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基于循环经济策略,利用乙醇和乙氧基乙酸乙酯添加剂将废塑料回收转化为柴油燃料的能量回收

Energy recovery of waste plastics into diesel fuel with ethanol and ethoxy ethyl acetate additives on circular economy strategy.

作者信息

Padmanabhan Sambandam, Giridharan K, Stalin Balasubramaniam, Kumaran Subramanian, Kavimani V, Nagaprasad N, Tesfaye Jule Leta, Krishnaraj Ramaswamy

机构信息

School of Mechanical and Construction, Vel Tech Rangarajan Dr. Sagunthala R&D Institute of Science and Technology, Chennai, Tamil Nadu, 600 062, India.

Department of Mechanical Engineering, Easwari Engineering College, Chennai, Tamil Nadu, 600 089, India.

出版信息

Sci Rep. 2022 Mar 29;12(1):5330. doi: 10.1038/s41598-022-09148-2.

Abstract

The widespread use of plastic goods creates huge disposal issues and environmental concerns. Increasing emphasis has been paid to the notion of a circular economy, which might have a significant impact on the demand for plastic raw materials. Post-consumer plastics recycling is a major focus of the nation's circular economy. This study focuses on energy recovery from waste plastics as an alternative fuel source to meet the circular economy demand. Waste plastic fuel produced through pyrolysis has been claimed to be utilized as a substituted fuel. This work focuses to determine the performance and emission standards of Waste Plastic Fuel (WPF) generated from the pyrolysis of High-Density Polyethylene (HDPE) in a single-cylinder Direct Injection Diesel Engine (DIDE). Three different ratios of WPF were combined with 10% ethanol and 10% ethoxy ethyl acetate as an oxygenated additive to create quaternary fuel blends. The ethanol has a low viscosity, a high oxygen content, a high hydrogen-to-carbon ratio as favourable properties, the quaternary fuel results the improved brake thermal efficiency, fuel consumption and reduced emissions. The blend WEE20 exhibits 4.7% higher brake thermal efficiency, and 7.8% reduced fuel consumption compared to the diesel. The quaternary fuel blends demonstrated decreased carbon monoxide of 3.7 to 13.4% and reduced hydrocarbons of 2 to 16% under different load conditions.

摘要

塑料制品的广泛使用带来了巨大的处置问题和环境问题。人们越来越重视循环经济的理念,这可能会对塑料原材料的需求产生重大影响。消费后塑料回收是国家循环经济的一个主要重点。本研究着重于从废塑料中回收能量,将其作为替代燃料来源,以满足循环经济的需求。通过热解产生的废塑料燃料据称可作为替代燃料使用。这项工作着重于确定在单缸直喷柴油发动机(DIDE)中由高密度聚乙烯(HDPE)热解产生的废塑料燃料(WPF)的性能和排放标准。将三种不同比例的WPF与10%的乙醇和10%的乙氧基乙酸乙酯作为含氧添加剂混合,制成四元燃料混合物。乙醇具有低粘度、高含氧量、高氢碳比等有利特性,四元燃料可提高制动热效率、降低燃油消耗并减少排放。与柴油相比,混合燃料WEE20的制动热效率高4.7%,燃油消耗降低7.8%。在不同负载条件下,四元燃料混合物的一氧化碳排放量降低了3.7%至13.4%,碳氢化合物排放量降低了2%至16%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e39/8964806/6fe99713db44/41598_2022_9148_Fig1_HTML.jpg

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