Study on absorption of simulated toluene-containing exhaust gas with emulsion liquid membrane(乳化液膜法处理模拟甲苯废气实验研究)

使用以煤油为油相, Span-85为表面活性剂制取的乳化液吸收甲苯废气,考察了表面活性剂浓度、进口甲苯气体浓度及喷淋液气比对吸收效率的影响,实验在填料塔中进行.结果表明,表面活性剂浓度小于2%时,表面活性剂对吸收效果影响较小,而大于2%时,随着浓度的增大吸收效率有明显的减小;进口甲苯浓度在300~900 mg • m-3的范围内,吸收效率随着甲苯浓度的提高而提高;喷淋液气比在3.0~5.0 L • m-3范围内,吸收效率随着液气比的增大而提高.在选择合适的乳化液及喷淋液气比基础上,处理浓度为300~900 mg • m-3低浓度甲苯废气,吸收效率可达85%以上....

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Main Authors: MEIMin-ya(梅敏雅), ZHANGHao-zhe(张浩哲), JINYi-zhong(金一中)
Format: Article
Language:zho
Published: Zhejiang University Press 2010-09-01
Series:Zhejiang Daxue xuebao. Lixue ban
Subjects:
Online Access:https://doi.org/10.3785/j.issn.1008-9497.2010.05.016
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author MEIMin-ya(梅敏雅)
ZHANGHao-zhe(张浩哲)
JINYi-zhong(金一中)
author_facet MEIMin-ya(梅敏雅)
ZHANGHao-zhe(张浩哲)
JINYi-zhong(金一中)
author_sort MEIMin-ya(梅敏雅)
collection DOAJ
description 使用以煤油为油相, Span-85为表面活性剂制取的乳化液吸收甲苯废气,考察了表面活性剂浓度、进口甲苯气体浓度及喷淋液气比对吸收效率的影响,实验在填料塔中进行.结果表明,表面活性剂浓度小于2%时,表面活性剂对吸收效果影响较小,而大于2%时,随着浓度的增大吸收效率有明显的减小;进口甲苯浓度在300~900 mg • m-3的范围内,吸收效率随着甲苯浓度的提高而提高;喷淋液气比在3.0~5.0 L • m-3范围内,吸收效率随着液气比的增大而提高.在选择合适的乳化液及喷淋液气比基础上,处理浓度为300~900 mg • m-3低浓度甲苯废气,吸收效率可达85%以上.
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spelling doaj.art-2fb9ab27a8a24cc59372d56d497b2f672024-03-29T01:58:28ZzhoZhejiang University PressZhejiang Daxue xuebao. Lixue ban1008-94972010-09-0137555155510.3785/j.issn.1008-9497.2010.05.016Study on absorption of simulated toluene-containing exhaust gas with emulsion liquid membrane(乳化液膜法处理模拟甲苯废气实验研究)MEIMin-ya(梅敏雅)0ZHANGHao-zhe(张浩哲)1JINYi-zhong(金一中)2Institute of Environmental Engineering, Zhejiang University, Hangzhou 310027, China(浙江大学环境工程研究所,浙江 杭州 310027)Institute of Environmental Engineering, Zhejiang University, Hangzhou 310027, China(浙江大学环境工程研究所,浙江 杭州 310027)Institute of Environmental Engineering, Zhejiang University, Hangzhou 310027, China(浙江大学环境工程研究所,浙江 杭州 310027)使用以煤油为油相, Span-85为表面活性剂制取的乳化液吸收甲苯废气,考察了表面活性剂浓度、进口甲苯气体浓度及喷淋液气比对吸收效率的影响,实验在填料塔中进行.结果表明,表面活性剂浓度小于2%时,表面活性剂对吸收效果影响较小,而大于2%时,随着浓度的增大吸收效率有明显的减小;进口甲苯浓度在300~900 mg • m-3的范围内,吸收效率随着甲苯浓度的提高而提高;喷淋液气比在3.0~5.0 L • m-3范围内,吸收效率随着液气比的增大而提高.在选择合适的乳化液及喷淋液气比基础上,处理浓度为300~900 mg • m-3低浓度甲苯废气,吸收效率可达85%以上.https://doi.org/10.3785/j.issn.1008-9497.2010.05.016乳化液膜稳定性甲苯填料塔吸收
spellingShingle MEIMin-ya(梅敏雅)
ZHANGHao-zhe(张浩哲)
JINYi-zhong(金一中)
Study on absorption of simulated toluene-containing exhaust gas with emulsion liquid membrane(乳化液膜法处理模拟甲苯废气实验研究)
Zhejiang Daxue xuebao. Lixue ban
乳化液膜
稳定性
甲苯
填料塔
吸收
title Study on absorption of simulated toluene-containing exhaust gas with emulsion liquid membrane(乳化液膜法处理模拟甲苯废气实验研究)
title_full Study on absorption of simulated toluene-containing exhaust gas with emulsion liquid membrane(乳化液膜法处理模拟甲苯废气实验研究)
title_fullStr Study on absorption of simulated toluene-containing exhaust gas with emulsion liquid membrane(乳化液膜法处理模拟甲苯废气实验研究)
title_full_unstemmed Study on absorption of simulated toluene-containing exhaust gas with emulsion liquid membrane(乳化液膜法处理模拟甲苯废气实验研究)
title_short Study on absorption of simulated toluene-containing exhaust gas with emulsion liquid membrane(乳化液膜法处理模拟甲苯废气实验研究)
title_sort study on absorption of simulated toluene containing exhaust gas with emulsion liquid membrane 乳化液膜法处理模拟甲苯废气实验研究
topic 乳化液膜
稳定性
甲苯
填料塔
吸收
url https://doi.org/10.3785/j.issn.1008-9497.2010.05.016
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