化学
过硫酸盐
钴
水溶液
降级(电信)
单线态氧
生物炭
铁质
三氯生
激进的
化学工程
氧气
催化作用
无机化学
有机化学
热解
医学
电信
病理
计算机科学
工程类
作者
Fei Wang,Xingyu Liu,Chennan Guo,Fei Lian,Zimeng Li,Meiyan Wang,Binbin Sun,Wenling Wu,Hongwen Sun
标识
DOI:10.1016/j.envpol.2024.124487
摘要
Low activation performance is a critical issue limiting the practical application of low-cost biochar in the advanced oxidation. Given the high potential of transition metals in the persulfate activation process and abundant oxygen-containing groups of hydrochar, hydrochar derived from cobalt (Co)-modified iron (Fe)-enriched sludge was synthesized and its performance and activation mechanism for the degradation of triclosan were investigated. Co modification significantly altered the morphology of hydrochar, and the increased Co-Fe mass ratios transformed hydrochar from granular to rose-shaped lamellar and then to helical sheet structures. Specific surface area, defect degree, and oxygen-containing groups of hydrochar increased with increasing cobalt-iron mass ratios. The highest removal of triclosan was up to 98% in the hydrochar/peroxymonosulfate (PMS) system under a wide range of pHs (3-10) and still remained higher than 90% after four cycles. Both Radical (mainly hydroxyl radical) and nonradical pathways (singlet oxygen and electron transfer) were evidenced to play roles in the triclosan removal. Fe
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