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Optimization of Coagulation-Flocculation Process for Tello River Water Treatment Using Poly Aluminum Chloride and Aluminum Sulfate

机译:用聚氯化铝和硫酸铝凝血水处理凝血 - 絮凝过程的优化

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Tello River Water was utilized by PT.PLN SULSERABAR as Boiler feed water.Total Suspended Solid(TSS)in river water can be removed by the coagulation-flocculation process.Improved performance of coagulation process can be done by optimizing coagulant concentration and pH on coagulation.This research focused on optimization of pH and percent(%)removal of TSS using Poly Aluminum Chloride(PAC)and Aluminum Sulfate(Alum).The concentration of coagulant was 25% of the initial TSS of the sample for PAC and 35% of the initial TSS of the sample for Alum.The sample used in this research is Tello River Water which has initial TSS concentration of 195 mg/L with rapid mixing(350 rpm)for 1 minute,slow mixing(50 rpm)for 20 minutes and 30 minutes of sedimentation.The coagulation-flocculation process was carried out in the pH range of 4-10 and the TSS concentration was analyzed using the Gravimetric method.The optimum pH on coagulation and percent(%)TSS removal obtained from this study were 7,99.23% for PAC and 6,89.48% for Alum.These results indicated that PAC was the perfect coagulant for the removal of TSS because it was able to eliminate TSS nearly 100%.
机译:Pt.pln Sulserabar作为锅炉饲料水分使用Tello河水。通过凝血 - 絮凝过程可以除去河水中的悬浮固体(TSS)。通过优化凝血剂浓度和pH凝结,可以通过优化凝血剂浓度和pH来除去河水中的悬浮固体(TSS)。通过优化凝血剂浓度和pH凝结,可以进行凝血过程的性能。本研究专注于使用聚铝氯化铝(PAC)和硫酸铝(Alum)的pH和百分比去除TS的优化。凝结剂浓度为PAC样品初始TS的25%,35%本研究中使用的样品的初始TSS。本研究中使用的样品是Telro河水,其初始TSS浓度为195 mg / L,快速混合(350 rpm),1分钟,缓慢混合(50rpm),20分钟30分钟的沉降。凝结 - 絮凝过程在4-10的pH范围内进行,使用重量法分析TSS浓度。从本研究中获得的最佳pH值和从本研究中取出的百分比(%)TSS去除为7 p的99.23% AC和6,89.48%的ALUM。结果表明,PAC是除去TSS的完美凝结剂,因为它能够消除近100%的TSS。

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