首页> 外文期刊>Journal of Environmental Management >Water-soluble polymeric xenobiotics - Polyvinyl alcohol and polyvinylpyrrolidon - And potential solutions to environmental issues: A brief review
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Water-soluble polymeric xenobiotics - Polyvinyl alcohol and polyvinylpyrrolidon - And potential solutions to environmental issues: A brief review

机译:水溶性高分子异质生物-聚乙烯醇和聚乙烯吡咯烷酮-以及对环境问题的潜在解决方案:简要回顾

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This paper describes a potential environmental problem closely linked with the global production of water-soluble polymers such as polyvinyl alcohol (PVA) and polyvinylpyrrolidone (PVP). Both polymers make up the components of a multitude of products commonly utilized by industries and households. Hence, such a widespread use of PVA and PVP in the industrial sector and among consumers (the concentration of PVP in urban wastewater is approximately 7 mg/L) could pose a considerable problem, particularly to the environment. To this end, many publications have recently highlighted the poor biodegradability of PVA, in principle influenced by numerous biotic and abiotic factors. Facts published on the environmental fate of PVP have been scant, basically reporting that it is a biologically resistant polymer. As a result, the commercially produced water-soluble polymers of PVA and PVP are essentially non-biodegradable and possess the capacity to accumulate in virtually all environmental media. Consequently, there is a chance of heightened risk to the very environmental constituents in which PVA and PVP accumulate, depending on the routes of entry and transformation processes underway in such constituents of the ecosystem. This assumption is confirmed by the findings of initial research, which is worrying. Herein, PVA was detected in a soil environment, while a relatively high concentration of PVP was found in river water. A review of the literature was conducted to summarize the current state of knowledge concerning the fate of PVA and PVP in various environments, thereby also discerning potential solutions to tackle such dangers. This paper proposes methods to enhance the biodegradability of materials containing such materials; for PVA this means utilizing a suitable polysaccharide, whereas for PVP this pertains to actuating applications that induce substances to degrade. Accordingly, while it is understandable that this work cannot fully address all the issues associated with polymeric xenobiotics, it can still serve as a guide to discerning an economically viable solution, and provide a foundation for further research.
机译:本文描述了与水溶性聚合物(例如聚乙烯醇(PVA)和聚乙烯吡咯烷酮(PVP))的全球生产紧密相关的潜在环境问题。两种聚合物构成工业和家庭通常使用的多种产品的组成部分。因此,PVA和PVP在工业部门和消费者之间的广泛使用(城市废水中PVP的浓度约为7 mg / L)可能会带来很大的问题,特别是对环境而言。为此,最近许多出版物强调了PVA的可生物降解性差,原则上受多种生物和非生物因素的影响。关于PVP的环境命运的事实很少,基本上报告说它是一种具有生物抗性的聚合物。结果,商业生产的PVA和PVP的水溶性聚合物基本上是不可生物降解的,并且具有在几乎所有环境介质中积累的能力。因此,根据生态系统中此类成分的进入和转化过程的途径,PVA和PVP积累的环境成分可能会面临更大的风险。令人担忧的初步研究结果证实了这一假设。这里,在土壤环境中检测到PVA,而在河水中发现相对较高的PVP浓度。对文献进行了回顾,以总结有关各种环境中PVA和PVP命运的当前知识状态,从而也找到了解决此类危险的潜在解决方案。本文提出了增强包含这种材料的材料的生物降解性的方法。对于PVA,这意味着利用合适的多糖,而对于PVP,这涉及引起物质降解的促动应用。因此,虽然可以理解这项工作不能完全解决与聚合异源生物有关的所有问题,但仍可以作为识别经济上可行的解决方案的指南,并为进一步的研究奠定基础。

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