Effect of calcium and iron-enriched biochar on arsenic and cadmium accumulation from soil to rice paddy tissues

生物炭 化学 修正案 根际 环境化学 生物利用度 环境修复 土壤pH值 糙米 土壤水分 营养物 动物科学 污染 食品科学 环境科学 热解 土壤科学 生物 生态学 政治学 有机化学 生物信息学 法学 遗传学 细菌
作者
Md. Shafiqul Islam,Abdoul Salam Issiaka Abdoul Magid,Yali Chen,Liping Weng,Jie Ma,Yasir Arafat,Zulqarnain Haider Khan,Yongtao Li
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:785: 147163-147163 被引量:89
标识
DOI:10.1016/j.scitotenv.2021.147163
摘要

Arsenic (As) and cadmium (Cd) are nonessential toxic metal(loids) that are carcinogenic to humans. Hence, reducing the bioavailability of these metal(loids) in soils and decreasing their accumulation in rice grains is essential for agroecology, food safety, and human health. Iron (Fe)-enriched corncob biochar (FCB), Fe-enriched charred eggshell (FEB), and Fe-enriched corncob-eggshell biochar (FCEB) were prepared for soil amelioration. The amendment materials were applied at 1% and 2% application rates to observe their alleviation effects on As and Cd loads in rice paddy tissues and yield improvements using pot trials. The FCEB treatment increased paddy yields compared to those of FCB (9–12%) and FEB (3–36%); this could be because it contains more plant essential nutrients than FCB and a lower calcite content than that of FEB. In addition, FCEB significantly reduced brown rice As (AsBR, 29–60%) and Cd (CdBR, 57–81%) contents compared to those of the untreated control (CON). At a 2% application rate, FCEB reduced the average mobility of As (56%) and Cd (62%) in rhizosphere porewater and enhanced root Fe-plaque formation (76%) compared to those of CON. Moreover, the enhanced Fe-plaque sequestered a substantial amount of As (171.4%) and Cd (90.8%) in the 2% FCEB amendment compared to that of CON. Pearson correlation coefficients and regression analysis indicated that two key mechanisms likely control AsBR and CdBR accumulations. First, rhizosphere soil pH and Eh controlled As and Cd availabilities in porewaters and their speciation in the soil. Second, greater Fe-plaque formation in paddy roots grown in the amended soils provided a barrier for plant uptake of the metal(loids). These observations demonstrate that soil amendment with Fe-enriched corncob-eggshell biochar (e.g., 2% FCEB) is a prospective approach for the remediation of metal accumulation from the soil to grain system while simultaneously increasing paddy yield.
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