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陶瓷印花废水处理的混凝剂及工艺条件

Coagulant and processing conditions of ceramic printing wastewater treatment

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【作者】 张永利韦朝海罗丹萍陈伟林黄志珍杨柳珊

【Author】 Zhang Yongli1 Wei Chaohai1 Luo Danping2 Chen Weilin2 Huang Zhizhen2 Yang Liushan2(1.College of Environmental Science and Engineering,South China University of Technology,Guangzhou 510006,China; 2.Department of Chemistry,Hanshan Normal University,Chaozhou 521041,China)

【机构】 华南理工大学环境科学与工程学院韩山师范学院化学系

【摘要】 采用混凝剂聚合氯化铝(PAC)、聚丙烯酰胺(PAM)、聚合硫酸铁(PFS)对陶瓷印花废水进行混凝沉降处理,监测水样的吸光度、浊度、悬浮物,以脱色率、浊度去除率、悬浮物去除率评价混凝处理的效果。结果表明:PAC是陶瓷印花废水沉降处理的理想混凝剂;水样的吸光度、浊度、悬浮物随混凝剂用量增大和沉降时间延长而呈降低趋势,而脱色率、浊度去除率、悬浮物去除率随混凝剂和沉降时间的增大呈增大的趋势;PAC投加量为20 mg/L,沉降时间约为24 h,水样脱色率达到90.0%,而当PAC投加量达到100 mg/L,沉降时间约为4 h,陶瓷印花水的脱色率可达到96.0%。证明了药剂用量的增加与沉降时间的延长对混凝过程具有增效作用。

【Abstract】 Ceramic printing wastewater was treated with the method of coagulation and sedimentation by the coagulants of PAC,PAM,PFS.The treatment effects of coagulants were evaluated by decolorization removal rate,turbidity removal rate,suspended solid removal rate by being monitored absorbency,turbidity,suspended matter of water.The results show that PAC is an ideal coagulant for the ceramic printing wastewater treatment.The treatment effect of ceramic printing wastewater was studied with the different coagulant dosages and settlement times.The experiments show that water absorbency,turbidity,suspended solids decreased with the increase of coagulant dosages and the extendion of settling time,and that decolorization,turbidity removal rate and suspended substance removal rate increased with the increase of PAC dosages and the extendion of settlement time.Under the conditions of PAC dosage of 20 mg/L,and the settling time of 24 h,the water decolorization reaches 90.0%.Under the conditions of the PAC dosage of 100 mg/L,the settling time of 4 h,ceramic printing wastewater decolorization can reach 96.0%.These prove that the increase of reagent amount and the extend of settling time has synergies to the coagulation process.

【基金】 广东省自然科学基金资助项目(10152104101000010);广东省科技厅省部产学研项目(2011B090400521);广东省高等学校人才引进专项资金
  • 【文献出处】 环境工程学报 ,Chinese Journal of Environmental Engineering , 编辑部邮箱 ,2012年12期
  • 【分类号】X791
  • 【被引频次】10
  • 【下载频次】217
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