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建筑垃圾转化砷吸附材料的方法及其吸附性能

Systhesis and characterization of arsenic adsorption material from construction and demolition waste

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【作者】 王川陈心心张付申

【Author】 WANG Chuan;CHEN Xinxin;ZHANG Fushen;Inner Mongolia Key Laboratory of Environmental Pollution Control & Waste Resource Reuse,Inner Mongolia University;Research Center for Eco-Environmental Sciences,Chinese Academy of Sciences;College of Environmental & Resources,Inner Mongolia University;

【机构】 内蒙古大学内蒙古自治区环境污染控制与废物资源化重点实验室中国科学院生态环境研究中心内蒙古大学环境与资源学院

【摘要】 水环境中的砷污染问题近年来越来越突出,吸附是主要的净化途径之一。以建筑垃圾为主要原材料,合成了一种新型的廉价除砷颗粒吸附剂。首先通过烧结制备多孔陶粒,再利用水热过程将陶粒基体转变为沸石基体,最后利用铁离子对沸石基体进行表面改性,制备出具有复合多级孔结构的铁负载沸石陶粒(简称IMZC)产品。XRD图谱显示负载的铁主要以无定形体存在,显著增加了沸石基体的比表面积。吸附实验表明,老化时间和pH值对铁改性沸石颗粒的吸附能力有显著影响,该吸附过程可以用Langmuir模型表征,最大吸附量达到18.727 mg·g-1。该吸附材料在面源污染和突发事件中砷的净化去除方面具有良好的应用前景

【Abstract】 Aquatic arsenic contamination is becoming increasingly severe,and adsorption is one of the main methods for water purification.In this study,a novel granular adsorbent was developed from construction and demolition waste.Initial porous ceramsite was prepared through sintering and converted to zeolite ceramsite by hydrothermal treatment.Finally,iron-modified zeolite ceramsite( IMZC),with a hierarchical porous structure,was synthesized through surface modification by iron.XRD patterns showed that iron loaded on IMZC was mainly amorphous and significantly increased the specific surface.Adsorption experiments showed that the adsorption capacity was closely related to the aged time and pH value.An adsorption isotherm study indicated that adsorption behavior was sufficiently described by the Langmuir model,and qmaxreached 18.727 mg·g-1.IMZC has good application prospects as a granular adsorbent for arsenic removal from non-point pollution or accidental contaminations.

【基金】 内蒙古大学高层次人才引进科研项目(135141);清华大学深圳研究生院-城市资源循环利用工程技术研究中心开放基金资助项目(URRT2014005);内蒙古自然科学基金资助项目(2015BS0506)
  • 【文献出处】 环境工程学报 ,Chinese Journal of Environmental Engineering , 编辑部邮箱 ,2017年07期
  • 【分类号】X799.1
  • 【被引频次】2
  • 【下载频次】194
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