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Showing 1 to 3 of 3 for “"arsenic methylation"”.

  1. Effect of soil amendments on the chemical transformation of arsenic and the microbial diversity in rice paddy microbiome

    Paddy management practices greatly influence arsenic biogeochemistry. For sustainable rice production, rice needs to be free from arsenic. Different soil amendments such as animal manure in flooded paddy soil could enhance arsenic reductive mobilization, biomethylation, and volatilization which …

    qu-belfast Repository record for Effect of soil amendments on the chemical transformation of arsenic and the microbial diversity in rice paddy microbiome (opens in a new tab)

  2. Elemental content to rice grain related to growing regions and soil microbiology

    … of many Asian countries including Sri Lanka. Arsenic and other micropollutants accumulation in rice grain is becoming a serious issue due to several reasons. Some of these micropollutants are highly carcinogenic even in trace amounts. Moreover, People who use rice as their staple food has a …

    qu-belfast Repository record for Elemental content to rice grain related to growing regions and soil microbiology (opens in a new tab)

  3. Microbial transformation of arsenic in Bengal floodplain

    Presence of arsenic in paddy soils in Bangladesh has become a major concern, with Holocene soils reported to have higher levels of arsenic compared to Pleistocene. However, to date there is limited data on how geomorphology, land use and soil microbes drive bioavailability of arsenic in the paddy …

    qu-belfast Repository record for Microbial transformation of arsenic in Bengal floodplain (opens in a new tab)