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采用新型珠状吸附剂在酸性矿山废水中进行固定床柱砷吸附研究。

Arsenic adsorption study in acid mine drainage using fixed bed column by novel beaded adsorbent.

机构信息

School of Civil, Environmental, and Architectural Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.

School of Civil, Environmental, and Architectural Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.

出版信息

Chemosphere. 2022 Mar;291(Pt 3):132894. doi: 10.1016/j.chemosphere.2021.132894. Epub 2021 Nov 22.

Abstract

The downflow fixed-bed column adsorption-desorption of arsenic by the beaded coal mine drainage sludge-Youngdong (BCMDS-YD) adsorbent was experimentally studied. The specific surface area of BCMDS-YD synthesized using inorganic binding was 178 m g, and the pH was 5.32. The XRD analysis revealed that it was composed of calcite and schwertmannite. As a result, an increase in the inflow rate resulted in an earlier column exhaustion. The breakthrough curve indicated that a smaller adsorbent particle size and lower influent pH prolonged the column life span. Thomas logistic model was applied to fit the breakthrough curve by linear and nonlinear regression. Under the condition of an influent flow rate of 2.65 mL min (EBCT 40 min), an influent arsenic average concentration of 0.5-1 mg L, an influent pH of 7.6, an adsorbent mass of 100 g, an adsorbent grain size of 1.40-1.70 mm, and an operating temperature of 25 °C, the equilibrium adsorption capacity reached 4.56 mg g. The mechanism of arsenic adsorption is adsorption and precipitation. As a result of the adsorbent reuse experiment, it was judged that it could be reused with good results in all three cycle experiments. The cost of treating arsenic with the BCMDS-YD adsorbent was 0.145 $ per m. The results of this study show examples of sustainable development concepts in mining drainage, and BCMDS-YD can effectively remove arsenic and other heavy metals from acid mine drainage.

摘要

采用无机粘结剂合成的柱状煤矸石排水污泥-延寿(BCMDS-YD)吸附剂的比表面积为 178 m²/g,pH 值为 5.32。XRD 分析表明,它由方解石和水铁矿组成。因此,进水速率的增加会导致柱提前失效。穿透曲线表明,较小的吸附剂粒径和较低的进水 pH 值会延长柱的使用寿命。Thomas 逻辑斯蒂模型通过线性和非线性回归拟合穿透曲线。在进水流量为 2.65 mL/min(EBCT 为 40 min)、进水砷平均浓度为 0.5-1 mg/L、进水 pH 值为 7.6、吸附剂质量为 100 g、吸附剂粒径为 1.40-1.70 mm 和操作温度为 25°C 的条件下,平衡吸附容量达到 4.56mg/g。砷的吸附机制是吸附和沉淀。通过吸附剂重复使用实验判断,在三次循环实验中均能取得良好的重复使用效果。用 BCMDS-YD 吸附剂处理砷的成本为每立方米 0.145 美元。研究结果表明,BCMDS-YD 可有效去除酸性矿山排水中的砷和其他重金属,为矿山排水的可持续发展提供了实例。

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