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Effects of Slow-Mixing on the Coagulation Performance of Polyaluminum Chloride (PACI)

机译:慢速混合对聚合氯化铝(PACI)混凝性能的影响

摘要

Conventional jar tests and on-line size monitoring were used to investigate the effects of slow-mixing intensity and duration on residual turbidity and floc size during charge neutralization coagulation and sweep flocculation with polyaluminum chloride. The compensatory effect of slow-mixing on coagulation performance following inadequate or excessive rapid-mixing was also examined. It is found that slow-mixing intensity has a more marked positive effect on charge neutralization coagulation than on sweep flocculation. The optimal root-mean-square velocity gradient, G, for slow-mixing is 15 s(-1) for both coagulation mechanisms, and charge neutralization coagulation requires a longer slow-mixing duration. The optimal slow-mixing duration, based on residual turbidity, is longer than the time to form the largest mean flocs. The optimal product of G and mixing duration, GT, for slow-mixing during charge neutralization coagulation (13500) are higher than that during sweep flocculation (4500) and both are less than the range of values recommended by the American Water Works Association (24000-84000). The optimal GT value under various slow-mixing conditions increases with G. Appropriate extension of slow-mixing duration during charge neutralization coagulation can improve coagulation performance after an inadequate or excessive rapid-mixing duration, but during sweep flocculation, appropriate shortening of slow-mixing duration after an excessive rapid-mixing or appropriate extension of slow-mixing duration after an inadequate rapid-mixing is favorable.
机译:常规罐试验和在线尺寸监测用于研究缓慢混合强度和持续时间对电荷中和凝结和聚氯化铝絮凝过程中残留浊度和絮凝物尺寸的影响。还检查了慢速混合对不足或过度快速混合后的混凝性能的补偿作用。已经发现,慢速混合强度对电荷中和凝结的作用比对清扫絮凝的作用更为显着。两种混凝机制的最佳均方根速度梯度G均为15 s(-1),电荷中和凝结需要更长的混慢时间。基于残留浊度的最佳慢速混合持续时间长于形成最大平均絮凝物的时间。电荷中和凝结期间缓慢混合的最佳G和混合持续时间GT的乘积(13500)高于吹扫絮凝期间的最佳乘积(4500),且均小于美国水务协会推荐的值范围(24000) -84000)。各种慢速混合条件下的最佳GT值随G的增加而增加。在电荷中和凝结过程中适当延长慢速持续时间可以改善快速混合时间不足或过长后的凝结性能,但在吹扫絮凝过程中,适当缩短慢速混合时间过度快速混合后的持续时间或不充分快速混合后适当延长慢速混合时间是有利的。

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