Combination of co-pyrolyzed biomass–sludge biochar and ultrasound for persulfate activation in antibiotic degradation: efficiency, synergistic effect, and reaction mechanism

Wan Jiang, Yiming Liu, Shenpeng Wang, Haifeng Yang, Xiulei Fan
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Abstract

A carbon material Cu-corn straw-sludge biochar (Cu-CSBC) was prepared by hydrothermally modifying sewage sludge and corn stover. The composite coupled to ultrasound can effectively catalyze the activation of PS for organic pollutants degradation, and the removal rate of 20 mg/L TC reached 89.15% in 5 min in the presence of 0.5 g/L Cu-CSBC and 3 mM PS. The synergistic effect between the factors in the system, the reaction mechanism, and the efficient removal of TC in the aqueous environment were explored in a Cu-CSBC/US/PS system established for that purpose. Quenching experiments and electron paramagnetic resonance analysis both demonstrated the Cu-CSBC/US/PS system generated •OH, SO4–•, 1O2, and O2- •, which involved in the reaction. The Cu, carboxyl, and hydroxyl groups on the Cu-CSBC surface promoted the generation of radicals and non-radicals for the degradation process, which was dominated by both radical and non-radical pathways. The degradation pathway is proposed by measuring the intermediate products with LC-MS. Finally, the stability of the Cu-CSBC/US/PS system was tested under various reaction conditions. This study not only prepared a novel biochar composite material for the active degradation of organic pollutants by PS but also provided an effective method for the resource utilization of solid waste and sludge treatment.
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热解生物质-污泥生物炭与超声波结合用于抗生素降解中的过硫酸盐活化:效率、协同效应和反应机制
通过对污水污泥和玉米秸秆进行水热改性,制备了一种碳材料铜-玉米秸秆-污泥生物炭(Cu-CSBC)。在 0.5 g/L Cu-CSBC 和 3 mM PS 的条件下,5 min 内对 20 mg/L TC 的去除率达到 89.15%。在为此而建立的 Cu-CSBC/US/PS 系统中,探讨了系统中各因素之间的协同效应、反应机理以及水环境中 TC 的高效去除。淬火实验和电子顺磁共振分析均表明,Cu-CSBC/US/PS 系统在反应中产生了-OH、SO4-、1O2 和 O2- -。Cu-CSBC 表面的铜、羧基和羟基促进了降解过程中自由基和非自由基的生成,其中以自由基和非自由基途径为主。通过使用 LC-MS 测量中间产物,提出了降解途径。最后,测试了 Cu-CSBC/US/PS 系统在各种反应条件下的稳定性。该研究不仅制备了一种新型生物炭复合材料,可用于 PS 活性降解有机污染物,还为固体废弃物的资源化利用和污泥处理提供了一种有效的方法。
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