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可生物降解塑料是环境骗局吗?

Are biodegradable plastics an environmental rip off?

机构信息

Instituto do Mar, Universidade Federal de São Paulo (IMAR-UNIFESP), Rua Maria Máximo, 11030-100 Santos, SP, Brazil.

Programa de Pós-Graduação em Química do Instituto de Química, Universidade do Estado do Rio de Janeiro (UERJ), Rua São Francisco Xavier, 524 Pavilhão Haroldo Lisboa da Cunha, 20559-900 RJ, Brazil.

出版信息

J Hazard Mater. 2021 Aug 15;416:125957. doi: 10.1016/j.jhazmat.2021.125957. Epub 2021 Apr 27.

Abstract

While the use of biodegradable polymers is recognized as a global strategy to minimize plastic pollution, the technical standards (TS) used to attest their biodegradability may not be in compliance with most environmental parameters observed aquatic ecosystems. Indeed, through a careful assessment of the TS currently in use, this study evidenced that these guidelines cover only a fraction of the biogeochemical parameters seen in nature and largely disregard those that occur in the deep-sea. Thus, these TS may not be able to ensure the degradation of such polymers in natural environments, where microbial activity, pH, temperature, salinity, UV radiation and pressure are highly variable. This raises environmental concern, since relevant parcel of plastic ends up in the oceans reaching deep zones. Therefore, there is an urgent need to revise these TS, which must consider the actual fate of most plastic debris and include assessments under the challenging conditions found at these types of environment, alongside microplastic formation and ecotoxicology effects. Moreover, the next generation of biodegradability tests must be designed to enable a cost-effective implementation and incorporate accurate analytical techniques to assess polymer transformation. Furthermore, certification should provide information on time scale and degradation rates and, preferably, be globally harmonized.

摘要

虽然使用可生物降解聚合物被认为是减少塑料污染的全球策略,但用于证明其生物降解性的技术标准(TS)可能不符合大多数水生生态系统观察到的环境参数。事实上,通过对当前使用的 TS 进行仔细评估,本研究表明,这些指南仅涵盖了自然界中存在的一部分生物地球化学参数,并且在很大程度上忽略了深海中发生的参数。因此,这些 TS 可能无法确保此类聚合物在自然环境中的降解,而在自然环境中,微生物活性、pH 值、温度、盐度、紫外线辐射和压力高度可变。这引起了环境方面的关注,因为相关部分塑料最终会进入海洋到达深海区域。因此,迫切需要修订这些 TS,这些 TS 必须考虑到大多数塑料碎片的实际命运,并包括在这些类型的环境中具有挑战性的条件下进行评估,以及微塑料形成和生态毒理学效应。此外,下一代生物降解性测试必须设计为能够实现具有成本效益的实施,并结合准确的分析技术来评估聚合物的转化。此外,认证应提供有关时间尺度和降解速率的信息,并且最好在全球范围内实现协调一致。

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