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作 者:胡雅 熊萍 孙秀云[1,2] HU Ya;XIONG Ping;SUN Xiu-yun(School of Environmental and Biological Engineering,Nanjing University of Science and Technology,Nanjing 210014,China;Key Laboratory of Chemical Pollution Control and Resource Utilization of Universities of Jiangsu Province,Nanjing 210094,China)
机构地区:[1]南京理工大学环境与生物工程学院,江苏南京210014 [2]化工污染控制与资源化江苏省高校重点实验室,江苏南京210094
出 处:《应用化工》2024年第1期67-70,共4页Applied Chemical Industry
基 金:江苏省环境保护厅环保科研计划(2017004)。
摘 要:采用热处理工艺研究高有机物含量泰妙菌素废盐。通过分析泰妙菌素废盐无机、有机成分,考察不同气氛、温度下废盐的热解过程及废盐热解产物,确定泰妙菌素废盐的最佳热解工艺:氮气气氛、温度在500℃,继而得到热解活性炭,其总比表面积为2270 m^(2)/g、微孔比表面积为1000 m^(2)/g、介孔平均孔径为6.50 nm、微孔平均孔径为0.55 nm。将高有机物含量泰妙菌素废盐经过热处理以实现废盐的资源化利用,为类似高有机物含量废盐的资源化利用提供参考。The waste salt with high organic content was studied by heat treatment.By analyzing the inorganic and organic components of the waste salt,the pyrolysis process of the waste salt and the pyrolysis products of the waste salt in different atmosphere and temperature were investigated,the best pyrolysis process of waste salt of Taymycin was determined as follows:nitrogen atmosphere,temperature at 500℃,then activated carbon was obtained,the total specific surface area is 2270 m ^(2)/g,the micropore specific surface area is 1000 m ^(2)/g,the mesoporous average pore diameter is 6.50 nm,the micropore average pore diameter is 0.55 nm.The waste salt with high organic content was heat-treated to realize the resource utilization of the waste salt.
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