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Sunlight-Induced Selective Photocatalytic Degradation of Methylene Blue in Bacterial Culture by Pollutant Soot Derived Nontoxic Graphene Nanosheets

机译:污染物烟尘衍生的无毒石墨烯纳米蛋白酶源阳光诱导的细菌培养中亚甲基蓝的选择性光催化降解

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摘要

Herein, a potential approach is described for assessing the ecological importance of the graphitic nanocarbons isolated from dirty, dangerous black pollutant particulate material. A simple experiment of photodegradation and a toxicological test were done using the natural sunlight as a source of energy and the pollutant petrol soot derived water-soluble graphene nanosheets (wsGNS) as photocatalyst to achieve complete degradation of pollutant organic dye as methylene blue (MB). Compared to the artificial source of visible light (60W tungsten bulb), the sunlight-induced photodegradation using wsGNS show 1.5 times higher rate of photodegradation. The toxicological test confirmed the nontoxic behavior of wsGNS against the two different types of bacterial strains: Gram-negative and Gram-positive cells, Escherichia coli and Staphylococcus aureus, respectively. Moreover, wsGNS are precisely used for the selective photodegradation of MB without harming the bacterial growth from the pool of MB-bacterial strains. Nontoxicity and selectivity along with the improved in photodegradation efficiencies by wsGNS under the influence of sunlight are the most significant and sustainable perspectives of the present finding.
机译:这里,描述了用于评估从脏危险黑色污染物颗粒材料中分离的石墨纳米碳的生态重要性的潜在方法。使用自然阳光作为能量源和污染物汽油烟灰衍生的水溶性石墨烯纳米片(WSGNS)作为光催化剂进行光催化剂,以实现富含甲基蓝(MB)的污染物有机染料的完全降解。与可见光(60W钨泡)的人工源相比,使用WSGNS的阳光诱导的光降解显示出较高的光降解速率率较高的1.5倍。毒理学试验证实了WSGN对两种不同类型的细菌菌株的无毒行为:革兰氏阴性和革兰氏阳性细胞,大肠杆菌和金黄色葡萄球菌。此外,WSGN精确地用于MB的选择性光降解,而不会损害来自MB细菌菌群的细菌生长。在阳光影响下,WSGN的无毒性和选择性随着WSGN的改善,是目前发现的最重要和最可持续的观点。

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