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过量污泥生物炭促进过硫酸盐高效去除四环素。

Excess sludge biochar facilitates persulfate activation for highly efficient tetracycline removal.

机构信息

Policy Research Center for Environment and Economy, Ministry of Ecology and Environment of the People's Republic of China, Beijing 100000, China.

School of Environmental Engineering, Xuzhou University of Technology, Xuzhou 221018, China E-mail:

出版信息

Water Sci Technol. 2022 Nov;86(9):2059-2070. doi: 10.2166/wst.2022.338.

Abstract

This study proposed a novel advanced oxidation system to treat metal and antibiotic pollution in water simultaneously. Meanwhile, the enhancement effect of absorbed metal pollution on the activation of persulfate in the system was also investigated. As the most widely used and polluting material, tetracycline (TC) and metal Fe were used as the pollutant models. In this study, a carbonaceous material (BC) was prepared from excess sludge and then combined with the persulfate system (Fe/BC/PS). It was found that the best biochar was obtained when the pyrolysis temperature reached 500 °C (BC500), with the specific surface area of 39.712 m/g. Combining it with 300 mg/L PS, the removal rate of 120 mg/L TC reached 70.6%. Moreover, the sludge biochar itself possessed numerous reaction sites and good defective structure, which provided a perfect reaction site for the variable metals absorbed by BC. They accelerated electron conduction greatly, which led to the activation of PS very active and generating far more active radicals than normal. In addition, it also proposed the rational pathway and potential mechanism of TC degradation based on the degradation intermediates. This study has a high reference value for resource utilization of sewage sludge and antibiotics removal from water.

摘要

本研究提出了一种新颖的高级氧化体系,可同时处理水中的金属和抗生素污染。同时,还研究了吸附金属污染对体系中过硫酸盐活化的增强作用。作为最广泛使用和污染的材料,四环素(TC)和金属 Fe 被用作污染物模型。在这项研究中,从过量的污泥中制备了一种碳质材料(BC),然后将其与过硫酸盐体系(Fe/BC/PS)结合。结果发现,当热解温度达到 500°C 时(BC500),得到的生物炭具有最佳的生物炭,比表面积为 39.712 m/g。将其与 300mg/L PS 结合使用,可使 120mg/L TC 的去除率达到 70.6%。此外,污泥生物炭本身具有众多反应位点和良好的缺陷结构,为 BC 吸附的可变金属提供了完美的反应位点。它们大大加速了电子传导,从而使 PS 的活化非常活跃,并产生比正常情况下更多的活性自由基。此外,还根据降解中间体提出了 TC 降解的合理途径和潜在机制。本研究对污水污泥的资源利用和水中抗生素的去除具有很高的参考价值。

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