Source Jouranl of CSCD
Source Journal of Chinese Scientific and Technical Papers
Included as T2 Level in the High-Quality Science and Technology Journals in the Field of Environmental Science
Core Journal of RCCSE
Included in the CAS Content Collection
Included in the JST China
Indexed in World Journal Clout Index (WJCI) Report
FAN Hongyong, ZHANG Wenxuan, WANG Huawei, SUN Yingjie, ZHANG Jingjing. RESEARCH PROGRESS OF PHYSICOCHEMICAL DEODORIZATION TECHNOLOGIES AND THEIR MECHANISMS IN AEROBIC COMPOSTING OF ORGANIC SOLID WASTE[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(8): 270-276,285. doi: 10.13205/j.hjgc.202308034
Citation: FAN Hongyong, ZHANG Wenxuan, WANG Huawei, SUN Yingjie, ZHANG Jingjing. RESEARCH PROGRESS OF PHYSICOCHEMICAL DEODORIZATION TECHNOLOGIES AND THEIR MECHANISMS IN AEROBIC COMPOSTING OF ORGANIC SOLID WASTE[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(8): 270-276,285. doi: 10.13205/j.hjgc.202308034

RESEARCH PROGRESS OF PHYSICOCHEMICAL DEODORIZATION TECHNOLOGIES AND THEIR MECHANISMS IN AEROBIC COMPOSTING OF ORGANIC SOLID WASTE

doi: 10.13205/j.hjgc.202308034
  • Received Date: 2023-02-02
    Available Online: 2023-11-15
  • Physicochemical deodorization technologies were the important technical components to realize the all-round deodorization of aerobic compost. Based on the deodorization characteristics of in-situ physicochemical technologies and ectopic physicochemical technologies in aerobic compost, the deodorization mechanisms and characteristics of various physical and chemical technologies were emphatically summarized, the key points and hot topics of each physicochemical technology were analyzed, and the research prospect for efficient physical and chemical deodorization technologies was proposed, showing that the research should be enhanced from the aspects of the deodorization mechanism and model, the physicochemical deodorant materials in high performance, the optimization and innovation of odor precise recovery technologies, and the physical and chemical technology collaborative process. This paper could provide theoretical guidance for the optimization, innovation, and deepened application of physicochemical deodorization technologies.
  • [1]
    DUAN Y M,PANDEY A,ZHANG Z Q,et al.Organic solid waste biorefinery:sustainable strategy for emerging circular bioeconomy in China[J].Industrial Crops and Products,2020,153:112568.
    [2]
    PACE S A,YAZDANI R,KENDALLl A,et al.Impact of organic waste composition on life cycle energy production,global warming and water use for treatment by anaerobic digestion followed by composting[J].Resources,Conservation and Recycling,2018,137:126-135.
    [3]
    曾谦,倪哲,陈君,等.有机固废沼渣特性及其资源化探究[J].环境工程,2022,40(12):61-78.
    [4]
    吴伟霞,席北斗,黄彩红,等.有机固废堆肥中产臭及除臭技术的微生物作用机制研究进展[J].环境科学研究,2021,34(10):2486-2497.
    [5]
    LIN C,CHERUIYOT N K,HOANG H G,et al.Benzophenone biodegradation and characterization of malodorous gas emissions during co-composting of food waste with sawdust and mature compost[J].Environment Technology Innovation,2021,21,101351.
    [6]
    LIU T,AWASTHI S K,QIN S Y,et al.Conversion food waste and sawdust into compost employing black soldier fly larvae (diptera:Stratiomyidae) under the optimized condition[J].Chemosphere,2021,272:129931.
    [7]
    王鑫,池皓,张鑫倩,等.炼化企业污水处理厂恶臭治理设施排放特征及污染控制策略[J].环境工程学报,2021,15(7):2333-2343.
    [8]
    KECK M,MAGER K,WEBER K,et al.Odour impact from farms with animal husbandry and biogas facilities[J].Science of the Total Environment,2018,645:1432-1443.
    [9]
    ZOLIO M,ORZI V,CHIODINI M,et al.Evaluation of ammonia and odour emissions from animal slurry and digestate storage in the Povalley(Italy)[J].Waste Management,2020,103:296-304.
    [10]
    FAN F Q,XU R H,WANG D P,et al.Application of activated sludge for odor control in wastewater treatment plants:approaches,advances and outlooks[J].Water Research,2020,181:1-15.
    [11]
    李赟,袁京,李国学,等.辅料添加对厨余垃圾快速堆肥腐熟度和臭气排放的影响[J].中国环境科学 2017,37(3):1031-1039.
