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Removal of Lead Contamination through the Formation of Lead-Nanoplates by a Hot Spring Microbial Protein

机译:通过热弹簧微生物蛋白形成通过形成铅纳米层的铅污染

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Lead contamination still remains as serious threat to public health and environment because of its non-biodegradability and toxicity. A clean technique has been developed for removal of lead contamination through the formation of lead-oxide nanoplates using a bacterial protein (Molecular weight ~30 kDa) as biological template. The isolated hot-spring bacterial (the bacterium was named as MDH1) protein when adding to the solution of lead compound (e.g., lead nitrate), nanoplates of lead-oxide are formed as viewed by electron microscope. The as prepared lead-oxide-nanoplates are characterized by Inductively Coupled Plasma analysis, Energy Dispersive X-ray Spectroscopy and X-ray diffraction analyses. The lead-oxide-nanoplates and the filtered supernatant of the reactive solution both were separately used to observe the inhibition of growth of E. coli bacteria on culture plate. Lead-oxide-nanoplates produced clear zone of inhibition on the bacterial growth plate, whereas the filtered supernatant exhibited no such zone on the growth of E. coli bacteria revealing the fact that lead contamination was removed from the filtered supernatant. The prepared lead oxide nanoplates also possess dye degradation activity which is the added advantage of the process. The MDH1 bacterial protein acts as biological template which successfully removes lead contamination from lead-solution. The process is a clean and cost-effective one which can be used not only for removal of lead contamination but also for removal of different dyes from environment due to having dye-degradation attribute of the lead-oxide nanoplates.
机译:由于其非生物降解性和毒性,铅污染仍然对公共卫生和环境严重威胁。已经开发了一种清洁技术,用于通过使用细菌蛋白(分子量〜30kDA)作为生物模板形成铅氧化物纳米层的铅污染。当添加到铅化合物(例如,硝酸铅)的溶液中,将分离的热弹簧细菌(细菌被命名为MDH1)蛋白质,通过电子显微镜观察,形成氧化烯烃的纳米板。作为制备的氧化铅氧化物纳米板的特征在于电感耦合等离子体分析,能量分散X射线光谱和X射线衍射分析。氧化铅纳米层和反应溶液的过滤的上清液分别用于观察抑制 e的生长。在培养板上的大肠杆菌细菌。铅氧化物纳米板在细菌生长板上产生了透明的抑制区,而过滤的上清液在 e的生长上表现出这样的区域。 Coli细菌揭示了从过滤的上清液中除去铅污染的事实。制备的氧化烯纳米板也具有染料降解活性,这是该方法的附加优点。 MDH1细菌蛋白作为生物模板,成功除去铅溶液的铅污染。该方法是一种干净且经济效益的方法,其不仅可以用于除去铅污染,还可以用于除去由于具有铅氧化物纳米层的染料降解属性而从环境中除去不同的染料。

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