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Characterization of char from slow pyrolysis of sewage sludge

机译:污水污泥缓慢热解炭的特征

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The effects of final pyrolysis temperature Tend from 300 degrees C to 550 degrees C, heating rates beta of 2 degrees C/min, 3 degrees C/min and 5 degrees C/min, retention time RT from 45 min to 90 min, and the moisture content MC from 0 to 70% on characteristics of the pyrolysis char from sewage sludge were investigated using a tube furnace in this study. The resulting chars were characterized by sorption of nitrogen (surface area and pore volume). Their adsorption characteristics were evaluated via iodine value and methylene blue value. Either the pore structures or adsorption characteristics depend on the pyrolysis processing and moisture content of the sludge precursors. In terms of iodine value and surface area of the char, Tend of 450 degrees C, RT of 75 min and beta of 3 degrees C/min proved the optimum combination of pyrolysis parameters. The chars have an undeveloped mesopore and macropore structure and a developed micropore structure. The sodium phenoxide adsorption equilibrium data fit well with the Langmuir model of adsorption, suggesting monolayer coverage of sodium phenoxide molecules at the surface of the char. Its adsorption mechanism is mainly physical in nature, enhanced by chemisorption.
机译:最终热解温度的影响范围为300摄氏度至550摄氏度,升温速率beta为2摄氏度/分钟,3摄氏度/分钟和5摄氏度/分钟,保留时间RT从45分钟至90分钟以及这项研究使用管式炉研究了0至70%的水分含量MC对污水污泥的热解炭的特性。所形成的炭的特征在于氮的吸附(表面积和孔体积)。通过碘值和亚甲基蓝值评价它们的吸附特性。孔结构或吸附特性取决于热解过程和污泥前体的水分含量。就焦炭的碘值和表面积而言,Tend为450摄氏度,RT为75分钟,β为3摄氏度/分钟,证明了热解参数的最佳组合。炭具有不发达的中孔和大孔结构以及发达的微孔结构。苯酚钠的吸附平衡数据与Langmuir吸附模型非常吻合,表明在焦炭表面单层覆盖了苯酚钠分子。其吸附机理主要是物理性质,通过化学吸附作用得以增强。

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