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

机译:使用高灰分的污水污泥生产生物炭和吸附铜(II)

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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 K_d values of biochar derived from CSS and KSS were analyzed together. K_d was positively correlated with the SSA and pore volume of sewage sludge and biochar produced at 200-300 ℃. For biochar produced at 300-700 ℃, the K_d value was positively correlated with the 0 content, O/C and (0 + N)/C. The pyrolysis temperature of 300 ℃ 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.
机译:城市污水污泥的灰分含量普遍较高。但是,灰分组成影响生物炭特性和吸附的方式仍不清楚。在这项工作中,重庆和昆明这两个城市的污水污泥在不同温度下被热解以产生生物炭。通过整体化学特征(如FTIR,XPS,拉曼分析和元素分析)和苯聚羧酸(BPCA)分子生物标记物研究了生物炭的理化性质,然后将它们与吸附特性相关联。与重庆市污水污泥(CSS)的生物炭相比,昆明市污水污泥(KSS)的生物炭显示出更强的极性,更大的比表面积(SSA)和更多的官能团,但石墨化和芳构化程度较低。这些差异可能是由KSS中较高的铝(Al)含量引起的。一起分析了来自CSS和KSS的生物炭的单点吸附系数K_d值。 K_d与SSA以及200-300℃下产生的污泥和生物炭的孔体积呈正相关。对于在300-700℃产生的生物炭,K_d值与0含量,O / C和(0 + N)/ C正相关。 300℃的热解温度是Cu(II)吸附到生物炭上的临界温度,在此温度下,含氧官能团的减少与SSA的增加之间存在平衡。这项研究的结果表明,污水污泥中较高的Al含量有利于热解过程中孔体积的扩大和官能团的保留。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第15期|136663.1-136663.8|共8页
  • 作者单位

    Faculty of Environmental Science & Engineering Kunming University of Science & Technology Kunming 650500 China Yunnan Provincial Key Laboratory of Soil Carbon Sequestration and Pollution Control Kunming 650500 China College of Chemistry and Environmental Engineering Chongqing University of Arts and Sciences Chongqing 402160 China Chongqing Key Laboratory of Environmental Materials & Remediation Technologies Chongqing University of Arts and Sciences Chongqing 402160 China;

    Faculty of Environmental Science & Engineering Kunming University of Science & Technology Kunming 650500 China Yunnan Provincial Key Laboratory of Soil Carbon Sequestration and Pollution Control Kunming 650500 China;

    Zhejiang Yongchuang Environmental Technology Co. LTD Hangzhou 310012 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Sewage sludge; Ash content; Sorption mechanism; Heavy metals;

    机译:生物炭污水污泥;灰分;吸附机制;重金属;

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