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高性能炭材料深度净化含酚废水研究进展
引用本文:刘俊逸,吴田,李杰,曾国平,杨昌柱,黄华,尹笃林.高性能炭材料深度净化含酚废水研究进展[J].工业水处理,2020(1):8-12,17.
作者姓名:刘俊逸  吴田  李杰  曾国平  杨昌柱  黄华  尹笃林
作者单位:湖北第二师范学院材料科学研究院;华中科技大学环境科学与工程学院;湖南师范大学石化新材料与资源精细利用国家地方联合工程实验室
基金项目:湖北省自然科学基金(2018CFB782);湖北省教育厅科学研究计划(Q20193001);湖北第二师范学院科研启动项目(2019NO.7);湖北第二师范学院大学生创新创业项目(201814099003)
摘    要:含酚废水主要来源于石油化工厂、染料厂、焦化厂、制药厂等化学工业的生产过程中,其毒性大、衍生物繁杂、来源广泛、危害严重、难以自然降解。炭材料因其物理微观结构的优势,作为催化载体和吸附材料已广泛应用于各类化学、化工、环保技术之中。综述了国内外各类先进炭材料深度净化含酚废水新技术及其工艺,比较和分析了这些技术的优缺点及其工程应用的可行性,展望了未来深度处理技术的发展方向。

关 键 词:炭材料  含酚废水  物理吸附  催化氧化  水处理

Research progress on the deep purification of phenol-containing wastewater by advanced carbon materials
Liu Junyi,Wu Tian,Li Jie,Zeng Guoping,Yang Changzhu,Huang Hua,Yin Dulin.Research progress on the deep purification of phenol-containing wastewater by advanced carbon materials[J].Industrial Water Treatment,2020(1):8-12,17.
Authors:Liu Junyi  Wu Tian  Li Jie  Zeng Guoping  Yang Changzhu  Huang Hua  Yin Dulin
Affiliation:(Research Institute of Materials Science,Hubei University of Education,Wuhan 430205,China;School of Environmental Science and Engineering,Huazhong University of Science and Technology,Wuhan 430074,China;National&Local Joint Engineering Laboratory for New Petro-chemicalMaterials and Fine Utilization of Resources,Hunan Normal University,Changsha 410081,China)
Abstract:The phenol-containing wastewater is characterised with high toxicity,various derivatives,many sources,dangerous hazards,difficulty in natural degradation.It mainly comes from the chemical production processes of petro-chemical industry,printing and dyeing industry,coking industry,pharmacy industry and other chemical industry.Car-bon materials have been widely used as catalytic carriers and adsorption materials in various chemical,chemical and environmental protection technologies,owing to its advanced performance of physical microstructure.This paper com-prehensively reviews the new technologies and processes on the deep purification of phenol-containing wastewater by advanced carbon materials.The advantages and disadvantages of these technologies and the feasibility of engineering application are compared and analyzed,and the future development of these technologies has prospected.
Keywords:carbon materials  phenol-containing wastewater  physical adsorption  catalytic oxidation  water treatmen
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