首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Simultaneous Adsorption of Multi-lanthanides from Aqueous Silica Sand Solution Using Pectin–Activated Carbon Composite
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Simultaneous Adsorption of Multi-lanthanides from Aqueous Silica Sand Solution Using Pectin–Activated Carbon Composite

机译:使用果胶活性炭复合材料同时吸附来自二氧化硅砂溶液的多镧系

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Extraction of pectin (Pec) from banana (Musa paradisiaca L.) peels, the agricultural waste of banana fruit treated in acidic condition, and its fabrication into pectin–activated carbon (Pec–AC) composite by impregnation method were investigated. This Pec–AC composite was applied as an adsorbent to simultaneously remove multi-lanthanides, namely yttrium (Y), lanthanum (La), cerium (Ce), neodymium (Nd), and samarium (Sm), which were released from an acidic silica sand aqueous solution. Various fractions of Pec in Pec–AC composite and the effects of different parameters on the adsorption capacity of the multi-lanthanides were also evaluated. At the optimum condition, the adsorption capacity of the lanthanides was 84.4, 77.7, 67.5, 57.5, and 53.7% for Y, Nd, Sm, Ce, and La, with respect to their content in the silica sand. The Q_(max) value was estimated to be 21.80, 27.78, 18.22, 21.09, and 24.91 mg g~(−1) for La~(3+), Y~(3+), Nd~(3+), Sm~(3+), and Ce~(3+), respectively. Fouriertransform infrared analysis suggests that the lanthanides are bound to the electronegative functional groups on the active sites of the Pec–AC composite. The simultaneous adsorption of the lanthanides on Pec–AC composite is governed by the pseudo-second-order kinetics, and the adsorption process of the lanthanides can be described by Temkin isotherm model. Overall results suggest in this study that the Pec–AC composite is an efficient potential adsorbent to simultaneously absorb multi-lanthanides from leachate of silica sand as the primary step of isolation of lanthanides.
机译:研究了香蕉(Musa Paradisiaca L.)果胶(PEC)的果胶(Musa Paradisiaca L.)果皮,通过浸渍方法研究了酸性条件下处理的香蕉果实的农业废物及其制备浸渍方法。将该PEC-AC复合材料用作吸附剂以同时除去多镧系元素,即钇(Y),镧(La),铈(CE),钕(Nd)和钐(SM),其被从酸性释放二氧化硅砂水溶液。还评估了PEC-AC复合材料中PEC的各种级分,以及不同参数对多镧系元素吸附容量的影响。在最佳条件下,对于硅砂中的含量,镧系元素的吸附容量为84.4,77.7,67.5,57.5和5,57.5和53.7%,相对于硅砂中的含量。 Q_(MAX)值估计为14.80,27.78,18.22,21.09和24.91mg g〜(-1)用于la〜〜(3+),y〜(3+),nd〜(3+),sm 〜(3+)和CE〜(3+)。 FourierTransform红外分析表明镧系镧与PEC-AC复合材料的活性位点上的电负剂官能团结合。镧系元素对PEC-AC复合物的同时吸附由伪二阶动力学来控制,镧系元素的吸附过程可通过Temkin等温线模型描述。总体结果表明,在这项研究中,PEC-AC复合材料是一种有效的潜在吸附剂,可同时吸收来自硅砂的渗滤液的多镧系为作为镧系元素的主要步骤。

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