Iron-modified biochar and water management regime-induced changes in plant growth, enzyme activities, and phytoavailability of arsenic, cadmium and lead in a paddy soil

生物炭 生物利用度 化学 糙米 环境化学 土壤水分 过氧化氢酶 农学 环境修复 灌溉 尿素酶 稻草 食品科学 污染 环境科学 生物 土壤科学 生物化学 热解 无机化学 有机化学 生物信息学 生态学
作者
Ergang Wen,Xing Yang,Hanbo Chen,Sabry M. Shaheen,Binoy Sarkar,Shixiao Xu,Hocheol Song,Yong Liang,Jörg Rinklebe,Deyi Hou,Yong Li,Fengchang Wu,Michael Pohořelý,Jonathan W.C. Wong,Hailong Wang
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:407: 124344-124344 被引量:178
标识
DOI:10.1016/j.jhazmat.2020.124344
摘要

The aim of this study was to evaluate the effect of raw (RawBC) and iron (Fe)-modified biochar (FeBC) derived from Platanus orientalis Linn branches on the plant growth, enzyme activity, and bioavailability and uptake of As, Cd, and Pb by rice in a paddy soil with continuously flooded (CF) or alternately wet and dry (AWD) irrigation in a pot experiment. Application of RawBC (3%, w/w) significantly increased soil pH, while FeBC decreased it. The FeBC was more effective in reducing As and Pb bioavailability, particularly under the AWD water regime, while RawBC was more conducive in reducing Cd bioavailability under the CF water regime. The FeBC decreased As concentration, but increased concentrations of Cd and Pb in the straw and brown rice, as compared to the untreated soil. Soil catalase and urease activities were enhanced by RawBC, but decreased by FeBC treatment. The FeBC increased the grain yield by 60% and 32% in CF and AWD treatments, respectively. The FeBC can be recommended for immobilization of As in paddy soils, but a potential human health risk from Cd and Pb in FeBC-treated soils should be considered due to increased uptake and translocation of the metals to brown rice.
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