Centro Mexicano para la Producción más Limpia (CMP+L), Instituto Politécnico Nacional (IPN), Av. Acueducto s/n, Col. Barrio la Laguna Ticomán, Del Gustavo A. Madero, C.P. 07340 México, D.F., Mexico.
Department of Biotechnology and Bioengineering, Centro de Investigación y de Estudios Avanzados, Instituto Politécnico Nacional, Ciudad de México, Mexico.
Sci Total Environ. 2019 Dec 20;697:134139. doi: 10.1016/j.scitotenv.2019.134139. Epub 2019 Aug 29.
Concerns about microplastics (MPs) environmental behavior and accumulation are growing at global scale and meanwhile, the attention to employ bioplastics for replacing conventional plastics is increasing. The research priority for a better understanding of the fate and potential impacts of MPs from bioplastics is of utmost importance. However, the investigations on the effects of bioplastics in terms of MPs are still limited and largely unknown. In this discussion, the current knowledge of MPs is timely highlighted to incorporate biodegradable MPs in the ongoing researches. Recent studies have identified that some biodegradable MPs exhibit same effect as conventional type MPs. Furthermore, we performed a simple degradation experiment and found that polyhydroxyalkanoate films formed MPs in water environment alike other biodegradable and conventional plastics sharing common research interests. In an effort to promote investigations, we recommend the knowledge gaps identified on bioplastics MPs: understanding the timeframe of disintegration and degradation of developing bioplastics; ensuring degradability and less persistence; promoting toxicity tests and potential effects on a wide variety of organisms; promoting attempts to assess the impacts on ecosystems; evaluating the interaction of microorganisms and MPs; working towards identifying novel disposal and collection methods from public to ease recycling and degradation processes.
人们对微塑料(MPs)在环境中的行为和积累的担忧正在全球范围内加剧,同时,人们越来越关注使用生物塑料来替代传统塑料。更好地了解生物塑料中 MPs 的命运和潜在影响的研究重点至关重要。然而,关于生物塑料 MPs 影响的研究仍然有限,并且在很大程度上尚未可知。在本次讨论中,及时强调了当前关于 MPs 的知识,以便将可生物降解的 MPs 纳入正在进行的研究中。最近的研究已经表明,一些可生物降解的 MPs 表现出与传统类型 MPs 相同的效果。此外,我们进行了一项简单的降解实验,发现聚羟基烷酸酯薄膜在水环境中形成了 MPs,与其他具有共同研究兴趣的可生物降解和传统塑料一样。为了促进研究,我们建议确定生物塑料 MPs 方面的知识空白:了解开发中的生物塑料的崩解和降解的时间框架;确保可降解性和低持久性;促进对各种生物体的毒性测试和潜在影响;促进评估对生态系统影响的尝试;评估微生物和 MPs 的相互作用;努力寻找从公众到促进回收和降解过程的新型处理和收集方法。