Suppr超能文献

向无微塑料种子涂层的转变:挑战与解决方案

Transitioning to Microplastic-Free Seed Coatings: Challenges and Solutions.

作者信息

Langlet Rozenn, Valentin Romain, Morard Marie, Raynaud Christine Delgado

机构信息

Laboratoire de Chimie Agro-Industrielle (LCA), Univeristé de Toulouse, INRAE, Toulouse INP, 31030 Toulouse, France.

Bois Valor, OLMIX, 13 rue Jean Mermoz, 81160 Saint-Juéry, France.

出版信息

Polymers (Basel). 2024 Jul 10;16(14):1969. doi: 10.3390/polym16141969.

Abstract

This review addresses the issue of replacing manufactured microplastics in seed coatings used in agriculture. Firstly, it focuses on the policy and regulatory actions taken on microplastics at a global level. There is no consensus within the scientific community on the definition of a microplastic and, more generally, on the classification of plastic debris. Nevertheless, several decision schemes have been proposed in an attempt to define the notion of microplastics. The different criteria relevant to this definition, such as the size, physical state, chemical structure, origin, and persistence of microplastics, are discussed, with a comparison being made between the REACH regulation and the scientific literature. Seed production and processing are also discussed, with the functions of seed coatings being explained in order to gain a better understanding of the properties to be considered in a substitution strategy for currently used microplastics. The main challenges are multiple; substitutes must provide the same performance as microplastics: (i) improving the adherence of the treatment to the seed, (ii) distributing the treatment more evenly over the seed, (iii) reducing the amount of dust-off when handling treated seed, and (iv) improving the seed flowability, which is particularly important during the sowing stage, all while preserving the physiological properties of the seed. Substitute polymers are proposed according to the desired performance and functional properties: two main chemical families of biopolymers were identified in the literature: polysaccharides and proteins. Among them, 13 and 6 polymers, respectively, complied with REACH regulation, demonstrating adhesion, dust reduction performances, and preservation of seed physiological quality in particular. This work aims to guide future studies on microplastic substitution in seed coatings, and to highlight research needs in this area. It is based on an analysis and discussion of the literature, identifying and listing potential substitutes.

摘要

本综述探讨了在农业种子包衣中替代人造微塑料的问题。首先,它关注全球层面针对微塑料采取的政策和监管行动。科学界对于微塑料的定义,以及更广泛地对于塑料碎片的分类,尚未达成共识。然而,已经提出了几种决策方案来试图界定微塑料的概念。讨论了与该定义相关的不同标准,如微塑料的尺寸、物理状态、化学结构、来源和持久性,并将《化学品注册、评估、授权和限制法规》(REACH法规)与科学文献进行了比较。还讨论了种子生产和加工过程,并解释了种子包衣的功能,以便更好地理解在替代当前使用的微塑料的策略中应考虑的特性。主要挑战是多方面的;替代品必须提供与微塑料相同的性能:(i)提高处理剂对种子的附着力,(ii)使处理剂在种子上分布更均匀,(iii)减少处理后种子处理过程中的掉粉量,以及(iv)改善种子的流动性,这在播种阶段尤为重要,同时还要保留种子的生理特性。根据所需性能和功能特性提出了替代聚合物:文献中确定了两类主要的生物聚合物化学家族:多糖和蛋白质。其中,分别有13种和6种聚合物符合REACH法规,尤其表现出附着力、降尘性能以及对种子生理质量的保持。这项工作旨在指导未来关于种子包衣中微塑料替代的研究,并突出该领域的研究需求。它基于对文献的分析和讨论,识别并列出了潜在的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56df/11280678/762e60777feb/polymers-16-01969-g001.jpg

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