School of Environmental Science and Engineering, Guangzhou University, 510006, Guangzhou, China.
Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.
Chemosphere. 2023 Sep;336:139089. doi: 10.1016/j.chemosphere.2023.139089. Epub 2023 Jun 5.
Arsenic (As) is a potentially toxic element with variable valence states. Due to high toxicity and bioaccumulation, As can pose a severe threat to the quality of the ecology as well as human health. In this work, As(III) in water was effectively removed by biochar-supported copper ferrite magnetic composite with persulfate. The copper ferrite@biochar composite exhibited higher catalytic activity than copper ferrite and biochar. The removal of As(III) could reach 99.8% within 1 h under the conditions of initial As(III) concentration at 10 mg/L, initial pH at 2-6, and equilibrium pH at 10. The maximum adsorption capacity of As(III) by copper ferrite@biochar-persulfate was 88.9 mg/g, achieving superior performance than mostly reported the metal oxide adsorbents. By means of a variety of characterization techniques, it was found that ∙OH acted as the main free radical for removing As(III) in the copper ferrite@biochar-persulfate system and the major mechanisms were oxidation and complexation. As a natural fibre biomass waste-derived adsorbent, ferrite@biochar presented a high catalytic efficiency and easy magnetic separation for As(III) removal. This study highlights the great potential of copper ferrite@biochar-persulfate application in As(III) wastewater treatment.
砷(As)是一种具有可变价态的潜在有毒元素。由于其高毒性和生物累积性,砷会对生态质量和人类健康构成严重威胁。在这项工作中,过硫酸盐辅助生物炭负载的铁酸铜磁性复合材料有效地去除了水中的砷(III)。与铁酸铜和生物炭相比,铁酸铜@生物炭复合材料表现出更高的催化活性。在初始砷(III)浓度为 10mg/L、初始 pH 值为 2-6 和平衡 pH 值为 10 的条件下,1h 内可将砷(III)去除率达到 99.8%。铁酸铜@生物炭-过硫酸盐对砷(III)的最大吸附容量为 88.9mg/g,其性能优于大多数已报道的金属氧化物吸附剂。通过多种表征技术发现,在铁酸铜@生物炭-过硫酸盐体系中,∙OH 是去除砷(III)的主要自由基,主要机制为氧化和络合。作为一种天然纤维生物质废料衍生的吸附剂,铁酸铜@生物炭对去除砷(III)具有高催化效率和易于磁性分离的特点。本研究突出了铁酸铜@生物炭-过硫酸盐在处理砷(III)废水方面的巨大应用潜力。