Application of Mn-Fe Layered Double Hydroxide as an Adsorbent for the Removal of Arsenic from Synthetic Acid Mine Drainage

C. Irawan, Ayu Ratma Sari, Aproditha Yulianingtias, Riza Melinda, A. Mirwan
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引用次数: 1

Abstract

The Mn-Fe layered double hydroxide using chloride in the interlayer anion was successfully synthesized using chemical co-precipitation methods. The Mn-Fe LDH was then applied as adsorbent for arsenic removal from synthetic acid mine drainage. The adsorbent characterizations of SEM and XRD analysis showed that the Mn-Fe LDH had many different functional groups and a high specific surface area for the adsorption processes. The morphological structure of Mn-Fe LDH by the SEM-EDS analysis method shows a round shape structure with a particle size of about 1 μm, and the XRF analysis method shows that the Mn and Fe elements dominate more than other components. Batch adsorption experimental conducted using the Mn-Fe LDH with the interlayer anion of chloride as an adsorbent to study the effect of contact time, equilibrium pH, and temperature on the arsenic removal. The Mn-Fe LDH showed high adsorption uptake capacity and selectivity for the arsenic in the synthetic acid mine drainage. The adsorption and ion exchange between interlayer chloride anions in Mn-Fe LDH and As (V) solution was the main adsorption mechanism. Therefore, the Mn-Fe LDH can be used as an adsorbent in water and wastewater treatment. In contrast, this research has the potential to be processed and developed into advanced materials.
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锰铁层状双氢氧化物作为吸附剂去除合成酸性矿山水中砷的研究
采用化学共沉淀法成功地合成了以氯化物为层间阴离子的Mn-Fe层状双氢氧化物。以锰-铁-乳酸脱氢酶为吸附剂,对合成酸性矿井排水中的砷进行了吸附研究。SEM和XRD分析表明,Mn-Fe-LDH在吸附过程中具有许多不同的官能团和高比表面积。通过SEM-EDS分析方法,Mn-Fe LDH的形态结构显示为圆形结构,粒径约为1μm,XRF分析方法显示Mn和Fe元素比其他成分占主导地位。以含层间氯离子的Mn-Fe-LDH为吸附剂,进行了分批吸附实验,研究了接触时间、平衡pH和温度对脱砷效果的影响。Mn-Fe-LDH对合成酸性矿井排水中的砷具有较高的吸附吸收能力和选择性。层间氯离子在Mn-Fe-LDH和As(V)溶液中的吸附和离子交换是主要的吸附机理。因此,Mn-Fe-LDH可以用作水和废水处理中的吸附剂。相比之下,这项研究有可能被加工和开发成先进材料。
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