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机构地区:[1]陕西科技大学轻工与能源学院,陕西省造纸技术及特种纸品开发重点实验室,陕西西安710021
出 处:《中国造纸》2016年第8期7-14,共8页China Pulp & Paper
基 金:陕西省科技统筹创新工程计划课题(2011KTZB03-03-01);教育厅科研计划项目14 JK1097;国家863科技计划子项目(2011AA06A101);陕西科技大学科研启动基金(BJ14-05)
摘 要:通过热解法探究了废纸造纸污泥制备泥质炭吸附材料的工艺条件,并对其热解固体产物特性进行了分析,发现造纸污泥经过研磨过筛预处理、ZnCl_2活化、中低温热解炭化、盐酸洗涤、研磨干燥后可制备出内部孔隙结构发达和比表面积高的优良吸附材料。结果表明,热解温度500℃,活化剂ZnCl_2浓度3mol/L,热解时间30 min,固液比为1∶2时可制备出碘吸附值达610.3 mg/g、固体泥质炭得率为73.3%。泥质炭比表面积可达310.81cm^2/g,高于商品活性炭的159.58cm^2/g,中孔和大孔的比例较大,呈蜂窝结构,吸附性能大大增强,可替代商品活性炭用于工业废水的处理。This paper studied the pyrolysis process conditions for preparation of carbon-based adsorption material from paper sludge and its characteristics. It was found that after grinding/screening pre-processing, ZnCl2 activation, low-temperature pyrolysis, hydrochloric acid washing, drying and grinding, paper sludge could be developed into excellent adsorption material with abundant internal pore structure and high specific surface area. The results showed that under the conditions of pyrolysis temperature 500℃, activator concentration 3 mol/L, py- rolysis time 30 mins, solid to liquid ratio 1:2, the yield of solid carbon achieved 73.3% which had iodine adsorption value 610. 3 mg/g. The specific surface area was up to 310. 8 cm2/g, higher than 159. 5 cm2/g of the commercial activated carbon. Its pore size about 40 and 100 was dominant, medium and large pores were in higher proportion capability. Its surface was uneven and had a cellular structure, which led to enhance its adsorption greatly. It could take the place of commencial activated carbon using in industrial waste water treatment.
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