Unveiling the roles of dissolved organic matters derived from different biochar in biochar/persulfate system: Mechanism and toxicity

生物炭 溶解有机碳 木炭 环境化学 化学 热解 固碳 过硫酸盐 二氧化碳 催化作用 有机化学
作者
Xuerong Zhou,Cui Lai,Eydhah Almatrafi,Shiyu Liu,Huchuan Yan,Shixian Qian,Hanxi Li,Lei Qin,Huan Yi,Yukui Fu,Ling Li,Mingming Zhang,Fuhang Xu,Zhuotong Zeng,Guangming Zeng
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:864: 161062-161062 被引量:9
标识
DOI:10.1016/j.scitotenv.2022.161062
摘要

Biochar has been frequently used as a persulfate (PS) activator due to its attractive properties, but dissolved organic matter (DOM) derived from the non‑carbonized part of biochar has received less attention, not to mention its specific role and impact in biochar/PS systems. In this study, wheat straw, municipal sludge, and swine bone were selected as the representative feed stocks of biochar. Subsequently, these three types of biochar were adopted to explore the roles of DOM in biochar/PS systems. Although the composition and amount of DOM derived from different biochar were discrepant, they exhibited similar effect in biochar/PS systems. To be specific, the pore-clogging effect of DOM on biochar suppressed the adsorption capacity and catalytic performance of the three biochar. Furthermore, the removal of DOM decreased the environmental risk of these biochar/PS systems and enhanced the stability of the involved biochar. With respect to the variation in degradation mechanism, the removal of DOM increased the proportion of electron transfer pathway in unison, but the diminution in the roles of O2•¯ and 1O2 was more remarkable in bone-derived-biochar/PS systems. Additionally, the toxicity test illustrated that the leakage and accumulation of DOM were toxic to Chlorella sp., and the DOM from sludge-derived-biochar presented the highest toxicity. Overall, this study analyzes the roles of DOM derived from different biochar in biochar/PS systems and evaluates their environmental risk, which contributes to a comprehensive understanding of the fate of DOM derived from biochar.
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