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Water-Soluble Polymers: Optimization of Arsenate Species Retention by Ultrafiltration

机译:水溶性聚合物:通过超滤优化砷酸盐物种的保留

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摘要

The liquid-phase polymer-based retention (LPR) technique was employed to study the retention of arsenate species by poly(vinylbenzyl trimethylammonium chloride), P(ClVBTA), and poly[2-(acryloyloxy)ethyltrimethylammonium chloride], P(ClAETA). The effect of parameters such as polymer concentration, time exposure, competition of sulfate and phosphate anions, and the use of natural systems as drinking water on the retention of As(V) species was analyzed. The mole ratios of polymer : As(V) of (31 : 1), (20 : 1), (10 : 1), (6 : 1), and (3 : 1) by using the washing method at pH 8 and 6 were assayed. The retention capacity was a function of polymer concentration and pH. The optimum mole ratio of polymer : As(V) was (20 : 1) for all pHs studied and all polymeric structures. The polymer’s activity recovery assays were performed by washing at pH 2 and 3. A 95% As(V) elimination was achieved from polymers. A study of competition in the presence of other anions was performed at the same polymer : As(V) ratio (20 : 1). At pH 8 and at the same concentration of arsenate anions, sulfate, and phosphate anions, no important competition on arsenic retention was observed. Assays for P(ClVBTA) at pH 8 and mole ratio of polymer : As(V) (20 : 1), (40 : 1), and (60 : 1) using drinking water showed that the efficiency was higher under these conditions for the three As(V) retention cases. An unbuffered system with drinking water was tested for washing and enrichment methods by determining the maximum saturation capacity of the P(ClVBTA) polymer.
机译:基于液相聚合物的保留(LPR)技术用于研究聚(乙烯基苄基三甲基氯化铵),P(ClVBTA)和聚[2-(丙烯酰氧基)乙基三甲基氯化铵],P(ClAETA)对砷酸盐的保留。分析了诸如聚合物浓度,时间暴露,硫酸根和磷酸根阴离子的竞争以及使用天然系统作为饮用水等参数对As(V)物种保留的影响。通过在pH 8和10测定了6个。保留能力是聚合物浓度和pH的函数。对于所有研究的pH和所有聚合物结构,聚合物∶As(V)的最佳摩尔比为(20∶1)。通过在pH 2和3下洗涤进行聚合物的活性恢复测定。从聚合物中消除了95%的As(V)。在相同的聚合物:As(V)比(20:1)下,在存在其他阴离子的情况下进行了竞争研究。在pH 8和相同浓度的砷酸根阴离子,硫酸根和磷酸根阴离子下,未观察到砷保留的重要竞争。使用饮用水对pH为8的P(ClVBTA)和聚合物:As(V)(20:1),(40:1)和(60:1)的摩尔比进行测定表明,在这些条件下,对于三个As(V)保留案例。通过确定P(ClVBTA)聚合物的最大饱和容量,测试了无缓冲饮用水系统的洗涤和浓缩方法。

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