Pig carcass-derived biochar caused contradictory effects on arsenic mobilization in a contaminated paddy soil under fluctuating controlled redox conditions

生物炭 环境化学 化学 铁酸盐 氧化还原 氧化剂 生物地球化学循环 溶解有机碳 微观世界 污染 土壤水分 吸附 环境科学 无机化学 土壤科学 生态学 有机化学 热解 生物
作者
Xing Yang,Marvin Hinzmann,He Pan,Jianxu Wang,Nanthi Bolan,Daniel C.W. Tsang,Yong Sik Ok,Shan‐Li Wang,Sabry M. Shaheen,Hailong Wang,Jörg Rinklebe
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:421: 126647-126647 被引量:61
标识
DOI:10.1016/j.jhazmat.2021.126647
摘要

Contamination of paddy soils by arsenic (As) is of great concern for human health and the environment. The impact of animal-derived biochar on As mobilization under fluctuating redox conditions in paddy soils has not been studied. Consequently, we investigated the effects of pig carcass-derived biochar (PB) on As (im)mobilization in a contaminated paddy soil under controlled redox potential (Eh) using a biogeochemical microcosm-setup. The addition of PB decreased the concentration of dissolved As at Eh = +100 and +200 mV by 38.7% and 35.4%, respectively (compared to the control), because of the co-precipitation of As with Fe-Mn oxides and the complexation between As and aromatic organic molecules. However, under reducing conditions (Eh = -300 mV), PB increased the dissolved As by 13.5% through promoting reduction and decomposition of As-bearing Fe minerals (e.g., ferrihydrite-As, Fe-humic-As). Under oxidizing conditions (Eh = +250 mV), PB increased the dissolved As by 317.6%, due to the associated increase of pH. We conclude that As mobilization in PB-treated paddy soils is highly affected by Eh. PB can be used to reduce the environmental risk of As under moderately reducing conditions, but it may increase the risk under highly reducing and oxidizing conditions in paddy soils.
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