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首页> 外文期刊>Journal of Polymers and the Environment >Insights into the Degradation Behavior of Submicroplastics by Klebsiella pneumoniae
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Insights into the Degradation Behavior of Submicroplastics by Klebsiella pneumoniae

机译:Klebsiella肺炎患有潜亚胶囊塑料的降解行为的见解

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摘要

In the environment, micro and sub-microplastics are involved in multiple processes; however, information regarding the effect of pathogen microorganisms, or aging on the behavior of microplastics, sub-microplastics and nanoplastics still needs examination. This study examined the degradation properties of sub-microplastics with one of the clinically important pathogens, Klebsiella pneumoniae. Various concentrations of sub-microplastics were aged with K. pneumoniae to improve understanding of the degradation process. Research results revealed that K. pneumoniae broke down the sub-microplastics; functional group indices showed that the most influenced functional groups in the surface were carbonyl, carbon-oxygen and vinyl groups; and the oxygen to carbon ratio were increased while the hydroxyl groups and crystallinity were not significantly affected. The breakdown was obtained in the lower particle sizes and with additive samples. Furthermore, biochemical response of K. pneumoniae was investigated and the optical density results indicated that the tested microorganism was activated with the sub-microplastics (2-43%), except the lowest concentration of S1 and S2 at 40 h aging, and their protein response played a more effective role in the activation than carbohydrate. The results also indicated that particle size, and breakdown particles influenced the activation level
机译:在环境中,微型和亚微型塑料涉及多个过程;然而,有关病原体微生物的影响的信息,或老化对微塑料,亚微薄塑料和纳米型载体的行为仍需要检查。该研究检测了亚微薄血型药物的降解特性,其中临床重要病原体,Klebsiella肺炎。各种浓度的亚微薄塑料,用K.肺炎老化,以改善对降解过程的理解。研究结果表明,K.肺炎突破了亚微薄塑料;官能团索引显示,表面中最受影响的官能团是羰基,碳 - 氧和乙烯基;并且氧气与碳比在羟基和结晶度没有显着影响。在较低粒径和添加剂样品中获得击穿。此外,研究了K.Pneumoniae的生化响应,并且光学密度结果表明用亚微粒(2-43%)激活测试的微生物,除了40h老化的最低浓度,及其蛋白质反应在比碳水化合物的激活中发挥了更有效的作用。结果还表明,粒径和击穿颗粒影响了激活水平

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