Experimental Study on Performance of Zero-emission Heat Pump System for Exhaust Gas after Drying Process in Pharmaceutical Industry

This study develops a zero-emission heat pump system consists of heat pipes, water coils, and heat pumps for exhaust gas to mitigate the incomplete treatment, disgusting smell, and unrecoverable heat of exhaust gas after the drying process in the pharmaceutical industry. The quality of gas recycling...

Full description

Saved in:
Bibliographic Details
Main Authors: Yu Yingrui, Wei Juan, Li Weizhao, Zhang Chong, Li Bo, Yang Luwei
Format: Article
Language:zho
Published: Journal of Refrigeration Magazines Agency Co., Ltd. 2023-01-01
Series:Zhileng xuebao
Subjects:
Online Access:http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2023.01.043
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850232943278030848
author Yu Yingrui
Wei Juan
Li Weizhao
Zhang Chong
Li Bo
Yang Luwei
author_facet Yu Yingrui
Wei Juan
Li Weizhao
Zhang Chong
Li Bo
Yang Luwei
author_sort Yu Yingrui
collection DOAJ
description This study develops a zero-emission heat pump system consists of heat pipes, water coils, and heat pumps for exhaust gas to mitigate the incomplete treatment, disgusting smell, and unrecoverable heat of exhaust gas after the drying process in the pharmaceutical industry. The quality of gas recycling and reuse is guaranteed by closed-loop dehumidification, waste gas treatment, and heating, thereby achieving near-zero emissions and recovery of waste heat. The experimental results of the system performance show that when the average temperature of the supply air is 65.1 °C, the relative humidity of the supply air is 21.1%, the air volumetric flow rate is 12 000 m3/h, the coefficient of performance of the heat pump unit is 4.7, and the specific moisture extraction rate of the system is 8.5 kg/(kW?h). The composition of the circulating gas shows that 73.2% of the volatile organic compounds are absorbed, and no non-condensable, flammable, or explosive gases are accumulated in the system during each production period.
format Article
id doaj-art-ea6ccb2be6ae4be5a8342504b478fe60
institution OA Journals
issn 0253-4339
language zho
publishDate 2023-01-01
publisher Journal of Refrigeration Magazines Agency Co., Ltd.
record_format Article
series Zhileng xuebao
spelling doaj-art-ea6ccb2be6ae4be5a8342504b478fe602025-08-20T02:03:01ZzhoJournal of Refrigeration Magazines Agency Co., Ltd.Zhileng xuebao0253-43392023-01-014466504092Experimental Study on Performance of Zero-emission Heat Pump System for Exhaust Gas after Drying Process in Pharmaceutical IndustryYu YingruiWei JuanLi WeizhaoZhang ChongLi BoYang LuweiThis study develops a zero-emission heat pump system consists of heat pipes, water coils, and heat pumps for exhaust gas to mitigate the incomplete treatment, disgusting smell, and unrecoverable heat of exhaust gas after the drying process in the pharmaceutical industry. The quality of gas recycling and reuse is guaranteed by closed-loop dehumidification, waste gas treatment, and heating, thereby achieving near-zero emissions and recovery of waste heat. The experimental results of the system performance show that when the average temperature of the supply air is 65.1 °C, the relative humidity of the supply air is 21.1%, the air volumetric flow rate is 12 000 m3/h, the coefficient of performance of the heat pump unit is 4.7, and the specific moisture extraction rate of the system is 8.5 kg/(kW?h). The composition of the circulating gas shows that 73.2% of the volatile organic compounds are absorbed, and no non-condensable, flammable, or explosive gases are accumulated in the system during each production period.http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2023.01.043heat pumpheat pipedryingwaste gas treatmentclosed circulation
spellingShingle Yu Yingrui
Wei Juan
Li Weizhao
Zhang Chong
Li Bo
Yang Luwei
Experimental Study on Performance of Zero-emission Heat Pump System for Exhaust Gas after Drying Process in Pharmaceutical Industry
Zhileng xuebao
heat pump
heat pipe
drying
waste gas treatment
closed circulation
title Experimental Study on Performance of Zero-emission Heat Pump System for Exhaust Gas after Drying Process in Pharmaceutical Industry
title_full Experimental Study on Performance of Zero-emission Heat Pump System for Exhaust Gas after Drying Process in Pharmaceutical Industry
title_fullStr Experimental Study on Performance of Zero-emission Heat Pump System for Exhaust Gas after Drying Process in Pharmaceutical Industry
title_full_unstemmed Experimental Study on Performance of Zero-emission Heat Pump System for Exhaust Gas after Drying Process in Pharmaceutical Industry
title_short Experimental Study on Performance of Zero-emission Heat Pump System for Exhaust Gas after Drying Process in Pharmaceutical Industry
title_sort experimental study on performance of zero emission heat pump system for exhaust gas after drying process in pharmaceutical industry
topic heat pump
heat pipe
drying
waste gas treatment
closed circulation
url http://www.zhilengxuebao.com/thesisDetails#10.3969/j.issn.0253-4339.2023.01.043
work_keys_str_mv AT yuyingrui experimentalstudyonperformanceofzeroemissionheatpumpsystemforexhaustgasafterdryingprocessinpharmaceuticalindustry
AT weijuan experimentalstudyonperformanceofzeroemissionheatpumpsystemforexhaustgasafterdryingprocessinpharmaceuticalindustry
AT liweizhao experimentalstudyonperformanceofzeroemissionheatpumpsystemforexhaustgasafterdryingprocessinpharmaceuticalindustry
AT zhangchong experimentalstudyonperformanceofzeroemissionheatpumpsystemforexhaustgasafterdryingprocessinpharmaceuticalindustry
AT libo experimentalstudyonperformanceofzeroemissionheatpumpsystemforexhaustgasafterdryingprocessinpharmaceuticalindustry
AT yangluwei experimentalstudyonperformanceofzeroemissionheatpumpsystemforexhaustgasafterdryingprocessinpharmaceuticalindustry