Guangdong Key Laboratory of Integrated Agro-Environmental Pollution Control and Management , Guangdong Institute of Eco-Environmental Science & Technology , Guangzhou 510650 , P. R. China.
SCNU Environmental Research Institute, Guangdong Provincial Key Laboratory of Chemical Pollution and Environmental Safety & MOE Key Laboratory of Environmental Theoretical Chemistry , South China Normal University , Guangzhou 510006 , P. R. China.
Environ Sci Technol. 2019 May 7;53(9):5034-5042. doi: 10.1021/acs.est.8b06333. Epub 2019 Apr 12.
Organic matter is important for controlling arsenic reduction and release under anoxic conditions. Humic substances (HS) represent an important fraction of natural organic matter, yet the manner in which HS affect arsenic transformation in flooded paddy soil has not been thoroughly elucidated. In this study, anaerobic microcosms were established with arsenic-contaminated paddy soil and amended with three extracted humic fractions (fulvic acid, FA; humic acid, HA; and humin, HM). The HS substantially enhanced the extent of arsenic reduction and release in the order FA > HA > HM. It was confirmed that microbially reduced HS acted as an electron shuttle to promote arsenate reduction. HS, particularly FA, provided labile carbon to stimulate microbial activity and increase the relative abundances of Azoarcus, Anaeromyxobacter, and Pseudomonas, all of which may be involved in the reduction of HS, Fe(III), and arsenate. HS also increased the abundance of transcripts for an arsenate-respiring gene ( arrA) and overall transcription in arsenate-respiring Geobacter spp. The increase in both abundances lagged behind the increases in dissolved arsenate levels. These results help to elucidate the pathways of arsenic reduction and release in the presence of HS in flooded paddy soil.
有机物质对于控制缺氧条件下的砷还原和释放非常重要。腐殖物质(HS)是天然有机物质的重要组成部分,但 HS 影响富砷稻田土壤中砷转化的方式尚未得到充分阐明。在这项研究中,用砷污染的稻田建立了厌氧微宇宙,并添加了三种提取的腐殖质(富里酸、FA;胡敏酸、HA;和腐殖质、HM)。HS 极大地促进了砷的还原和释放,顺序为 FA > HA > HM。证实微生物还原的 HS 充当电子穿梭体来促进砷酸盐的还原。HS,特别是 FA,提供了可利用的碳来刺激微生物的活性并增加 Azoarcus、Anaeromyxobacter 和 Pseudomonas 的相对丰度,所有这些都可能参与 HS、Fe(III) 和砷酸盐的还原。HS 还增加了砷酸盐呼吸基因(arrA)和砷酸盐呼吸 Geobacter spp. 的整体转录的丰度。这两种丰度的增加都滞后于溶解砷酸盐水平的增加。这些结果有助于阐明富砷稻田土壤中 HS 存在下砷还原和释放的途径。