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首页> 外文期刊>International microbiology: the official journal of the Spanish Society for Microbiology >Prospective bioremediation of toxic heavy metals in water by surfactant exopolysaccharide of Ochrobactrum pseudintermedium using cost-effective substrate
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Prospective bioremediation of toxic heavy metals in water by surfactant exopolysaccharide of Ochrobactrum pseudintermedium using cost-effective substrate

机译:使用经济高效基质的OCHrobactrum Pseudtermedium的表面活性剂外糖在水中潜在生物修复

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Globally, the underlying peril of cumulative toxicity of heavy metals in water bodies contaminated by industrial effluents is a matter of great concern to the environmentalists. Heavy metals like lead, cadmium, and nickel are particularly liable for this. Such toxic water is not only hazardous to human health but also harmful to aquatic animals. Remedial measures are being taken by physico-chemical techniques, but most of them are neither eco-friendly nor cost-effective. Biological means like bioaccumulation of heavy metals by viable bacteria are often tedious. In the present study, biosorption of heavy metals is successfully expedited by surfactant exopolysaccharide (SEPS) of Ochrobactrum pseudintermedium C1 as a simple, safe, and economically sustainable option utilizing an easily available and cost-effective substrate like molasses extract. Its efficacy in bioremediation of toxic heavy metals like cadmium, nickel, and lead have been studied by UV-Vis spectrophotometry and verified by inductively coupled plasma-atomic emission spectroscopy (ICP-AES). FTIR and zeta potential studies have also been carried out to explore this novel biosorption potential. Results are conclusive and promising. Moreover, this particular SEPS alone can remediate all these three toxic heavy metals in water. For futuristic applications, it might be a prospective and cost-effective resource for bioremediation of toxic heavy metals in aqueous environment.
机译:在全球范围内,由工业污水污染的水体中重金属累积毒性的潜在危险是环保主义者的极大关注的问题。铅,镉和镍等重金属对此特别倾向。这种有毒水不仅对人类健康危害,而且对水生动物也有害。物理化学技术正在采取补救措施,但它们中的大多数既不是环保也不是成本效益。像活细菌的重金属生物累积的生物手段往往是乏味的。在本研究中,通过Ochrobactrum伪粒度C1的表面活性剂泛硫二糖(SEP)成功加速了重金属的生物吸附,作为一种简单,安全,经济可持续的选择,利用糖蜜提取物等易用和经济效率的基材。通过UV-Vis分光光度法研究了镉,镍和铅等毒性重金属生物修复的疗效,并通过电感耦合等离子体原子发射光谱(ICP-AES)验证。也进行了FTIR和Zeta潜在的研究,以探索这种新的生物吸附潜力。结果是完全和有前途的。此外,单独的特殊SEPS可以在水中修复所有这三种有毒重金属。对于未来派申请,可能是水环境中有毒重金属生物修复的预期和经济效益。

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