Nanobiopolymer: Potential Applications in Bioremediation of Cadmium Contaminated Water

Nadia Mahmoud Tawfiq Jebril
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Abstract

Nanobiopolymer nanotechnology, bacterial extracellular polymeric substances (EPS), has been used markedly for various water treatments.EPS has polysaccharides, proteins, and lipids, which have functional groups such as amino, sulfhydryl, carboxylic, and phosphate groups that allow binding to metal ions. The accumulation of the metal ions onto the EPS bacterial cell walls is used widely in the bioremediation of cadmium and other metals. This study objectives were extracting EPSs from the bacterium Bacillus subtilis 168 Cd2 and investigating their cadmium adsorption in bead column reactors after being immobilized with calcium alginate. For comparison with the bacterium's role, B. subtilis 168 Cd2 was used before EPS extraction and immobilized with calcium alginate, as well as a comparison with the use of calcium alginate. Cadmium adsorption from solution onto calcium alginate beads with untreated B. subtilis 168 Cd2 and EPS-free B. subtilis 168 Cd2 and under different pH (4.00, 7.00, and 7.50) were studied. The percentages of adsorption onto untreated B. subtilis 168 Cd2 and EPS-free B. subtilis 168 Cd2 were determined and were 89% and 77%, respectively. The adsorption of these were reduced when the pH increased. Scanning electron microscopy (SEM) confirmed the changes in the morphology of the adsorbents, and X-ray fluorescence (XRF) spectrometry analysis recorded the cumulative concentrations of cadmium in the adsorbents after the cadmium adsorption process. EPS in untreated B. subtilis 168 Cd2 significantly enhanced cadmium adsorption percentages. The fewer carboxyl and phosphate groups in EPS-free B. subtilis 168 Cd2 decreased cadmium adsorption. The results obtained in this study are of fundamental significance for applying nano biopolymers nanotechnology environmental biotechnology and bioremediation.
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纳米生物聚合物在镉污染水生物修复中的潜在应用
纳米生物聚合物,细菌胞外聚合物(EPS),已被广泛应用于各种水处理。EPS具有多糖、蛋白质和脂质,这些脂质具有能与金属离子结合的氨基、巯基、羧基和磷酸基等官能团。金属离子在EPS细菌细胞壁上的积累被广泛应用于镉和其他金属的生物修复。本研究旨在从枯草芽孢杆菌168 Cd2中提取EPSs,并研究海藻酸钙固定化后EPSs在头柱反应器中对镉的吸附。为了比较细菌的作用,在EPS提取和海藻酸钙固定化前使用枯草芽孢杆菌168 Cd2,并与海藻酸钙的使用进行了比较。研究了不同pH值(4.00、7.00、7.50)下未经处理的枯草芽孢杆菌168 Cd2和不含ps的枯草芽孢杆菌168 Cd2在海藻酸钙珠上对溶液中镉的吸附。对未经处理的枯草芽孢杆菌168 Cd2和不含eps的枯草芽孢杆菌168 Cd2的吸附率分别为89%和77%。随着pH的增加,这些物质的吸附量减少。扫描电镜(SEM)证实了吸附剂形态的变化,x射线荧光(XRF)光谱分析记录了镉吸附过程后吸附剂中镉的累积浓度。未经处理的枯草芽孢杆菌168 Cd2的EPS显著提高了镉的吸附率。无eps的枯草芽孢杆菌168 Cd2中羧基和磷酸基的减少降低了对镉的吸附。研究结果对纳米生物聚合物的应用、纳米技术、环境生物技术和生物修复具有重要意义。
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