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Arsenite removal using a pilot system of ultrasound and ultraviolet followed by microfiltration

机译:使用超声波和紫外线先导系统进行亚滤除砷

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Batch and continuous-flow pilot tests using ultrasound (US), ultraviolet (UV) and a combination of US and UV were conducted to determine the oxidation rates of arsenite [As(III)]. Compared to the single processes of US or UV, the combined US/UV system was more effective for As(III) oxidation with a synergy index of more than 1.5. A high rate constant of As(III) removal was obtained as ferrous [Fe(II)] ions existed. Like the pseudo-Fenton reaction, Fe(II) species can participate in the production of additional ·OH by reacting with H_2O_2 produced by US, before being oxidized to Fe(III). From the results of batch tests, the optimum molar ratio of Fe(II)/As(III) and pH were found to be 83 and 6–9.5, respectively. Similarly, the continuous-flow pilot tests showed that US/UV system could remove As(III) below the regulation [10 μg L~(-1) as total As (As_(tot))] at 91 of molar ratio [Fe(II)/As(III)] and 3-h HRT. The continuous-stirred-tank-reactor (CSTR) modeling showed that the scavenging effect of anionic species (Cl~- and CO_3~(2-)) for ·OH might prevail in the single processes, whereas it is insignificant in the combined process. Without using chemicals, microfiltration (MF) was adopted to treat sludge produced in oxidation step. In terms of an engineering aspect, the operational critical flux (CF) and cycle time were also optimized through the continuous-flow tests of MF system. As an energy-utilizing oxidation technique that does not require a catalyst, the combined energy system employing US/UV followed by MF could be a promising alternative for treating As(III) and Fe(II) simultaneously.
机译:使用超声波(US),紫外线(UV)以及US和UV的组合进行了分批和连续流先导测试,以确定亚砷酸盐[As(III)]的氧化速率。与US或UV的单一工艺相比,US / UV组合系统对As(III)的氧化更有效,协同指数大于1.5。由于存在亚铁[Fe(II)]离子,因此获得了较高的As(III)去除速率常数。类似于拟Fenton反应,Fe(II)物种在被氧化为Fe(III)之前,可以通过与US产生的H_2O_2反应来参与生成额外的·OH。从分批测试的结果来看,Fe(II)/ As(III)和pH的最佳摩尔比分别为83和6-9.5。类似地,连续流先导试验表明,US / UV系统在摩尔比为[Fe(( II)/ As(III)]和3小时HRT。连续搅拌釜反应器(CSTR)模型表明,阴离子物质(Cl〜-和CO_3〜(2-))对·OH的清除作用可能在单个过程中占主导地位,而在组合过程中则无意义。在不使用化学药品的情况下,采用微滤(MF)处理氧化步骤中产生的污泥。在工程方面,还通过MF系统的连续流测试对操作临界通量(CF)和循环时间进行了优化。作为不需要催化剂的一种利用能量的氧化技术,采用US / UV再加上MF的联合能源系统可能是同时处理As(III)和Fe(II)的有前途的替代方法。

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