恶臭污染治理技术的研究进展

Journal: Ecological Environment and Protection DOI: 10.12238/eep.v8i3.2594

冯派, 张蕾, 刘源, 杨家元

大连海洋大学

Abstract

恶臭污染是引起人们不愉快感觉的挥发性物质作用于人的嗅觉器官而被感知的一种环境污染问题。近年来,恶臭污染已成为我国人民群众反映愈来愈强烈的环境污染问题,随之而来的污染纠纷越来越多。各级环保部门对恶臭污染的治理应当加强,发展更高效的恶臭污染治理技术。本文首先介绍了恶臭污染问题,其次简述恶臭污染物的定义、组成成分及其排放标准,最后针对恶臭污染治理技术做出了综述,主要阐述了各项技术的处理特征、适用范围以及优缺点。

Keywords

恶臭污染;挥发性有机物(VOCs);治理技术

References

[1] Zarra T,Galang M G,Ballesteros Jr F,et al.Environmental odour management by artificial neural network-A review[J]. Environmental International,2019,133:105189.
[2] Brancher M, Griffiths K D,Franco D, et al. A review of odour impact criteria in selected countries around the world [J].Chemosphere, 2016,168:1-40.
[3] Lu J,Mu W,Qin C,et al.Synchronous catalytic elimination of malodorous mercaptans based VOCs: Controlling byproducts and revealing sites-pathway relationship[J]. Applied Catalys is B: Environment and Energy,2024,357:124253.
[4] 陈金胜,奚海萍,胡月霞,等.橡胶硫化废气吸附/脱附-焚烧-脱硫净化工艺[J].工业安全与环保,2017,43(4):56-58.
[5] Li X,Ma J,Ling X.Design and dynamic behaviour investi gation of a novel VOC recovery system based on a deep conde nsation process[J].Cryogenics,2020,107:103060.
[6] 魏昕,王刚,栾金义,等.二级膜分离-冷凝-吸附工艺处理石化罐区废气[J].化工环保,2019,39(3):268-272.
[7] 黄心,刘荣,李红梅,等.VOCs处理技术研究进展[J].广州化工,2021,49(13):31-34.
[8] Yang J,Chen Y F,Cao L M,et al.Development and fieldscale optimization of a honeycomb zeolite rotor concentrator /recuperative oxidizer for the abatement of volatile organic carbons from semiconductor industry[J]. Environmental Scien ce & Technology,2012,46(1):441-446.
[9] Cui W, Li J,Chen L, et al. Nature-inspired CaCO3 loading TiO2 composites for efficient and durable photocatalytic mineralization of gaseous toluene[J]. Science Bulletin, 2020, 65(19):1626-1634.
[10] Abdedayem A,Guiza M,Toledo F J R, et al. Nitrobenzene degradation in aqueous solution using ozone/cobalt supported activated carbon coupling process: A kinetic approach[J]. Separation and Purification Technology, 2017, 184: 308-318.
[11] Kim J, Lee J E, Lee H W, et al. Catalytic ozonation of toluene using Mn-M bimetallic HZSM-5 (M: Fe, Cu, Ru, Ag) catalysts at room temperature[J].Journal of Hazardous Mater ials, 2020, 397: 122577.
[12] 李远啸,郭斌,刘倩,等.生物洗涤法处理含苯废气[J].化工环保,2019,39(6):646-652.
[13] 赵越.生物滤池除臭技术在污水处理中的应用[C]//2011全国给水排水技术信息忘年会暨技术交流会论文集,乌海,2011.
[14] DumontE,Hamon L, Lagadec S, et al. NH3 biofiltration of piggery air[J]. Journal of Environmental Management, 2014, 140:26-32.
[15] 杨凯雄,李琳,刘俊新.挥发性有机污染物及恶臭生物处理技术综述[J].环境工程,2016,34(03):107-111.
[16] 周珍雄,余姮蓉,王智佳,等.低pH环境下生物滴滤池处理制药废水站含硫废气[J].能源环境保护,2021,35(2):46-50.
[17] S E Fantroussi, Spiros N Agathos. Is Bioaugmentation a Feasible Strategy for Pollutant Removal and Site Remediat ion[J]?Current Opinion in Microbiology,2005,(8):268-275.
[18] Li L H, Zhang R Z,Zhang W C, et al. Improvement of the activity and thermostability of l-threonine aldol ase from Pseudomonas putida via tailoring of the active sites lining the binding pocket[J]. Systems Microbiology And Bioma nufacturing,2023,3(3):440-448.
[19] 王家玲.环境微生物学(第二版)[M].北京:高等教育出版社,2004.
[20] 张磊.高校苯系物降解菌强化生物滤池及其处理甲苯性能研究[D].上海:华东理工大学,2021.

Copyright © 2025 冯派, 张蕾, 刘源, 杨家元

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License