气候变化与塑料污染:回顾它们之间的联系

Kuok Ho Daniel Tang
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摘要

当今世界面临着气候变化和塑料污染两大环境问题。虽然看似无关,但它们错综复杂地相互影响。本综述旨在通过对这些类型的最新文献的回顾,呈现气候变化与塑料污染之间的复杂联系。该评论解释说,全球变暖可能会通过物理、化学和生物过程加速塑料的降解,导致微塑料的丰度增加。全球变暖加剧了微塑料中化学物质的浸出。较高的温度通过为吸附剂提供更多的动能来克服与吸附剂的吸引力,从而促进吸附在塑料上的化学物质的解吸。高温还可以促进生物膜的形成,改变生物膜的微生物群落结构。与变暖相关的海冰和冰川融化释放出被困在环境中的微塑料。海平面上升和极端天气事件加强了微塑料在陆地、海洋和空气之间的转移,从而改变了它们的分布和运输,而海洋酸化可能影响微塑料的生物污染,并增加一些珊瑚对微塑料影响的脆弱性。然而,由于塑料在整个生命周期中释放温室气体,塑料污染加剧了气候变化。微塑料还会对微藻的生长产生不利影响,从而影响海洋碳循环。空气中的微塑料可以通过散射和吸收辐射来改变地球的能量平衡。本综述提出了一种循环经济方法,以尽量减少浪费,最大限度地重复利用和回收塑料,并促进使用塑料替代品来解决这两个问题。
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Climate Change and Plastic Pollution: A Review of Their Connections
The world faces two major environmental issues concurrently, namely climate change and plastic pollution. Though seemingly unrelated, they intricately influence each other. This review aims to present the intricate connections between climate change and plastic pollution through the review of recent literature in these genres. The review explains that global warming could increase plastic degradation through physical, chemical, and biological processes, leading to an increased abundance of microplastics. Global warming enhances the leaching of chemicals from microplastics. Higher temperatures promote desorption of chemicals sorbed on plastics by providing the adsorbates with more kinetic energy to overcome attractions with the adsorbents. Higher temperatures can also promote biofilm formation and alter the microbial community structures of biofilms. Melting sea ice and glaciers associated with warming temperatures release the microplastics trapped in the environment. Sea-level rise and extreme weather events enhance the transfer of microplastics between land, ocean, and air, thus changing their distribution and transport, while ocean acidification may influence the biofouling of microplastics and increase the vulnerability of some corals to the impacts of microplastics. Plastic pollution, however, exacerbates climate change due to the release of greenhouse gases throughout the lifecycle of plastics. Microplastics also adversely affect the growth of microalgae, hence the ocean carbon cycle. Airborne microplastics can alter the energy balance of the Earth through scattering and absorbing radiation. This review suggests a circular economic approach to minimize waste, maximize the reuse and recycling of plastics, and promote the use of plastic substitutes to address both issues.
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