Reduced arsenic availability in paddy soil through Fe-organic ligand complexation mediated by bamboo biochar

生物炭 修正案 化学 环境化学 溶解有机碳 环境修复 有机质 砷酸盐 土壤pH值 吸附 竹子 土壤水分 污染 热解 环境科学 土壤科学 有机化学 材料科学 生态学 政治学 法学 复合材料 生物
作者
Li Tang,Ling Xiong,Haiyan Zhang,Akaninyene Joseph,Yimin Wang,Jizhou Li,Xuyin Yuan,Eldon R. Rene,Ningyuan Zhu
出处
期刊:Chemosphere [Elsevier]
卷期号:349: 140790-140790 被引量:4
标识
DOI:10.1016/j.chemosphere.2023.140790
摘要

The reuse of arsenic (As)-contaminated paddy fields is a global challenge because long-term flooding would result in As release due to the reductive dissolution of iron minerals. Biochar amendment is a common and effective remediation technique for As-contaminated paddy soil. However, the literature is still lacking in systematic research on the function of biochar in controlling the complexation of released dissolved organic matter (DOM) and iron oxides and its synergistic impact on the availability of As in flooded paddy soil. In the present study, bamboo biochar was prepared at different pyrolysis temperatures (300, 450 and 600 °C), as BB300, BB450 and BB600. Four paddy soil treatments including BB300, BB450, BB600 applications (1% ratio, m/m, respectively) and control (CK, no biochar application) were set and incubated for 60 d in flooding condition. The results showed that As availability represented by adsorbed As species (A-As) was mitigated by BB450 amendment compared with CK. The amendment of BB450 in paddy soil facilitated the complexation of HCl extractable Fe(III)/(II) and DOM and formation of amorphous iron oxides (e.g. complexed Fe species). Moreover, the abundance of Geobacteraceae and Xanthomonadaceae, as common electroactive bacteria, was promoted in the BB450 treated paddy soil in comparison to CK, which assisted to form amorphous iron oxides. The formed amorphous iron oxides then facilitated the formation of ternary complex (As–Fe-DOM) with highly stability, which could be considered as a mechanism for As immobilization after biochar was applied to the flooding paddy soil. Thus, the synergistic effect between amorphous iron oxides and electroactive stains could make main contribution to the passivation of released As in paddy soil under long-term flooding condition. This study provided a new insight for As immobilization via regulating iron-organic ligand complexation amendment with biochar in flooding paddy soil.
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