塑料降解酶的发现

Pub Date : 2023-07-13 DOI:10.15255/kui.2022.076
M. M. Çakar, Marija Vuković Domanovac, Z. Findrik Blažević
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引用次数: 0

摘要

塑料是一种非常先进的材料,有着广泛的应用,全球每年的产量约为3.5亿至4亿吨。然而,由于在包装、运输、制造和农业等工业中滥用和缺乏对塑料使用的控制,人们对塑料废物和污染表示严重关切。塑料袋的有效分解大约需要1000年。此外,燃烧塑料会将二氧化碳和二恶英释放到大气中,导致全球变暖。地球环境中充斥着垃圾,这些垃圾大多来自不良的回收做法和低循环利用率,导致每年产生数百万吨垃圾。为了解决这个问题,我们迫切需要回收消费后塑料的新技术,以减少塑料废物,改善环境,同时找到利用这些材料的方法。由于目前可用于塑料废物的处理方法不足,人们对利用微生物和酶通过生物催化解聚来生物降解不可降解的合成聚合物的兴趣越来越大,这表明塑料处理和回收可以更有效和可持续。
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Discovery of Plastics-degrading Enzymes
Plastics are highly advanced materials that have a vast array of applications and are produced globally in an approximate amount of 350 to 400 million tons every year. Nevertheless, there are serious concerns about plastic waste and pollution as a result of the misuse and lack of control of their use in industries, including packaging, transportation, manufacturing, and agriculture. Approximately 1,000 years are required for plastic bags to decompose efficiently. Additionally, CO 2 and dioxins are released into the atmosphere by burning plastics, and they contribute to global warming. The Earth’s environment is over- whelmed with waste, mostly from poor recycling practices and low circular usage, resulting in millions of tons of waste generated annually. To combat this, new technologies for recycling post-consumer plastics are desperately needed to decrease plastic waste and improve the environment, while also finding ways to utilise these materials. Due to the inadequate disposal methods currently available for plastic waste, there has been increased interest in the use of microorganisms and enzymes designed for the biodegradation of non-degradable synthetic polymers via biocatalytic depolymerisation indicating that plastics treatment and recycling can be more efficient and sustainable.
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