共查询到18条相似文献,搜索用时 93 毫秒
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采用硅藻土对聚合硫酸铁(PFS)、聚合氯化铝(PAC)的混凝能力进行强化,并用于线路板含络合铜废水中铜的去除。考察了硅藻土加入量、混凝剂加入量、pH、快速搅拌速率和沉淀时间等因素对除铜效果的影响,并与目前常用的硫化钠破络方法进行了对比。实验结果表明:硅藻土强化混凝的除铜效果明显好于单独投加PAC或PFS;PFS-硅藻土除铜效果好于PAC-硅藻土;在pH为8.0~9.0、硅藻土加入量为120 mg/L、PFS加入量为60 mg/L、快速搅拌速率为250 r/min的条件下,沉淀40 min后可使出水铜质量浓度低于0.30 mg/L,比传统破络工艺出水水质更稳定,成本更低。 相似文献
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采用交流变频磁场预处理聚合硫酸铁(PFS),用于混凝处理造纸废水。考察了有无磁化作用、PFS加入量、磁化强度、磁化频率、磁化时间等因素对造纸废水的COD去除率和色度去除率的影响。实验结果表明:磁化PFS对造纸废水的处理效果较未磁化时明显提高;在PFS加入量为1 000 mg/L、磁化强度为6 mT、磁化频率为90 Hz、磁化时间为3 min的条件下,处理初始COD为650 mg/L、初始色度为180倍的造纸废水,COD去除率为93.22%,色度去除率为88.89%。 相似文献
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采用混凝法分别以聚合氯化铁(PFC)、聚合氯化铝(PAC)和聚合硫酸铁(PFS)为混凝剂处理天津某石油化工厂二级氧化处理工艺出水,PFC对废水COD的去除效果最好,在PFC加入量为120mg/L时,废水的COD去除率最高,为22.35%。经正交实验确定了Fenton试剂氧化法处理废水的最佳实验条件为:Fe^2+加入量290mg/L、H2O2加入量100mg/L、pH=6、反应时间30min,此时COD去除率为20.45%。活性炭吸附法对废水的处理效果随活性炭加入量增加而改善,活性炭的最佳加入量为2000mg/L,此时废水的COD去除率最高,为87.78%。 相似文献
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化学混凝法处理合成洗涤剂废水 总被引:10,自引:0,他引:10
本文介绍了合成洗涤剂废水的性质,并对合成洗涤剂废水的化学混凝法处理进行了研究。从多种混凝剂中筛选出聚合硫酸铁混凝剂,并确定出混凝处理的工艺条件及流程,对合成洗涤剂废水处理具有一定的指导意义。 相似文献
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以高炉渣为原料,分别采用酸浸及碱浸-酸化工艺得到铁、铝离子及聚硅酸,再将铁、铝离子引入聚硅酸制得聚硅酸硫酸铝铁(PSAFS)混凝剂。考察了PSAFS的聚合条件对焦化废水混凝效果的影响,并与市售混凝剂进行了对比。实验结果表明:PSAFS的最佳制备条件为n(Al+Fe)∶n(Si)=0.53,混凝剂p H=1,熟化时间0.5 h,熟化温度60℃;PSAFS加入量为4 m L/L时,混凝效果最好,对焦化废水的浊度和COD的去除率分别达到98.9%和74.5%;PSAFS的性能优于市售的3种混凝剂。 相似文献
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Effect of aluminum sulfate and cationic polyelectrolytes on the destabilization of emulsified wastes 总被引:9,自引:0,他引:9
Emulsified oil in wastewater constitutes a severe problem in the different treatment stages. Aluminum salts have been traditionally used as coagulants in wastewater treatments. Polyelectrolytes are used to coagulate and flocculate colloidal systems. The performance of aluminum sulfate in comparison to polyelectrolytes (chitosan and polyacrylamide) as conditioning chemicals for an emulsion waste was tested, and the predominant mechanisms acting in each case were analyzed. Turbidimetry, jar test, colloidal titration and microscopy were used to test emulsion destabilization. Both charge neutralization and bridge formation were identified and confirmed as mechanisms of interaction of polyelectrolytes with waste constitutents. Charge neutralization would be more important for chitosan than for polyacrylamide treatment. A coincidence between the doses necessary to reach zero colloidal charge and minimum turbidity was observed for polyelectrolytes. The time necessary to produce system clarification was larger for aluminum sulfate than for polyelectrolytes; this time was shortened for higher aluminum sulfate concentration. The pH showed a marked effect on aluminum sulfate performance with the optimum at pH 6; polyelectrolyte action was practically not affected by pH. Polyelectrolyte addition produced the minimum turbidity for the same doses that zero colloidal charge; at higher doses, emulsion was restabilized and became turbid again. However, aluminum sulfate treatment did not produce emulsion restabilization. 相似文献
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用聚合硅酸、聚合氯化铝和硫酸镁复合制备复合絮凝剂聚硅酸氯化铝镁。SEM分析结果表明,聚硅酸氯化铝镁为交联的枝杈状聚集态。FTIR仪分析表明,聚铝离子及水解络合离子可与共存的聚硅酸聚合形成配位键。以实际废水为处理对象,比较了自制复合絮凝剂聚硅酸氯化铝镁与市售聚合氯化铝的絮凝效果。实验结果表明:在聚硅酸氯化铝镁加入量为40mg/L、废水pH为3的条件下,以自制聚硅酸氯化铝镁为絮凝剂时废水的COD、BOD5、TP、TN、浊度去除率均较高;自制复合絮凝剂聚硅酸氯化铝镁的废水处理效果均优于市售聚合氯化铝。 相似文献