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The Effectiveness Adsorption of Au(III) and Cu(II) Ion by Mangosteen Rind (Garcinia mangostana L.) Using Point of Zero Charge Calculation

机译:使用零电荷计算的山竹皮(Garcinia Mangostana L.)的Au(III)和Cu(II)离子的有效性吸附

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Adsorption of Au(III) and Cu(II) by mangosteen rind adsorbent had been carried out. Mangosteen rind has several functional groups including -OH phenolics, -C=C- aromatics, and ethers. Dried mangosteen rind which was obtained from maceration was used to determine Point of Zero Charge (PZC). The most effective pH adsorption was determined by mixing adsorbent with Au(III) or Cu(II) solutions with various pH. The adsorption capacity was affected by the interaction between adsorbent and adsorbate. The solid adsorbent before and after interaction was characterized by FTIR, XRD, and microphotography. The PZC pH value of adsorbent was 3.7 while the optimum pH for Au(III) and Cu(II) were at pH 2 and pH 5, respectively. The adsorption capacity (qmax) value was 333.33 mg/g by following the Langmuir isotherm equation. The crystalline structure of adsorbent was analyzed using XRD and gave 4 peaks characteristics of gold metal on 20 = 38?, 44?, 64?, and 77? after adsorption which indicated the reduction of Au(III) ions into Au(0).
机译:已经进行了Au(III)和Cu(II)的Au(III)和Cu(II)的吸附。已经进行了山底皮吸附剂。山竹皮有几个官能团,包括-OH酚菌,-C = C-芳烃和醚。从浸渍中获得的干燥的山竹菌状物来确定零电荷(PZC)的点。通过用各种pH与Au(III)或Cu(II)溶液混合吸附剂来确定最有效的pH吸附。吸附能力受吸附剂和吸附剂之间的相互作用的影响。在相互作用之前和之后的固体吸附剂的特征在于FTIR,XRD和显微照片。吸附剂的PZC pH值为3.7,而Au(III)和Cu(II)的最佳pH分别为pH 2和pH 5。通过沿Langmuir等温线方程,吸附容量(Qmax)值为333.33mg / g。使用XRD分析吸附剂的结晶结构,并在20 =38Ω,44℃和77℃下给予金属金属的4个峰值特性。吸附后表明将Au(III)离子还原为Au(0)。

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