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Comparison of three antiscalants, as applied to the treatment of water from the River Oise

机译:三种防垢剂用于瓦兹河水处理的比较

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Nanofiltration, used in the Mery-sur-Oise water treatment plant (90 mgd) provides a softened water with a low orgaic matter content from which micropollutants and microorganisms have been removed. The experience acquired on the site since 1992 has revealed that the use of a crystal formation inhibitor is essential to slow down the clogging of the nanofiltration membranes, essentially on the third stage. Given the complexity of the action of the antiscalants (threshold effect, metal ion sequestration capacity, particle dispersion capacity), it is difficult to theoretically define the type of product to be used and its optimal dosing level. In addition to laboratories or modelling studies, pilot experiments are needed to assess antiscalants and optimise their doses. Nanofiltration cycles being long (1-2 months), it is nevertheless difficult to compare results of cycles, and the objective of the project ws to develop a methodology for sequestering agent testing. In order to carry out strictly comprative studies of commercially available products as well as studies using the same product but at several different dosage levels, a pilot unit comporising three parallel nanofiltration trains was build. The pilot unit is fed with 2nd stage concentrate, produced without sequestering agent, and each trains has its own separate antiscalant injection point. The first cycles aimed to provide answers to the following: (i) choice of the antiscalant best adapted to the treatment of wter from the river Oise, (ii) identification of the clogging agents, (iii) the efficiency of the chemical regeneration procedure. On completion of comparative tests on three commercially available products, only one gave redhibitory water permeability and pressure drop results. The two other preoducts, applied at the dose levels recommended by the manufacturers, gave results that were equivalent. Analysing the cleaning waters provided further information on the type of clogging agents deposited on the membrane. Although, the overall nature of the clogging is identical, essentially composed of organic matter and mineral elements (calcium, phosphorus, aluminium, etc.). The similitude fo the water permeability and salt rejection at the beginning of two consecutive cycles tends to demonstrate that the chemical regeneration procedure (soda/citric acid) is efficient.
机译:纳伊河畔瓦里水处理厂(90 mgd)中使用的纳滤技术提供了一种有机物含量低的软化水,从其中除去了微污染物和微生物。自1992年以来在现场获得的经验表明,晶体形成抑制剂的使用对于减缓纳滤膜的堵塞至关重要,这基本上是在第三阶段。考虑到阻垢剂作用的复杂性(阈值效应,金属离子隔离能力,颗粒分散能力),理论上很难定义要使用的产品类型及其最佳剂量。除实验室或模型研究外,还需要进行中试实验以评估防垢剂并优化其剂量。纳滤周期长(1-2个月),但是很难比较周期结果,该项目的目的是开发一种螯合剂测试方法。为了对市售产品进行严格的对比研究,以及使用相同产品但在几种不同剂量水平下进行的研究,建立了一个由三个平行的纳滤级组成的中试装置。在先导单元中注入没有螯合剂的第二阶段精矿,每列火车都有自己单独的防垢剂注入点。第一个周期旨在为以下问题提供答案:(i)选择最适合处理瓦兹河中wter的阻垢剂,(ii)识别堵塞剂,(iii)化学再生程序的效率。在完成对三种市售产品的对比测试后,只有一种给出了抑制水渗透性和压降的结果。以制造商建议的剂量水平使用的其他两种预制品可得到相同的结果。分析清洁水可提供有关沉积在膜上的堵塞剂类型的更多信息。虽然,堵塞的总体性质是相同的,但基本上由有机物和矿物质(钙,磷,铝等)组成。两个连续循环开始时透水率和盐分排斥的相似性趋于证明化学再生程序(苏打/柠檬酸)是有效的。

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