化学
生物炭
机制(生物学)
环境化学
木炭
水处理
环境科学
有机化学
环境工程
热解
认识论
哲学
作者
Ling Lai,Xitao Liu,Wenbo Ren,Zhou Zhou,Xiwang Zhao,Xiaofeng Zeng,Chunye Lin,Mengchang He,Wei Ouyang
出处
期刊:Chemosphere
[Elsevier BV]
日期:2022-10-31
卷期号:311: 137057-137057
被引量:18
标识
DOI:10.1016/j.chemosphere.2022.137057
摘要
Since the toxicity of Sb(III) is 10 times as high as that of Sb(V) in the environment, it is urgent to find a way to cut down Sb(III). β-FeOOH-modified biochar (β-FeOOH/BC) was prepared and used to remove Sb(III). The characterization results suggested that oxygen-containing functional groups formed on β-FeOOH/BC, which increased the Sb(III) removal efficiency. Even under complex water matrix conditions, the outstanding adsorption performance of β-FeOOH/BC for Sb(III) was obtained. The adsorption reaction rapidly reached a high removal efficiency within 5 min and approached adsorption equilibrium in about 6 h. The adsorption process was fitted to pseudo-second-order kinetics. Amount of maximum adsorption was 202.53 mg g-1 at 308 K according to Langmuir model. β-FeOOH/BC removed Sb(III) mainly through pore-filling complexation, cation-π and coordination exchange. The CO sites and persistent free radicals (PFRs) acted as electron acceptors, facilitating the electron transfer. In brief, β-FeOOH/BC adsorbent material could adsorb and oxidize Sb(III), which showed excellent prospects for reducing the risk of Sb(III).
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