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介孔碳吸附处理高盐染料废水
引用本文:杜莹,毛娟,吴晓辉,明银安,余翔.介孔碳吸附处理高盐染料废水[J].工业安全与环保,2019,45(5):103-106.
作者姓名:杜莹  毛娟  吴晓辉  明银安  余翔
作者单位:武汉工程大学化学与环境工程学院 武汉430205;华中科技大学环境科学与工程学院 武汉430074
摘    要:采用软模板法,选取葡萄糖、蔗糖、木质素及酚醛树脂作为碳源,分别以P123,F127为单一模板剂和P123/F127为复合模板剂,通过控制盐酸体积、炭烧温度及时间等工艺条件,探究制备介孔碳材料的最佳条件,制备介孔碳材料用于处理含5%NaCl的亚甲基蓝模拟废水,亚甲基蓝初始质量浓度为300 mg/L。结果表明,选用间苯三酚/甲醛为碳源,质量比为1:3的P123/F127复合模板剂,0.15 mL的盐酸为催化剂,600℃的炭烧温度,3 h的炭烧时间,制备出的介孔碳材料最好,其对高盐亚甲基蓝溶液的吸附量为385.19 mg/g,是活性炭的1.83倍,并缩短了吸附平衡时间。

关 键 词:介孔碳  制备  高盐环境  亚甲基蓝  模板剂

Adsorption Treatment of High Salinity Dye Wastewater with Mesoporous Carbon
DU Ying,MAO Juan,WU Xiaohui,MING Yin’an,YU Xiang.Adsorption Treatment of High Salinity Dye Wastewater with Mesoporous Carbon[J].Industrial Safety and Dust Control,2019,45(5):103-106.
Authors:DU Ying  MAO Juan  WU Xiaohui  MING Yin’an  YU Xiang
Institution:(School of Chemistry and Environmental Engineering ,Wuhan Institute of Technology Wuhan 430205)
Abstract:The soft template method was adopted,and glucose,sucrose,lignin and phenolic resin were selected as different carbon sources.P123,F127 were used as single template agent and P123/F127 as composite template agent respectively.The optimum conditions for preparing mesoporous carbon materials were explored by controlling the volume of hydrochloric acid,burning temperature and time of charcoal.Mesoporous carbon material was used to treat methylene blue simulated wastewater containing 5%NaCl.The initial concentration of methylene blue was 300 mg/L.The results showed that mesoporous carbon materials prepared by using resorcinol/formaldehyde as carbon source,P123/F127 composite template agent with a mass ratio of 1 3,0.15 mL hydrochloric acid as catalyst,600℃charcoal burning temperature and 3 h charcoal burning time were the best.The adsorption capacity of mesoporous carbon materials for methylene blue in high salinity solution was 385.19 mg/g,which was 1.83 times of activated carbon,moreover,the adsorption equilibrium time was shortened.
Keywords:mesoporous carbon  preparation  high salinity  methylene blue  template agent
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