Suppr超能文献

生物包装在堆肥中的化学、微生物和生态毒理学效应的综合评价。

Integrated assessment of the chemical, microbiological and ecotoxicological effects of a bio-packaging end-of-life in compost.

机构信息

Department of Agricultural, Food and Environmental Sciences, Polytechnic University of Marche, Via Brecce Bianche, 60131 Ancona, Italy.

Department for Sustainable Food Process, Faculty of Agriculture, Food and Environmental Sciences, Catholic University of Sacred Heart, Via Emilia Parmense 84, 29122 Piacenza, Italy.

出版信息

Sci Total Environ. 2024 Nov 15;951:175403. doi: 10.1016/j.scitotenv.2024.175403. Epub 2024 Aug 10.

Abstract

The present study aimed to i) assess the disintegration of a novel bio-packaging during aerobic composting (2 and 6 % tested concentrations) and evaluate the resulting compost ii) analyse the ecotoxicity of bioplastics residues on earthworms; iii) study the microbial communities during composting and in 'earthworms' gut after their exposure to bioplastic residues; iv) correlate gut microbiota with ecotoxicity analyses; v) evaluate the chemico-physical characterisation of bio-packaging after composting and earthworms' exposure. Both tested concentrations showed disintegration of bio-packaging close to 90 % from the first sampling time, and compost chemical analyses identified its maturity and stability at the end of the process. Ecotoxicological assessments were then conducted on Eisenia fetida regarding fertility, growth, genotoxic damage, and impacts on the gut microbiome. The bioplastic residues did not influence the earthworms' fertility, but DNA damages were measured at the highest bioplastic dose tested. Furthermore bioplastic residues did not significantly affect the bacterial community during composting, but compost treated with 2 % bio-packaging exhibited greater variability in the fungal communities, including Mortierella, Mucor, and Alternaria genera, which can use bioplastics as a carbon source. Moreover, bioplastic residues influenced gut bacterial communities, with Paenibacillus, Bacillus, Rhizobium, Legionella, and Saccharimonadales genera being particularly abundant at 2 % bioplastic concentration. Higher concentrations affected microbial composition by favouring different genera such as Pseudomonas, Ureibacillus, and Streptococcus. For fungal communities, Pestalotiopsis sp. was found predominantly in earthworms exposed to 2 % bioplastic residues and is potentially linked to its role as a microplastics degrader. After composting, Attenuated Total Reflection analysis on bioplastic residues displayed evidence of ageing with the formation of hydroxyl groups and amidic groups after earthworm exposure.

摘要

本研究旨在

i)评估新型生物包装在有氧堆肥过程中的崩解情况(测试浓度为 2%和 6%)并评估所得堆肥;ii)分析生物塑料残留物对蚯蚓的生态毒性;iii)研究堆肥过程中的微生物群落以及暴露于生物塑料残留物后蚯蚓肠道中的微生物群落;iv)将肠道微生物群与生态毒性分析相关联;v)评估生物包装在堆肥和蚯蚓暴露后的化学物理特性。在第一个采样时间,两种测试浓度的生物包装都接近 90%的崩解,堆肥的化学分析在过程结束时确定了其成熟度和稳定性。然后对赤子爱胜蚓进行了生态毒理学评估,涉及生育力、生长、遗传毒性损伤以及对肠道微生物组的影响。生物塑料残留物没有影响蚯蚓的生育力,但在测试的最高生物塑料剂量下测量到 DNA 损伤。此外,生物塑料残留物在堆肥过程中对细菌群落没有显著影响,但用 2%生物包装处理的堆肥中真菌群落的变异性更大,包括被孢霉属、毛霉属和链格孢属,它们可以将生物塑料作为碳源。此外,生物塑料残留物影响肠道细菌群落,其中特别是在 2%生物塑料浓度下,丰度较高的有芽孢杆菌属、芽孢杆菌属、根瘤菌属、军团菌属和 saccharimonadales 属。较高的浓度通过有利于不同的属,如假单胞菌属、尿微杆菌属和链球菌属,来影响微生物组成。对于真菌群落,发现多形拟盘多毛孢属在暴露于 2%生物塑料残留物的蚯蚓中占优势,并且可能与其作为微塑料降解菌的作用有关。堆肥后,对生物塑料残留物进行衰减全反射分析显示,在蚯蚓暴露后形成了羟基和酰胺基团,表明其发生了老化。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验