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压力强化混凝除藻工艺中藻毒素安全性研究 被引量:4

Microcystin Safety Study During Cyanobacteria Removal by Pressure Enhanced Coagulation Process
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摘要 为了研究预压力强化混凝沉淀蓝藻水处理工艺中,外加压力是否会引起藻细胞破裂,导致细胞内藻毒素泄漏到水体中,影响供水安全,实验对比研究了预压力和预氧化含藻水后藻毒素浓度的变化,以及预压力混凝沉淀和预氧化混凝沉淀除藻工艺中藻毒素浓度的变化和藻类去除效果.结果表明,含藻水经0.4~0.8 MPa压力加压后,水中藻毒素浓度没有增加,而次氯酸钠预氧化后水中藻毒素浓度大幅度增加.在0.5~0.8 MPa压力范围内,加压后混凝沉淀取得了较好的除藻除浊效果,蓝藻去除率达到90%~93.5%,浊度1.23~1.95 NTU,而次氯酸钠预氧化混凝沉淀后,蓝藻去除率56.2%~78.8%,浊度8.01~10.7 NTU,说明压力强化混凝沉淀除藻工艺是安全有效的. Pressure enhanced coagulation and sedimentation technique is an effective way for blue algae treatment. It is not clear whether Cyanobacteria balloon rupture will cause Cyanobacteria cells rupture, resulting in high intracellular concentrations of microcystin LR leak into the water, affecting drinking water safety. Therefore, in this study experimental comparative study of pressure and pre-oxidation of water containing Cyanobacteria was carried out to examine the microcystin LR concentration changes and Cyanobacteria removal efficiency. The results showed that microcystin concentration increase was not significant by the pre-treatment with Cyanobacteria water pressure, while the pre-oxidation process caused a significant increase in the concentration of microcystin. After 0. 5-0. 8 MPa pressure coagulation and sedimentation, removal of Cyanobacteria basically was over 90% , up to 93. 5% , while the removal rate by pre-oxidation was low and unstable. Effluent turbidity is also significantly better in the pre-pressure method than the pre-oxidation. The results indicated that pressure enhanced coagulation is a safe and reliable method for Cyanobacteria removal.
出处 《环境科学》 EI CAS CSCD 北大核心 2014年第11期4171-4175,共5页 Environmental Science
基金 国家自然科学基金项目(51178408) 江苏省水利动力工程重点实验室项目(K13020)
关键词 蓝藻 藻毒素 预压力 预氧化 混凝沉淀 Cyanobacteria microcystin pre-pressure pre-oxidation coagulation and sedimentation
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