绿色光合微藻对聚乙烯的生物降解

R. Kumar, G. R. Kanna, S. Elumalai
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引用次数: 82

摘要

传统的聚乙烯降解方法,包括焚烧、填埋和化学处理,对周围的环境是致命的,对生物造成有害影响。目前还没有一种更好的完全降解聚乙烯的方法。然而,为了解决这一全球性问题,未来可能会对聚乙烯降解的生物模式进行评估和开发。本研究从郊区水体中倾倒的生活聚乙烯袋中分离出绿藻、蓝绿藻和硅藻等微藻,研究其对聚乙烯变质的作用。这些废弃聚乙烯袋是从印度泰米尔纳德邦金奈(Maduravoyal, Vanagaram和Poonamallee)的三个不同地点收集的。从聚乙烯片材中分离出微藻定植垫,选择最具优势的3组微藻分别对低密度聚乙烯片材和高密度聚乙烯片材进行生物处理。优势微藻为绿微藻(Scenedesmus dimorphus)、蓝绿藻(Anabaena spiroides)和硅藻(Navicula pula)。聚乙烯片材的横截面图显示,聚乙烯片材的内外两面都有微藻的增生,并且有明显的侵蚀和降解现象。选择的微藻在LD和HD聚乙烯片上分别用不同的培养基进行生物处理,LD上的微藻增殖量大于HD聚乙烯片,而螺旋藻处理的降解率最高(8.18%)。同样,在LD聚乙烯片上处理的三个微藻群中。扫描电镜研究表明,丝状蓝绿藻(Anabaena spiroides)对LD聚乙烯片材的降解作用明显,且比其他微藻生长更可行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biodegradation of Polyethylene by Green Photosynthetic Microalgae
Conventional methods of polyethylene degradation including incineration, landfill and chemical treatment are lethal to the neighboring environment by causing hazardous effects on living organisms. A better solution for the complete degradation of polyethylene has not yet been formulated. However, to solve this global issue biological mode of polyethylene degradation may be evaluated and developed in the upcoming future. In this research investigation, microalgae like green algae, blue-green algae and diatoms were isolated from the domestic polyethylene bags dumped in the suburban water bodies and studied for its potency on deterioration of polyethylene. The dumped waste polyethylene bags were collected from three different sites of (Maduravoyal, Vanagaram and Poonamallee) Chennai, Tamil Nadu, India. Colonized mat of microalgae were isolated from the polyethylene sheets and the most dominant three different groups of microalgae were selected for the biological treatment of LD (low density) and HD (high density) polyethylene sheets. The most dominant microalgae were Scenedesmus dimorphus (Green microalga), Anabaena spiroides (blue-green alga) and Navicula pupula (Diatom). The T. S. (Transverse section) of polyethylene sheet has shown the proliferation of microalgae in both outer and inner sides of the polyethylene sheet and the erosion cum degradation can be seen obviously. The biological treatment of the selected microalgae on the LD and HD polyethylene sheets with their respective culture media resulted that the microalgae proliferated more on the LD than the HD polyethylene sheets followed by the highest percentage of degradation was obtained from Anabaena spiroides treatment (8.18%). Similarly, among the three microalgal groups treated over the LD polyethylene sheets. The scanning electron microscopical study reveals that the degradation was obviously evident in the treatment of LD polyethylene sheets using the microalga Anabaena spiroides (filamentous blue-green alga) and was found to grow feasibly rather than the other microalgae.
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