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(Micro)plastic crisis: Un-ignorable contribution to global greenhouse gas emissions and climate change

机译:(微观)塑料危机:对全球温室气体排放和气候变化的不可知贡献

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The rapid development of plastic industrials has created a variety of plastic products, causing revolutionary progress in chemistry, physics, biology, and medicine. Large-scale production and applications of plastics increase their possibility of entering the environment. Previous environmental impact studies typically focused on the toxicity, behavior and fate; limited attention was paid on greenhouse gas emissions and climate change. With the increase of plastic waste, the threat of plastic pollution to the earth's climate has been gradually taken seriously. Evidence showed that greenhouse gas emissions occur at every stage of the plastic life cycle, including extraction and transportation of plastic raw materials, plastic manufacturing, waste treatment and entering the environment. The oil and gas industries used to make plastics are the main sources of greenhouse gas emissions (from the extraction of raw materials to the manufacture of plastics). Emissions of greenhouse gases during manufacture are mainly controlled by the production facilities themselves, usually depending on the efficiency, configuration and service life of equipment. Additionally, there are some unintended impacts, including transport requirements, pipeline leakage, land use, as well as impeding forests as natural carbons sinks. Recycling of plastic waste energy seems to be a good way to deal with waste plastics, but this process will release a lot of greenhouse gases. With this energy conversion occurring, the incineration of plastic packing waste will become one of the main sources of greenhouse gas emissions. Furthermore, plastics released into the environment also slowly release greenhouse gases, and the presence of (micro)plastics in the ocean will seriously interfere with the carbon fixation capacity of the ocean. In its current form, greenhouse gas emissions from cradle to grave of plastics will reach 1.34 gigatons per year by 2030 and 2.8 gigatons per year by 2050. This will seriously consume the global remaining carbon budgets, thereby threatening the ability of the global community to keep global temperatures rising by below 1.5 degrees C even 2 degrees C by 2100. In order to achieve this goal, the total global greenhouse gas emissions must be kept within the remaining carbon budget of 420-570 gigatons. The accumulative greenhouse gas emissions from cradle to grave of plastics may exceed 56 gigatons by 2050 (approximately accounting for 10%-13% of the total remaining carbon budget). As the plastic industry plans to expand production on a large scale, the problem will worsen further. The World Economic Forum forecasted that by 2030, the production and use of plastics will grow at an annual rate of 3.8%, and this growth rate will fall to 3.5% per year from 2030 to 2050. However, there are significant challenges and uncertainties in this estimation, and challenge and uncertainty factors come from all aspects. Recently, several organizations and researchers have started to discern the relationship between greenhouse gas emissions and plastic industrials, but relevant research on these impacts is still in its infancy. Consequently, the contribution of plastic pollution to greenhouse gas emissions and climate change should be given immediate attention and it needs to further explore the impact of plastic pollution on greenhouse gas emission and climate change.The implementation of measures to solve or alleviate the (micro)plastic crisis was critical necessary and proposed: (1) production control of global plastics; (2) improving the treatment and disposal of plastic waste; and (3) assessment of the impact of global environmental (micro)plastics on climate. (C) 2020 Elsevier Ltd. All rights reserved.
机译:塑料工业的快速发展创造了各种塑料制品,造成了化学,物理,生物学和医学的革命性进展。大规模生产和塑料应用增加了进入环境的可能性。以前的环境影响研究通常集中在毒性,行为和命运上;在温室气体排放和气候变化上支付了有限的关注。随着塑料废物的增加,塑料污染对地球气候的威胁已经逐渐严重。证据表明,温室气体排放在塑料生命周期的每个阶段,包括塑料原料,塑料制造,废物处理和进入环境的提取和运输。用于制造塑料的石油和天然气行业是温室气体排放的主要来源(从原材料的提取到塑料制造)。制造过程中温室气体排放主要由生产设施本身控制,通常根据设备的效率,配置和使用寿命。此外,存在一些意外的影响,包括运输要求,管道泄漏,土地利用,以及天然碳池的阻碍森林。塑料废物能量的回收似乎是处理废塑料的好方法,但这个过程将释放大量的温室气体。通过这种能量转换发生,塑料包装废物的焚烧将成为温室气体排放的主要来源之一。此外,释放到环境中的塑料也慢慢释放温室气体,海洋中的(微)塑料的存在会严重干扰海洋的碳固定能力。在其目前的形式下,摇篮到塑料坟墓的温室气体排放将在2030年和每年达到每年的1.34千兆峡谷到2050年。这将严重消耗全球剩余的碳预算,从而威胁到全球社会保持的能力全球气温升高1.5摄氏度甚至2摄氏度甚至2℃。为了实现这一目标,全球全球温室气体排放必须保持在420-570千兆吨的剩余碳预算范围内。摇篮到塑料坟墓的累积温室气体排放可能超过56个千兆格2050(约占剩余碳预算的10%-13%)。随着塑料行业计划大规模扩大产量,问题将进一步恶化。世界经济论坛预测,到2030年,塑料的生产和使用将每年增长3.8%,此增长率将从2030年至2050年下降至每年3.5%。然而,存在重大挑战和不确定性这种估计和挑战和不确定性因素来自各方面。最近,若干组织和研究人员已经开始辨别温室气体排放和塑料工业之间的关系,但对这些影响的相关研究仍处于起步阶段。因此,应立即注意塑料污染对温室气体排放和气候变化的贡献,需要进一步探索塑料污染对温室气体排放和气候变化的影响。解决或缓解(Micro)的措施的实施塑料危机是批评,提出的:(1)全球塑料的生产控制; (2)改善塑料废物的处理和处置; (3)评估全球环境(微)塑料对气候的影响。 (c)2020 elestvier有限公司保留所有权利。

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