    [12]
    闫召伟,杨菲宇,高兴祖,等.含硫添加剂对猪粪堆肥过程甲烷与臭气排放的影响[J].农业环境科学学报,2021,40(11):2448-2455.
    [13]
    王旭杰,张文明,常馨怡,等.堆肥添加剂降低碳氮损失的微生物学机制研究[J].环境科学学报,2021,41(10):4116-4127.
    [14]
    陈伟.基于生物炭选择与氧化改性的蛋鸡粪堆肥有害气体减排技术研究[D].广州:华南农业大学,2016:12-38.
    [15]
    顾沈怡,戴海洋,郭凡婧,等.微生物和化学添加剂对畜禽粪便堆肥过程活性氮气体的减排研究[J].生态与农村环境学报,2022,38(8):1010-1018.
    [16]
    HE X Q,YIN H J,FANG C,et al.Metagenomic and q-PCR analysis reveals the effect of powder bamboo biochar on nitrous oxide and ammonia emissions during aerobic composting[J].Bioresource Technology,2021,323:124567.
    [17]
    GAO X Z,YANG F Y,CHENG J W,et al.Emission of volatile sulphur compounds during swine manure composting:source identification,odour mitigation and assessment[J].Waste Management,2022,153:129-137.
    [18]
    杨丽楠,李昂,袁春燕,等.半透膜覆盖好氧堆肥技术应用现状综述[J].环境科学学报,2020,40(10):3559-3564.
    [19]
    XIONG J P,SU Y,HE X Q,et al.Effects of functional membrane coverings on carbon and nitrogen evolution during aerobic composting:insight into the succession of bacterial and fungal communities[J].Bioresource Technology,2023,369:128463.
    [20]
    李永双,孙波,陈菊红,等.纳米膜覆盖对畜禽粪便好氧堆肥进程及恶臭气体排放的影响[J].环境科学,2021,42(11):5554-5563.
    [21]
    SUN B,LI Y S,SONG M J,et al.Molecular characterization of the composition and transformation of dissolved organic matter during the semi-permeable membrane covered hyperthermophilic composting[J].Journal of Hazardous Materials,2022,425:127496.
    [22]
    FANG C,YUAN X R,LIAO K K,et al.Micro-aerobic conditions based on membrane-covered improves the quality of compost products:insights into fungal community evolution and dissolved organic matter characteristics[J].Bioresource Technology,2022,362:127849.
    [23]
    MA S S,XIONG J P,CUI R X,et al.Effects of intermittent aeration on greenhouse gas emissions and bacterial community succession during large-scale membrane-covered aerobic composting[J].Journal of Cleaner Production,2020,266:121551.
    [24]
    MA S S,XIONG J P,WU X Y,et al.Effects of the functional membrane covering on the gas emissions and bacterial community during aerobic composting[J].Bioresource Technology,2021,340:125660.
    [25]
    GAYATHIRI M,PULINGA M,LEE K T,et al.Activated carbon from biomass waste precursors:factors affecting production and adsorption mechanism[J].Chemosphere,2022,294:133764.
    [26]
    WANG Y C,HAN M F,JIA T P,et al.Emissions,measurement,and control of odor in livestock farms:a review[J].Science of the Total Environment,2021,776:145735.
    [27]
    HAN Z L,XU Y J,WANG H,et al.Synthesis of ammonia molecularly imprinted adsorbents and ammonia adsorption separation during sludge aerobic composting[J].Bioresource Technology,2020,300:122670.
    [28]
    LIU T,WANG H Y,HU Z X,et al.Highly efficient adsorption of thiol compounds by ZSM-5 zeolites:governing mechanisms[J].Microporous and Mesoporous Materials,2021,316:110968.
    [29]
    LI W W,HAN Z L,SUN D Z,et al.Preparation of sludge-based activated carbon for adsorption of dimethyl sulfide and dimethyl disulfide during sludge aerobic composting[J].Chemosphere,2021,279:130924.
    [30]
    CHEN W,LIAO X,WU Y,et al.Effects of different types of biochar on methane and ammonia mitigation during layer manure composting[J].Waste Management,2017,61:506-515.
    [31]
    盛丽丽,唐颖,尹魏能,等.改性活性炭对氨气吸附性能研究[J].林产化学与工业,2010,30(5):35-39.
    [32]
    SUMATHI S,BHATIA S,LEE K,et al.Selection of best impregnated palm shell activated carbon (PSAC) for simultaneous removal of SO2 and NOx[J].Journal of Hazardous material,2010,176,1093-1096.
