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首页> 外文期刊>International Biodeterioration & Biodegradation >Screening for microbial strains degrading glass fiber acrylic composite filters
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Screening for microbial strains degrading glass fiber acrylic composite filters

机译:筛选降解玻璃纤维丙烯酸复合过滤器的微生物菌株

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In this study we have assessed the capacity of five fungal and two bacterial species to biodegrade glass fiber acrylic composite filters which are utilized in air conditioners. The strains used were Trichoderma harzianum (2 strains), Trichoderma koningii, Penicillium spp., Aspergillus niger, Pseudomonas aeruginosa and Pseudomonas fluorescens. Pre-sterilized filters were incubated in solid or liquid media at 30 C for 21 days. Biodegradability was monitored by evaluating microbial colonization, increase in biomass and weight loss of filters coupons. Among the species under investigation, the two strains of T harzianum (MYA198 and BCC5828) showed the best biodegradability performance and were used to analyse total carbon and esterase activity. Our results clearly indicate that cells grown in the presence of shredded filters display a hydrolytic activity and lead to a consistent removal of the organic portion of the tested filters. This study suggests that a solid state fermentation process in suitable bioreactors based on T. harzianum species could be a suitable approach to acrylic composite filter biodegradation.
机译:在这项研究中,我们评估了5种真菌和2种细菌对用于空调的玻璃纤维丙烯酸复合过滤器进行生物降解的能力。所使用的菌株是哈茨木霉(2个菌株),康宁木霉,青霉属,黑曲霉,铜绿假单胞菌和荧光假单胞菌。将预灭菌的滤器在固体或液体培养基中于30°C孵育21天。通过评估微生物定植,生物量增加和滤片重量减轻来监测生物降解性。在所研究的物种中,哈茨木霉的两个菌株(MYA198和BCC5828)表现出最佳的生物降解性能,并用于分析总碳和酯酶活性。我们的结果清楚地表明,在切碎的滤纸存在下生长的细胞表现出水解活性,并导致始终去除被测滤纸的有机部分。这项研究表明,基于哈茨木霉菌种的合适生物反应器中的固态发酵过程可能是丙烯酸复合滤池生物降解的合适方法。

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