生物炭
修正案
木屑
化学
毒性
作物
污染
农学
环境化学
土壤水分
木炭
土壤污染
园艺
作物生产力
植物毒性
土壤pH值
作物残渣
生物量(生态学)
酶分析
作者
Anwar A. Aly,Junjie Tang,Mahmoud Y. El Zanaty,C. Y. Liu,Arjun S. Kulathuvayal,Yanqing Su,Yanqing Su,Ibukunoluwa Salako,Jennifer Weidhaas,Zeyu Cai,Chuanxin Ma,Joan E. McLean,Arturo A. Keller,Baoshan Xing,Y. T. Su,Y. T. Su
标识
DOI:10.1021/acs.jafc.5c14785
摘要
). Fe-BC exhibited greater porosity, higher surface area, and a slightly positive surface charge compared to BC. Using Pd-doped NPs, we confirmed that NPs can penetrate roots and translocate to leaves, accumulating more in older tissues. Soil application of 3 wt % BC or Fe-BC significantly lowered leaf NPs concentrations, with Fe-BC showing a greater reduction, by approximately 60% (from 0.90 to 0.36 mg/kg). While both BC and Fe-BC demonstrated a capacity for alleviating NPs-induced metabolic disturbances and partially restoring soil enzyme activities, Fe-BC presents a more promising amendment for mitigating NPs contamination and protecting crop quality.
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