促进粉虫体内塑料分解:营养氨基酸和水的作用

IF 5.7 Q2 ENERGY & FUELS
Xinbo Wang, Ruoxin Du, Felipe Nunes Henriquez, Hongming Liu, Sze Yung Chan, Chi Man Leong, Matthew Y. Lui
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引用次数: 0

摘要

某些昆虫,如粉虫(tenbrio molitor),已经显示出在无害环境的条件下有效生物分解塑料废物的能力。然而,在昆虫种群中维持这种生物分解存在挑战,因为高死亡率和相对缓慢的分解速度限制了大规模塑料回收的可行性。为了加强这一过程,通常需要富含蛋白质的营养添加剂。尽管如此,对于像粉虫这样以塑料为食的昆虫选择合适的营养物质,几乎没有指导。在这个系统的研究中,使用代表性的非必需氨基酸(NEAAs)和必需氨基酸(EAAs)的水溶液作为粉虫生物分解聚苯乙烯的添加剂,并进行了比较。研究表明,粉虫体内氨基酸的重要性和丰度显著影响塑料的生物分解速度。高丰度的eaa,如苯丙氨酸(Phe)和缬氨酸(Val),提供了最显著的速率提高,而低丰度的neaa,如半胱氨酸(Cys),没有提高速率。结果还表明,水和单个游离氨基酸溶液都能有效减少粉虫的同类相食行为,同时提高粉虫的营养价值。这些研究结果为选择cofeed以改善这一生物分解过程提供了更合理的依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhancing Plastic Decomposition in Mealworms (Tenebrio molitor): The Role of Nutritional Amino Acids and Water

Enhancing Plastic Decomposition in Mealworms (Tenebrio molitor): The Role of Nutritional Amino Acids and Water

Certain insects, such as mealworms (Tenebrio molitor), have shown the ability to effectively biodecompose plastic waste under environmentally benign conditions. However, sustaining this biodecomposition within insect populations presents challenges, as high mortality rates and relatively slow decomposition rates limit the viability of large-scale plastic recycling. To enhance the process, protein-rich nutritional additives are usually necessary. Despite this, there has been little guidance on selecting suitable nutrients for plastic-eating insects like mealworms. In this systematic investigation, aqueous solutions of representative nonessential amino acids (NEAAs) and essential amino acids (EAAs) are used and compared as additives for the biodecomposition of polystyrene by mealworms. The study demonstrates that the essentiality and abundance of amino acids in mealworms significantly impact the rate of plastic biodecomposition. High-abundance EAAs, such as phenylalanine (Phe) and valine (Val), provide the most notable rate enhancements, while low-abundance NEAAs, such as cysteine (Cys), do not enhance the rate. The results also indicate that both water and individual free amino acid solutions effectively reduce cannibalistic behavior among mealworms, while enhancing their nutritional value. These findings provide a more rational basis for selecting cofeeds to improve this biodecomposition process.

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来源期刊
CiteScore
8.20
自引率
3.40%
发文量
0
期刊介绍: Advanced Energy and Sustainability Research is an open access academic journal that focuses on publishing high-quality peer-reviewed research articles in the areas of energy harvesting, conversion, storage, distribution, applications, ecology, climate change, water and environmental sciences, and related societal impacts. The journal provides readers with free access to influential scientific research that has undergone rigorous peer review, a common feature of all journals in the Advanced series. In addition to original research articles, the journal publishes opinion, editorial and review articles designed to meet the needs of a broad readership interested in energy and sustainability science and related fields. In addition, Advanced Energy and Sustainability Research is indexed in several abstracting and indexing services, including: CAS: Chemical Abstracts Service (ACS) Directory of Open Access Journals (DOAJ) Emerging Sources Citation Index (Clarivate Analytics) INSPEC (IET) Web of Science (Clarivate Analytics).
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