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Response surface methodology directed adsorption of chlorate and chlorite onto MIEX resin and study of chemical properties

机译:响应面方法,将氯酸盐和氯酸盐的吸附在Miex树脂上并进行化学性质研究

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This study investigates the adsorption behaviors of chlorate and chlorite by MIEX resin, and determines the optimal conditions for the removal rate by utilizing response surface methodology. The chemical properties of the solution, such as pH, coexistent anions and ion strength, have great influences on the adsorption of chlorate and chlorite. The adsorption capacities of chlorate and chlorite by MIEX are 525 and 398 mg L-1, respectively. When the pH is close to neutral, the removal rate of chlorate and chlorite on MIEX is the best. Sulfate radicals have a damaging influence on the adsorption of chlorate and chlorite on MIEX, leading to a low adsorption capacity. The initial adsorption kinetics of chlorate and chlorite adsorption on MIEX follows the intra-particle diffusion-controlled adsorption. The Box-Behnken design method is successfully used to establish a quadratic polynomial mode for predicting the removal efficiency of chlorate and chlorite, which is composed of three variables (adsorbent dosage, reaction time and initial concentration). The optimal removal conditions are: dosage 6.67 mL L-1, reaction time 45.26 min, initial concentration 3.08 mg L(-1)for chlorate; and dosage 9.62 mL L-1, reaction time 46.36 min, initial concentration 3.04 mg L(-1)for chlorite. According to the results, the adsorbent dosage has a strong interaction with the chlorate or chlorite concentration and reaction time, which has a significant impact on the optimization of the chlorate and chlorite removal process using MIEX. According to FTIR spectra, the adsorption mechanism for chlorate and chlorite is anion exchange.
机译:本研究研究了Miex树脂的氯酸盐和氯酸盐的吸附行为,并通过利用响应面方法来确定去除率的最佳条件。溶液的化学性质,如pH,共存阴离子和离子强度,对氯酸盐和氯酸盐的吸附有很大的影响。 MIEX的氯酸盐和氯酸盐的吸附能力分别为525和398mg L-1。当pH接近中性时,MIEX上的氯酸盐和氯酸盐的去除率是最好的。硫酸盐基团对MIEX对氯酸盐和氯酸盐的吸附具有损害的影响,导致吸附能力低。 MIEX上的氯酸盐和亚氯酸盐吸附的初始吸附动力学遵循颗粒内扩散控制的吸附。 Box-Behnken设计方法成功地建立了二次多项式模式,用于预测氯酸盐和亚氯酸盐的去除效率,由三个变量(吸附剂剂量,反应时间和初始浓度)组成。最佳去除条件是:剂量6.67mL L-1,反应时间45.26分钟,氯酸盐初始浓度3.08mg L(-1);和剂量9.62mL L-1,反应时间46.36分钟,初始浓度3.04mg L(-1)用于氯酸盐。根据结果​​,吸附剂剂量与氯酸盐或亚氯酸盐浓度和反应时间具有强烈的相互作用,这对使用Miex的氯酸盐和氯酸盐去除过程的优化具有显着影响。根据FTIR光谱,氯酸盐和氯酸盐的吸附机制是阴离子交换。

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    Univ Shanghai Sci & Technol Sch Environm & Architecture Shanghai 200093 Peoples R China;

    Univ Shanghai Sci & Technol Sch Environm & Architecture Shanghai 200093 Peoples R China;

    Univ Shanghai Sci & Technol Sch Environm & Architecture Shanghai 200093 Peoples R China;

    Univ Shanghai Sci & Technol Sch Environm & Architecture Shanghai 200093 Peoples R China;

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