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首页> 外文期刊>Chemical engineering journal >Silica modified calcium alginate-xanthan gum hybrid bead composites for the removal and recovery of Pb(II) from aqueous solution
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Silica modified calcium alginate-xanthan gum hybrid bead composites for the removal and recovery of Pb(II) from aqueous solution

机译:二氧化硅改性海藻酸钙-黄原胶杂化微珠复合材料,用于从水溶液中去除和回收铅(II)

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摘要

An organic-inorganic bio-hybrid bead composite was fabricated through a sol-gel reaction by trapping and condensing amorphous silica into the network structures of calcium ion cross-linked alginate (CA)-xanthan gum (XG) gel beads. The reinforced silica/CA-XG composite was characterized by Fourier-transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM), thermogravimetric analysis (TGA) and surface area measurement. Pb(II) adsorption by the composites was investigated in a batch mode by changing the relevant parameters which included solid/liquid ratio, contact time, pH, temperature, effect of co-existing metal ions and particle size. The analysis of the equilibrium data at 293 K was more appropriate for the Langmuir isotherm model, with maximum adsorption capacity standing at 18.9 mg Pb g~(-1). It evidenced that Pb(II) adsorption was based on chemical binding process, along with intra-particle diffusion contribution. Experiments carried out at 293 and 313 K enabled the evaluation of the thermodynamic parameters of the adsorption process, namely Δ G° (-5kJmol~(-1)), Δ H° (7.20 kj mol~(-1)) and Δ S° (18.0J mol~(-1) K~(-1)); it was revealed as a spontaneous and endothermic process. 0.5 mol L~(-1) HCl was recommended for composite regeneration and Pb(II) recovery. Fixed bed experiment was attempted for treatment of Pb(II)-bearing battery industrial wastewater with an efficient level of reversible performance through an extended period of time. Overall, the proposed silica/CA-XG composite would be a very promising adsorbent for lead removal and recovery from aqueous solutions, with remarkable advantages in terms of biocompatibility, recyclability, ease of operation and low cost.
机译:通过将无定形二氧化硅捕集并浓缩成钙离子交联藻酸盐(CA)-黄原胶(XG)凝胶珠的网络结构,通过溶胶-凝胶反应制备了有机-无机生物混合珠复合物。通过傅立叶变换红外光谱(FT-IR),扫描电子显微镜(SEM),热重分析(TGA)和表面积测量对增强的二氧化硅/ CA-XG复合材料进行了表征。通过改变相关参数,包括固/液比,接触时间,pH,温度,共存金属离子的影响和粒径,以分批方式研究了复合材料对Pb(II)的吸附。对于Langmuir等温模型,在293 K处的平衡数据分析更为合适,最大吸附容量为18.9 mg Pb g〜(-1)。它证明了Pb(II)的吸附是基于化学结合过程以及颗粒内扩散的作用。在293和313 K下进行的实验能够评估吸附过程的热力学参数,即ΔG°(-5kJmol〜(-1)),ΔH°(7.20 kj mol〜(-1))和ΔS °(18.0J mol〜(-1)K〜(-1));它被揭示为自发的吸热过程。推荐使用0.5 mol L〜(-1)HCl进行复合物再生和Pb(II)的回收。尝试了固定床实验来处理含Pb(II)的电池工业废水,并在很长一段时间内均具有有效水平的可逆性能。总体而言,拟议的二氧化硅/ CA-XG复合材料将是一种非常有前途的吸附剂,用于从水溶液中去除铅和从水中回收铅,在生物相容性,可回收性,易于操作和低成本方面具有显着优势。

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