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砷在两种粉状和珠状煤矿排水污泥吸附剂上的吸附。

Arsenic adsorption on two types of powdered and beaded coal mine drainage sludge 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. 2021 Jun;272:129560. doi: 10.1016/j.chemosphere.2021.129560. Epub 2021 Jan 11.

Abstract

The aim of this study was to evaluate the performance of a new adsorbent in terms of beading the sludge generated from coal mine drainage or arsenic removed from water is treated by electro-purification (EP) and chemical-precipitation (CP) methods. Batch experiments were conducted to study the influence of experimental parameters such as pH and temperature, as well as the mechanism of arsenic adsorption with the new adsorbent. The porosity of coal mine drainage sludge (CMDS)-beaded adsorbent made of chitosan and alginate was optimized by adding NaHCO powder to generate CO gas during the preparation process. Two types of adsorbents, beaded EP Najeon CMDS (BCMDS-NJ) and beaded CP Yeongdong CMDS (BCMDS-YD), were prepared by heating. The specific surface areas of the powdered adsorbents CMDS-NJ and CMDS-YD were 104 and 231 m g, respectively. The prepared beaded adsorbents BCMDS-NJ and BCMDS-YD had good porosity and specific surface areas of 16.8 and 21.2 m g, respectively. The X-ray diffraction results showed that the structure was goethite (aragonite) and schwertmannite. The pseudo second-order, intra-particle, and Langmuir models were used to explain the adsorption process. The q values of As(III) with BCDMS-NJ and BCMDS-YD adsorbents are 4.31 and 4.58 mg g, respectively and those of AS(V) are 9.31 and 10.93 mg g, respectively. The adsorption capacity for As(III) increased with increasing pH, whereas that for As(V) decreased. The activation energy was 8 kJ mol or more. The mechanism of adsorption of arsenic using a beaded adsorbent was chemical adsorption followed by diffusion. The results of the present study suggest that new adsorbents can be effectively utilized for arsenic removal from water.

摘要

本研究旨在评估一种新型吸附剂的性能,该吸附剂可用于处理电净化(EP)和化学沉淀(CP)方法处理过的煤矿排水污泥或砷。通过批处理实验研究了实验参数(如 pH 值和温度)以及新型吸附剂对砷吸附的机理的影响。在制备过程中加入 NaHCO 粉末以产生 CO 气体,优化了壳聚糖和海藻酸钠制成的煤矿排水污泥(CMDS)珠状吸附剂的孔隙率。通过加热制备了两种类型的吸附剂,即 EP 珠状 Najeon CMDS(BCMDS-NJ)和 CP 珠状 Yeongdong CMDS(BCMDS-YD)。粉末状吸附剂 CMDS-NJ 和 CMDS-YD 的比表面积分别为 104 和 231 m²/g。制备的珠状吸附剂 BCMDS-NJ 和 BCMDS-YD 具有良好的孔隙率和比表面积,分别为 16.8 和 21.2 m²/g。X 射线衍射结果表明,结构为针铁矿(文石)和水铁矿。吸附过程用伪二阶、内颗粒和 Langmuir 模型来解释。BCMDS-NJ 和 BCMDS-YD 吸附剂对 As(III)的 q 值分别为 4.31 和 4.58 mg/g,对 AS(V)的 q 值分别为 9.31 和 10.93 mg/g。As(III)的吸附容量随 pH 值的增加而增加,而 As(V)的吸附容量则随 pH 值的增加而降低。吸附砷的活化能为 8 kJ/mol 以上。吸附剂吸附砷的机理是化学吸附后扩散。本研究结果表明,新型吸附剂可有效用于水中砷的去除。

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