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Preparation and application of metal-modified biochar in the purification of micro-polystyrene polluted aqueous environment

生物炭 吸附 自来水 化学 微塑料 水溶液中的金属离子 环境化学 废水 金属 聚苯乙烯 水溶液 饮用水净化 泥浆 化学需氧量 水处理 制浆造纸工业 环境工程 环境科学 有机化学 热解 聚合物 工程类
作者
Longfei Zhang,Qi Zhang,Yunpu Wang,Xian Cui,Yuhuan Liu,Roger Ruan,Xiaodan Wu,Leipeng Cao,Lantian Zhao,Hongli Zheng
出处
期刊:Journal of Environmental Management [Elsevier]
卷期号:347: 119158-119158 被引量:12
标识
DOI:10.1016/j.jenvman.2023.119158
摘要

Microplastics (MPs) have already spread across the globe and have been found in drinking water and human tissues. This may pose severe threats to human health and water environment. Therefore, this study accurately evaluated the removal effect of metal-modified biochar on polystyrene microplastics (PS-MPs) (1.0 μm) in the water environment using a high-throughput fluorescence quantification method. The results indicated that Fe-modified biochar (FeBC) and Fe/Zn-modified biochar (Fe/ZnBC) had good removal efficiencies for PS-MPs under the dosage of 3 g/L, which were 96.24% and 84.77%, respectively. Although pore effects were observed (such as "stuck", "trapped"), the electrostatic interaction was considered the main mechanism for the adsorption of PS-MPs on metal-modified biochar, whereas the formation of metal-O-PS-MPs may also contribute to the adsorption process. The removal efficiency of PS-MPs by FeBC was significantly reduced under alkaline conditions (pH = 9 and 11) or in the presence of weak acid ions (PO43-, CO32-, HCO3-). A removal efficiency of 72.39% and 78.33% of PS-MPs was achieved from tap water (TW) and lake water (LW) using FeBC when the initial concentration was 20 mg/L. However, FeBC had no removal effect on PS-MPs in biogas slurry (BS) and brewing wastewater (BW) due to the direct competitive adsorption of high concentrations of chemical oxygen demand (COD). The findings of this study highlighted that metal-modified biochar had a potential application in purifying tap water or lake water which contaminated by MPs.
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