metals, and grain size correlate with bacterial community structure in sediments of a high arsenic aquifer.Taxonomy and physiology of Pseudoxanthomonas arseniciresistens sp. nov., an arsenate and nitrate-reducing novel gammaproteobacterium from arsenic contaminated groundwater, India.Microbes enhance mobility of arsenic in pleistocene aquifer sand from Bangladesh.Arsenic modulates the composition of anode-respiring bacterial community during dry-wet cycles in paddy soilsIron Cycling Potentials of Arsenic Contaminated Groundwater in Bangladesh as Revealed by Enrichment Cultivation
P2860
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P2860
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
description
2010 nî lūn-bûn
@nan
2010年の論文
@ja
2010年論文
@yue
2010年論文
@zh-hant
2010年論文
@zh-hk
2010年論文
@zh-mo
2010年論文
@zh-tw
2010年论文
@wuu
2010年论文
@zh
2010年论文
@zh-cn
name
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
@en
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
@en-gb
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
@nl
type
label
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
@en
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
@en-gb
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
@nl
prefLabel
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
@en
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
@en-gb
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal.
@nl
P2093
P50
P1433
P1476
Arsenic release and attenuation in low organic carbon aquifer sediments from West Bengal
@en
P2093
P304
P356
10.1111/J.1472-4669.2010.00233.X
P577
2010-03-01T00:00:00Z