Biodegradation of Expanded and Extruded Polystyrene with Different Diets by Using Zophobas atratus Larvae (Coleoptera: Tenebrionidae)

IF 0.6 Q3 AGRICULTURE, MULTIDISCIPLINARY Pertanika Journal of Tropical Agricultural Science Pub Date : 2023-04-12 DOI:10.47836/pjtas.46.2.06
Jun Hoe Tay, N. Asib, Nor Azwady Abd Aziz, Geok Hun Tan
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Abstract

Polystyrene waste pollutes the environment and poses a significant health risk to humans, animals, and marine ecology. This study aims to evaluate the effectiveness of degradation on expanded (EPS) and extruded (XPS) polystyrene with different diets using superworms (Zophobas atratus larvae) obtained in Malaysia. The growth and development of the larvae after consumption of EPS and XPS and the gut microbial community changes in response to high polystyrene consumption diets were also identified. The oatmeal, wheat bran, and cornmeal were used as supplement diets and showed significantly enhanced EPS and XPS consumption and degradation compared to sole diet treatment. Gel permeation chromatography was carried out using egested frass of Z. atratus larvae to characterize depolymerization of EPS and XPS, indicating a significant reduction in the average molecular weight and average molecular weight. The highest reduction occurred in the presence of oatmeal. Proton nuclear magnetic resonance and Fourier transform infrared spectroscopy analyses indicated functional group changes and chemical modification occurred with depolymerization and partial oxidation of EPS and XPS. The larvae length increased, while the number of instars and duration of larvae became shorter with the addition of supplement diets. Oatmeal is predominantly effective among other supplements in assisting Z. atratus larvae with EPS and XPS degradation. The results of this study support the ubiquity of polystyrene biodegradation in Z. atratus and the next-generation sequencing studies. Kluyvera sp., Klebsiella sp., and Enterobacter sp. were found to be strongly associated with degrading EPS and XPS polystyrene with oatmeal as a supplemental diet.
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不同日粮条件下黄颡鱼幼虫对膨化和挤压聚苯乙烯的生物降解作用(鞘翅目:Tenebrionidae)
聚苯乙烯废物污染环境,对人类、动物和海洋生态构成重大健康风险。本研究旨在使用在马来西亚获得的超级蠕虫(Zophobas atratus幼虫),评估不同日粮对发泡(EPS)和挤塑(XPS)聚苯乙烯的降解效果。还确定了食用EPS和XPS后幼虫的生长发育以及肠道微生物群落在高聚苯乙烯摄入量饮食中的变化。燕麦、麦麸和玉米粉被用作补充日粮,与单独日粮处理相比,其EPS和XPS的消耗和降解显著增强。使用白鲟幼虫的egested frass进行凝胶渗透色谱,以表征EPS和XPS的解聚,表明平均分子量和平均分子量显著降低。燕麦的减少量最高。质子核磁共振和傅立叶变换红外光谱分析表明,随着EPS和XPS的解聚和部分氧化,官能团发生了变化和化学改性。随着日粮添加量的增加,幼虫体长增加,幼虫龄数和持续时间缩短。燕麦在其他补充剂中主要有效地帮助阿特拉图斯幼虫降解EPS和XPS。这项研究的结果支持了聚苯乙烯在阿特拉图斯中的普遍生物降解和下一代测序研究。Kluyvera sp.、Klebsiella sp.和Enterobacter sp.被发现与燕麦作为补充饮食降解EPS和XPS聚苯乙烯密切相关。
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来源期刊
Pertanika Journal of Tropical Agricultural Science
Pertanika Journal of Tropical Agricultural Science Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.10
自引率
16.70%
发文量
64
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