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Characterization of a Novel Polymeric Bioflocculant Produced from Bacterial Utilization of n-Hexadecane and Its Application in Removal of Heavy Metals

机译:正十六烷的细菌生产新型高分子生物絮凝剂的表征及其在重金属去除中的应用

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摘要

A novel polymeric bioflocculant was produced by a bacterium utilizing degradation of n-hexadecane as the energy source. The bioflocculant was produced with a bioflocculating activity of 87.8%. The hydrocarbon degradation was confirmed by gas chromatography-mass spectrometry analysis and was further supported with contact angle measurements for the changes in hydrophobic nature of the culture medium. A specific aerobic degradation pathway followed by the bacterium during the bioflocculant production and hydrocarbon utilization process has been proposed. FT-IR, SEM-EDX, LC/MS, and 1H NMR measurements indicated the presence of carbohydrates and proteins as the major components of the bioflocculant. The bioflocculant was characterized for its carbohydrate monomer constituents and its practical applicability was established for removing the heavy metals (Ni2+, Zn2+, Cd2+, Cu2+, and Pb2+) from aqueous solutions at concentrations of 1–50 mg L-1. The highest activity of the bioflocculant was observed with Ni2+ with 79.29 ± 0.12% bioflocculation efficiency.
机译:细菌利用正十六烷的降解作为能源生产了一种新型的高分子生物絮凝剂。生产的生物絮凝剂的生物絮凝活性为87.8%。通过气相色谱-质谱分析法确认了烃的降解,并通过接触角测量进一步支持了培养基疏水性的变化。已经提出了在生物絮凝剂生产和碳氢化合物利用过程中细菌遵循的特定的需氧降解途径。 FT-IR,SEM-EDX,LC / MS和 1 H NMR测量表明存在碳水化合物和蛋白质,这是生物絮凝剂的主要成分。对该生物絮凝剂的糖类单体成分进行了表征,并确定了其在去除重金属(Ni 2 + ,Zn 2 + ,Cd 2+ < / sup>,Cu 2 + 和Pb 2 + )的水溶液浓度为1–50 mg L -1 。 Ni 2 + 的生物絮凝剂活性最高,生物絮凝效率为79.29±0.12%。

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