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首页> 外文期刊>Ecotoxicology and Environmental Safety >Superior removal of Co~(2+) , Cu~(2+) and Zn~(2+) contaminants from water utilizing spongy Ni/Fe carbonate-fluorapatite; preparation, application and mechanism
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Superior removal of Co~(2+) , Cu~(2+) and Zn~(2+) contaminants from water utilizing spongy Ni/Fe carbonate-fluorapatite; preparation, application and mechanism

机译:使用海绵状镍/铁碳酸盐-氟磷灰石可有效去除水中的Co〜(2 +),Cu〜(2+)和Zn〜(2+)污染物;准备,应用和机制

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摘要

Spongy Ni/Fe carbonate - fluorapatite was synthesized from natural phosphorite enriched with iron impurities. The morphological, chemical and structural features of the product were estimated using several techniques as XRD, SEM, EDX, and FT-IR. It exhibits spongy structure of nano and micro-pores. The average crystallite size is about 8.27 nm. The suitability of the product for considerable decontamination of Zn2+, Co2+, and Cu2+, ions from water was studied based on several reacting parameters. The equilibrium was attained after 240 min for Zn2+ and Co2+ ions while the adsorption equilibrium of Cu2+ reached after 120 min. The adsorption data for the selected metals was represented well by a pseudo-second-order model which revealed chemisorption uptake. The equilibrium studies were appraised based on traditional models and two advanced models were designed according to the statistical physical theories. The adsorption results highly fitted with Langmuir model followed rather than the other models. This indicated a monolayer adsorption for the metal ions by spongy Ni/Fe carbonate - fluorapatite. The estimated q(max) values are 149.25 mg/g, 106.4 mg/g and 147.5 mg/g for the uptake of Zn2+, Co2+, and Cu2+, respectively. Based on monolayer models of one energy and two energies, the number of receptor adsorption sites, number of adsorbed metal ions per active site, the average number of sites which occupied by ions, mono layer adsorption quantity and the adsorption quantity after total saturation were calculated for the first time for such materials.
机译:海绵状镍/铁碳酸盐-氟磷灰石是由富含铁杂质的天然亚磷灰石合成的。使用XRD,SEM,EDX和FT-IR等多种技术估算了产品的形态,化学和结构特征。它显示出纳米和微孔的海绵状结构。平均微晶尺寸为约8.27nm。基于几个反应参数,研究了该产品对水中的Zn2 +,Co2 +和Cu2 +离子的显着去污的适用性。 Zn2 +和Co2 +离子在240分钟后达到平衡,而120min之后Cu2 +的吸附达到平衡。所选金属的吸附数据通过伪二级模型很好地表示,该模型揭示了化学吸附的吸收。根据传统模型对平衡研究进行了评估,并根据统计物理理论设计了两个高级模型。吸附结果高度符合Langmuir模型,而不是其他模型。这表明海绵状Ni / Fe碳酸盐-氟磷灰石对金属离子的单层吸附。摄入的Zn2 +,Co2 +和Cu2 +的估计q(max)值分别为149.25 mg / g,106.4 mg / g和147.5 mg / g。基于一种能量和两种能量的单层模型,计算出受体吸附位点的数量,每个活性位点吸附的金属离子的数量,离子占据的平均位点的数量,单层吸附量和总饱和后的吸附量。首次使用此类材料。

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