Using sewage sludge with high ash content for biochar production and Cu(II) sorption

生物炭 吸附 环境化学 污水污泥 环境科学 化学 吸附 污水处理 环境工程 热解 有机化学
作者
Jianping Fan,Yan Li,Huayong Yu,Yuxuan Li,Qiangjun Yuan,Honglin Xiao,Fangfang Li,Bo Pan
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:713: 136663-136663 被引量:126
标识
DOI:10.1016/j.scitotenv.2020.136663
摘要

The ash content of municipal sewage sludge is generally high. However, the manner in which the composition of ash affects biochar properties and sorption remains unclear. Sewage sludge from two cities, Chongqing and Kunming, were pyrolyzed at different temperatures to produce biochar in this work. The physicochemical properties of biochar were investigated by bulk chemical characteristics (such as FTIR, XPS, Raman analysis, and elemental analysis) and benzene polycarboxylic acid (BPCA) molecular biomarkers, after which they were correlated with sorption characteristics. In comparison with biochar from Chongqing sewage sludge (CSS), biochar from Kunming sewage sludge (KSS) showed stronger polarity, a larger specific surface area (SSA) and more functional groups, but a lower degree of graphitization and aromatization. These differences may result from the higher aluminum (Al) content of KSS. The single-point sorption coefficient Kd values of biochar derived from CSS and KSS were analyzed together. Kd was positively correlated with the SSA and pore volume of sewage sludge and biochar produced at 200-300 °C. For biochar produced at 300-700 °C, the Kd value was positively correlated with the O content, O/C and (O + N)/C. The pyrolysis temperature of 300 °C was a threshold temperature for Cu(II) sorption onto biochar, at which there was a balance between decreased oxygen-containing functional groups and increased SSA. The findings of this study show that higher Al content in sewage sludge was beneficial to pore volume enlargement and functional group retention during the pyrolysis process.

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