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新型钙铝石类水处理剂对冶炼综合废水中阴阳离子的同步去除研究
引用本文:卢宇飞,付东康,吴广安,吴绍祖.新型钙铝石类水处理剂对冶炼综合废水中阴阳离子的同步去除研究[J].环境工程,2013,31(3):28-32,45.
作者姓名:卢宇飞  付东康  吴广安  吴绍祖
作者单位:1. 北京大学深圳研究生院环境与能源学院,深圳市重金属污染控制与资源化重点实验室,广东深圳518055
2. 北京盖雅技术中心有限公司,北京,100871
基金项目:水体污染控制与治理科技重大专项
摘    要:制备了一种主要成分为12CaO.7Al2O3的层状结构的新型钙铝石类水处理剂,并针对某种冶炼综合废水开展了实验室小试和现场中试。结果表明:投加占废水质量5‰~7‰的药剂,可将冶炼综合废水中的Zn2+、Cd2+、Ca2+、SO24-分别以Ca2ZnSi2O7、Cd2OSO4、CaSO4.2H2O的形式同步去除,去除率分别可达50%~60%、80%、100%。离子去除率与药剂投加量、反应时间、废水初始pH值、废水初始离子浓度等因素总体上均呈正相关。出水水质不仅满足达标排放标准,而且基本达到或接近工业循环冷却水回用标准。

关 键 词:钙铝石  冶炼综合废水  重金属  钙硬度  水回用

SIMULTANEOUS REMOVAL OF ANION AND CATION FROM INTEGRATED SMELTING WASTEWATER BY A NOVEL MAYENITE AGENT
Lu Yufei,Fu Dongkang,Wu Guang′an,Wu Shaozu.SIMULTANEOUS REMOVAL OF ANION AND CATION FROM INTEGRATED SMELTING WASTEWATER BY A NOVEL MAYENITE AGENT[J].Environmental Engineering,2013,31(3):28-32,45.
Authors:Lu Yufei  Fu Dongkang  Wu Guang′an  Wu Shaozu
Institution:1.Shenzhen Key Laboratory for Heavy Metal Pollution Control and Reutilization,School of Environment and Energy,Peking University Shenzhen Graduate School,Shenzhen 518055,China;2.Beijing Gaia Technology Center Co.,Ltd,Beijing 100871,China)
Abstract:A novel mayenite agent with the main component of 12CaO·7Al2O3 and a layered structure is prepared.The laboratory experiments and the field pilot on the treatment of integrated smelting wastewater are carried out.The results show that when the agent dosage is 5‰~7‰ of the wastewater weight,Zn2+,Cd2+,Ca2+,and SO2-4 can be simultaneously removed from the integrated smelting wastewater efficiently through the form of Ca2ZnSi2O7,Cd2OSO4,CaSO4·2H2O,with the removal rate of 50%~60%,80% and 100%,respectively.The ion removal rate was positively related to factors of the agent dosage,reaction time,initial pH and initial ion concentration of the wastewater.The effluent quality can not only reach the discharge standards,but also approach or reach the water reuse standards of industrial cooling water.
Keywords:mayenite  integrated smelting wastewater  heavy metals  calcium hardness  water reuse
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