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首页> 外文期刊>Water Science & Technology. Water Supply >Practical design of flocculator for new polymeric inorganic coagulant-PSI
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Practical design of flocculator for new polymeric inorganic coagulant-PSI

机译:新型高分子无机混凝剂-PSI絮凝剂的实用设计

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摘要

Physical characteristics of flocs formed by new polymeric inorganic coagulant, polysilicato-iron coagulant (PSI) were investigated using kaolinite clay suspended water as test water. Floc density was determined by measuring floc settling velocity and spherical equivalent floc diameter. The floc density function proposed by Tambo and Watanabe could be applied to PSI. Flocs formed by PSI showed higher floc density than those formed by alum at the same floc size. Floc size distribution after the rapid mixing was also determined. PSI could produce well-grown flocs at the stirring speed of 300 rpm. Stirring at 300 rpm for 7 minutes, residual turbidity after 15 minute sedimentation became lower than rapid mixing at 120 rpm for 5 minutes followed by slow mixing at 40 rpm for 25 minutes. Flocs formed by PSI was much stronger than those formed by alum. Using the data obtained, the design parameters of flocculator by use of PSI were estimated following Tambo and Watanabe's procedure. According to the estimation, it was suggested that rapid mixing process alone can make well-grown flocs and slow mixing process, which is essential for the conventional water purification system using aluminium coagulants, can be eliminated by use of PSI.
机译:使用高岭石粘土悬浮水作为测试水,研究了由新型聚合物无机凝结剂,聚硅铁凝结剂(PSI)形成的絮凝物的物理特性。通过测量絮凝沉降速度和球形当量絮凝直径来确定絮凝密度。 Tambo和Watanabe提出的絮体密度函数可以应用于PSI。在相同的絮凝体尺寸下,由PSI形成的絮凝体比由明矾形成的絮凝体具有更高的絮凝密度。还确定了快速混合后的絮凝物尺寸分布。 PSI可以在300 rpm的搅拌速度下生产出生长良好的絮凝物。以300 rpm搅拌7分钟,沉淀15分钟后的残留浊度变得低于以120 rpm快速混合5分钟,然后以40 rpm缓慢混合25分钟。 PSI形成的絮凝物比明矾形成的絮凝物强得多。使用获得的数据,按照Tambo和Watanabe的方法估算使用PSI的絮凝器的设计参数。根据估算结果,建议仅使用快速混合工艺就可以使絮凝体生长良好,而对于使用铝凝结剂的常规净水系统必不可少的慢速混合工艺可以通过使用PSI消除。

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