首页> 外文期刊>Energy Conversion & Management >Extraction and characterization of waste plastic oil (WPO) with the effect of n-butanol addition on the performance and emissions of a DI diesel engine fueled with WPO/diesel blends
【24h】

Extraction and characterization of waste plastic oil (WPO) with the effect of n-butanol addition on the performance and emissions of a DI diesel engine fueled with WPO/diesel blends

机译:添加正丁醇对废塑料油(WPO)的萃取和表征对由WPO /柴油共混燃料的DI柴油机的性能和排放产生影响

获取原文
获取原文并翻译 | 示例
       

摘要

With growing global energy demands, recovering energy from waste plastic presents an attractive avenue to explore as it promotes recycling. Oil synthesized from waste plastic can be excellent fuel for diesel engines but yields higher carcinogenic smoke emissions and poor performance than fossil diesel (D). This study demonstrates the extraction and characterization of waste plastic oil (WPO) obtained by pyrolysis in a laboratory scale batch reactor and later sets out to investigate the effects of adding a renewable oxygenated component in the form of n-butanol (B), a naturally occurring biofuel. Three ternary blends, D50-WP040-B10, D50-WP030-B20 and D50-WCO20-B30 were strategically prepared to utilize both a recycled component (WPO by up to 40%) and a renewable component (n-butanol by up to 30%). The performance and emissions of DI diesel engine when fueled with these blends was then analyzed in comparison with both neat WPO and diesel operation. Results indicated that n-butanol addition presented lower smoke emissions and higher HC emissions when compared to diesel. Addition of 10% n-butanol by vol. to WPO/ULSD blend reduced NO. emissions favorably when compared to both WPO and diesel. However NO. emissions were higher than the corresponding WPO case for higher volume n-butanol blends. Brake thermal efficiency (BTE) of the engine increased with increasing n-butanol fraction in the blends when compared to WPO. Fuel consumption of ternary blends was found to be better than WPO. D50-WP040-B10 blend presented less NO. and smoke emissions with improvement in engine performance when compared to diesel. Study revealed that n-butanol could be a viable additive for diesel engines operating with WPO extracted from mixed waste plastic. (C) 2016 Elsevier Ltd. All rights reserved.
机译:随着全球能源需求的增长,从废塑料中回收能源为促进回收利用提供了一个有吸引力的途径。由废塑料合成的油可以用作柴油发动机的优良燃料,但与化石柴油(D)相比,会产生更高的致癌烟雾排放和较差的性能。这项研究证明了在实验室规模的间歇式反应器中通过热解获得的废塑料油(WPO)的提取和表征,随后着手研究以正丁醇(B)的形式添加可再生的氧化成分的效果。发生生物燃料。战略性地准备了三种三元混合物D50-WP040-B10,D50-WP030-B20和D50-WCO20-B30,以利用回收成分(WPO含量最高40%)和可再生成分(正丁醇含量最高30%) %)。然后,与纯净的WPO和柴油操作相比,分析了掺有这些混合物的DI柴油机的性能和排放。结果表明,与柴油相比,正丁醇的添加降低了烟雾排放,并增加了HC排放。按体积计加入10%正丁醇。到WPO / ULSD混合物中减少了NO。与WPO和柴油相比,排放量都有利。但是没有。对于较高体积的正丁醇混合物,其排放量高于相应的WPO情况。与WPO相比,发动机的制动热效率(BTE)随着共混物中正丁醇分数的增加而增加。发现三元混合物的燃料消耗比WPO好。 D50-WP040-B10共混物的NO较少。与柴油相比,烟尘排放和发动机性能得到改善。研究表明,正丁醇可能是使用从混合废塑料中提取的WPO运转的柴油发动机的可行添加剂。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号