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采用热催化热解技术的节能型新冠病毒生物医学塑料垃圾处理方法

Energy-saving COVID-19 biomedical plastic waste treatment using the thermal - Catalytic pyrolysis.

作者信息

Choudhary Rajesh, Mukhija Abhishek, Sharma Subhash, Choudhary Rohitash, Chand Ami, Dewangan Ashok K, Gaurav Gajendra Kumar, Klemeš Jiří Jaromír

机构信息

Department of Mechanical Engineering, Sardar Vallabhbhai National Institute of Technology (SVNIT), Surat, Gujarat (India) - 395007.

E-waste Research & Development Centre, Institute of Engineering & Technology, Alwar, Rajasthan (India) - 301030.

出版信息

Energy (Oxf). 2023 Feb 1;264:126096. doi: 10.1016/j.energy.2022.126096. Epub 2022 Nov 14.

Abstract

The rate of Biomedical waste generation increases exponentially during infectious diseases, such as the SARS-CoV-2 virus, which burst in December 2019 and spread worldwide in a very short time, causing over 6 M casualties worldwide till May 2022. As per the WHO guidelines, the facemask has been used by every person to prevent the infection of the SARS-CoV-2 virus and discarded as biomedical waste. In the present work, a 3-ply facemask was chosen to be treated using the solvent, which was extracted from the different types of waste plastics through the thermal-catalytic pyrolysis process using a novel catalyst. The facemask was dispersed in the solvent in a heating process, followed by dissolution and precipitation of the facemask in the solvent and by filtration of the solid facemask residue out of the solvent. The effect of peak temperature, heating rate, and type of solvent is observed experimentally, and it found that the facemask was dissolved completely with a clear supernate in the solvent extracted from the (polypropylene + poly-ethylene) plastic also saved energy, while the solvent from ABS plastic was not capable to dissolute the facemask. The potential of the presented approach on the global level is also examined.

摘要

在诸如2019年12月爆发并在很短时间内蔓延至全球的严重急性呼吸综合征冠状病毒2(SARS-CoV-2)病毒等传染病期间,生物医学废物的产生率呈指数增长,截至2022年5月,已在全球造成超过600万人伤亡。根据世界卫生组织的指导方针,每个人都使用口罩来预防SARS-CoV-2病毒感染,并将其作为生物医学废物丢弃。在本研究中,选用了三层口罩,使用一种新型催化剂通过热催化热解工艺从不同类型的废塑料中提取的溶剂对其进行处理。在加热过程中,口罩分散在溶剂中,随后口罩在溶剂中溶解和沉淀,并将固体口罩残渣从溶剂中过滤出来。通过实验观察了峰值温度、加热速率和溶剂类型的影响,发现口罩在从(聚丙烯+聚乙烯)塑料中提取的溶剂中完全溶解,上清液清澈,还节省了能源,而从丙烯腈-丁二烯-苯乙烯(ABS)塑料中提取的溶剂无法溶解口罩。还研究了该方法在全球范围内的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0355/9661398/73022c8d3cf0/ga1_lrg.jpg

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