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Removal of odors and VOCs in municipal solid waste comprehensive treatment plants using a novel three-stage integrated biofilter:Performance and bioaerosol emissions 被引量:5
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作者 Jianwei Liu Peng Yue +2 位作者 Nana Zang Chen Lu Xinyue Chen 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2021年第3期177-189,共13页
A novel three-stage integrated biofilter(TSIBF)composed of acidophilic bacteria reaction segment(ABRS),fungal reaction segment(FRS)and heterotrophic bacteria reaction segment(HBRS)was constructed for the treatment of ... A novel three-stage integrated biofilter(TSIBF)composed of acidophilic bacteria reaction segment(ABRS),fungal reaction segment(FRS)and heterotrophic bacteria reaction segment(HBRS)was constructed for the treatment of odors and volatile organic compounds(VOCs)from municipal solid waste(MSW)comprehensive treatment plants.The performance,counts of predominant microorganisms,and bioaerosol emissions of a flill-scale TSIBF system were studied.High and stable removal efficiencies of hydrogen sulfide,ammonia and VOCs could be achieved with the TSIBF system,and the emissions of culturable heterotrophic bacteria,fungi and acidophilic sulfur bacteria were relatively low.The removal efficiencies of different odors and VOCs,emissions of culturable microorganisms,and types of predominant microorganisms were different in the ABRS,FRS and HBRS due to the differences in reaction conditions and mass transfer in each segment.The emissions of bioaerosols from the TSIBF depended on the capture of microorganisms and their volatilization from the packing.The rational segmentation,filling of high-density packings and the accumulation of the predominant functional microorganisms in each segment enhanced the capture effect of the bioaerosols,thus reducing the emissions of microorganisms from the bioreactor. 展开更多
关键词 BIOFILTRATION Multi-stage biofilter Volatile organic compounds waste gas treatment Bioaerosol emissions
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玻璃钢行业挥发性有机物废气的环境监测及治理技术研究
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作者 张建琦 丁国伟 刘洪忠 《皮革制作与环保科技》 2024年第15期68-70,共3页
随着全球环境保护意识的增强,各国对工业排放的要求也日益严格,挥发性有机化合物(VOCs)作为主要的空气污染物之一,其治理已成为环境保护的重点。玻璃钢行业在生产过程中会释放大量VOCs,这对环境和公共健康都带来了潜在的危害。对于玻璃... 随着全球环境保护意识的增强,各国对工业排放的要求也日益严格,挥发性有机化合物(VOCs)作为主要的空气污染物之一,其治理已成为环境保护的重点。玻璃钢行业在生产过程中会释放大量VOCs,这对环境和公共健康都带来了潜在的危害。对于玻璃钢行业而言,环境监测是首要任务,有效的监测方法应能够实时、准确地监测VOCs的浓度和种类,调整生产流程,减少污染;而在治理技术方面,玻璃钢行业需通过治理技术减少VOCs的排放。所以,玻璃钢行业挥发性有机物废气的环境监测及治理技术的研究和应用,对于保护环境和公共健康具有重要意义。只有不断加强环境监测、改进生产工艺、采用废气治理技术,我们才有望打赢这场“蓝天保卫战”。 展开更多
关键词 玻璃钢行业 有机废气 环境监测 治理技术
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浅谈医药化工行业有机废气治理技术及技术选择——以广东某制药厂废气处理设施为例 被引量:7
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作者 林壮立 《广东化工》 CAS 2022年第21期139-141,163,共4页
医药化工企业保障国民用药安全,在疫情下发挥着重要的作用,与此同时,其排放的有机废气不仅危害人体健康,还影响大气环境质量。文章在叙述医药化工有机废气来源及危害的同时,重点分析医药化工企业有机废气的治理技术,并以广东某制药厂有... 医药化工企业保障国民用药安全,在疫情下发挥着重要的作用,与此同时,其排放的有机废气不仅危害人体健康,还影响大气环境质量。文章在叙述医药化工有机废气来源及危害的同时,重点分析医药化工企业有机废气的治理技术,并以广东某制药厂有机废气处理工艺为例,指出应结合有机废气来源、特性等,选择合适的治理技术,确保医药化工企业经济效益与环境效益双赢。同时应加快出台新的VOCs监测方法,确保更多VOCs能被准确检出。 展开更多
关键词 医药化工 有机废气 治理技术 技术应用 VOCs监测方法
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液晶面板生产中有机废气处理的自动化监控
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作者 伍华林 陶家顺 郑勇君 《通信与广播电视》 2012年第4期67-73,共7页
液晶面板生产过程中会排放部分含有有机成分的废气,为防止污染环境,在生产过程中要采取必要的工艺对尾气进行处理。自动化监控技术能够节约人力资源成本,同时还能够实时的反映处理效果以及时调整工艺,使处理效果更好。本文主要介绍... 液晶面板生产过程中会排放部分含有有机成分的废气,为防止污染环境,在生产过程中要采取必要的工艺对尾气进行处理。自动化监控技术能够节约人力资源成本,同时还能够实时的反映处理效果以及时调整工艺,使处理效果更好。本文主要介绍液晶面板生产过程中所采用的自动化监控技术,体现自动化监控技术在废气处理中的优越性。 展开更多
关键词 有机废气 废气处理 监控
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Near carbon‑zero cycle from VOCs capture to carbon fixation
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作者 Zefang Yin Chaojie Cui +5 位作者 Xiang Yu Wanghua Zhao Dexi Lin Yu Zhang Kang Li Weizhong Qian 《Carbon Neutrality》 2022年第1期249-256,共8页
A new technical route of organic matter capture and carbon fixation is proposed in response of the increasingly strict emission standards of volatile organic compounds(VOCs)in petrochemical industry and the Chinese na... A new technical route of organic matter capture and carbon fixation is proposed in response of the increasingly strict emission standards of volatile organic compounds(VOCs)in petrochemical industry and the Chinese national strategic development goals of carbon peak and carbon neutralization.A closed loop from raw materials to adsorbents for gas treatment can be achieved by two key technical characteristics:(1)construct a new mesoporous adsorbent with complete desorption and regeneration function by carbon nanotubes(CNTs);(2)convert gaseous organic matter which cannot be recycled in liquid/gas state to CNTs.It realizes the resource integration of"turning waste into treasure"and maximizes the carbon emission reduction effect of waste gas treatment process without consuming extra precious fossil fuel,compared with the traditional technologies of VOCs treatments,including combustion or catalytic oxidation.What’s more,the increase in supply of various green electricity is expected to change the current situation of large investment and heavy cost burden of environmental protection technology,and make a great contribution to the national carbon peak and carbon neutrality policy. 展开更多
关键词 Carbon nanotubes Volatile organic compounds waste gas treatment Carbon emissions Closed loop
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