    [33]
    SULTANA M,ROWNOK M H,SABRIN M,et al.A review on experimental chemically modified activated carbon to enhance dye and heavy metals adsorption[J].Cleaner Engineering and Technology,2022,6:100382.
    [34]
    韩张亮.污泥好氧堆肥过程中氨气和挥发性硫化物的排放特征与氨吸附分离研究[D].北京:北京林业大学,2020:12-35.
    [35]
    HUANG X,LU Q,HAO H T,et al.Evaluation of the treatability of various odor compounds by powdered activated carbon[J].Water Research,2019,156:414-424.
    [36]
    胡国华.生物法处理垃圾恶臭气体工艺研究[D].成都:成都理工大学,2005:10-27.
    [37]
    方辉煌,程金星,罗宇,等.氨电氧化催化剂及其低温直接氨碱性膜燃料电池性能的研究进展[J].化工学报,2022,73(9):3802-3814.
    [38]
    刘炼,陈琴珠,王学生,等.NaClO2/尿素复合吸收剂脱除SO2和NO反应动力学[J].实验室研究与探索,2018,37(6):42-47.
    [39]
    SEN Y,LIU DA D Q,LI Y L,et al.Experimental study on the oxidative dissolution of carbonate-rich shale and silicate-rich shale with H2O2,Na2S2O8 and NaClO:implication to the shale gas recovery with oxidation stimulation[J].Journal of Natural Gas Science and Engineering,2020,76:103207.
    [40]
    WANG X L,WANG X L,MI J R,et al.UV/H2O2/O3 removal efficiency and characterization of algae-derived organic matter and odorous substances[J].Journal of Environmental Chemical Engineering,2023,11(1):109128.
    [41]
    SHAO K L,YE Z X,HUANG H,et al.ClO2 pre-oxidation impacts the formation and nitrogen origins of dichloroacetonitrile and dichloroacetamide during subsequent chloramination[J].Water Research,2020,186:116313.
    [42]
    ZHENG X H,LI Y L,YOU W L,et al.Construction of Fe-doped TiO2-x ultrathin nanosheets with rich oxygen vacancies for highly efficient oxidation of H2S[J].Chemical Engineering Journal,2022,430(2):132917.
    [43]
    焦正,吴明红.催化氧化降解挥发性有机物研究进展[J].上海大学学报(自然科学版),2022,28(1):1-16.
    [44]
    孙俭,郭永成,肖雅婷,等.光催化氧化催化剂载体的研究进展[J].石油化工,2021,50(1):88-93.
    [45]
    田贺,易红宏,唐晓龙,等.甲硫醇恶臭气体的催化剂氧化研究进展[J].现代化工,2020,40(8):35-38.
    [46]
    孙晓娟,李春虎,袁国峰.氟改性聚苯乙烯树脂在柴油光催化氧化脱硫中的应用[J].中国海洋大学学报(自然科学版),2016,46(1):72-79.
    [47]
    LIU Q,KE M,LIU F,et al.High-performance removal of methyl mercaptan by nitrogen-rich coconut shell activated carbon[J].RSC Advances,2017,7(37):22892-22899.
    [48]
    MEDFORD A J,VOJVODIC A,HUMMELSHøJ J S,et al.From the Sabatier principle to a predictive theory of transition-metal heterogeneous catalysis[J].Journal of Catalysis,2015,328:36-42.
    [49]
    ESTEJAB A,BOTTE G G.DFT calculations of ammonia oxidation reactions on bimetallic clusters of platinum and iridium[J].Computational and Theoretical Chemistry,2016,1091:31-40.
    [50]
    WANG Y C,HAN M F,JIA T P,et al.Emissions,measurement,and control of odor in livestock farms:a review[J].Science of the Total Environment,2021,776:145735.
    [51]
    SOSUKE N,MOTOYUKI Y.Removal of hydrogen sulfide from an anaerobic biogas using a bio-scrubber[J].Water Science and Technology,1997,36:349-356.
    [52]
    陈军,张倚马,董世彦,等.植物液洗涤塔除臭系统在污水处理厂的应用[C]//第三届全国恶臭污染测试与控制技术暨恶臭污染物排放标准修订研讨会.2009:225-231.
    [53]
    SHIMIZU K,MAEDA Y,OSAWA K,et al.Deodorizing effect of cacao polyphenols against methyl mercaptan[J].Journal of the Japanese Society for Food Science and Technology-nippon Shokuhin,2001,48:238-245.
    [54]
    YASUDA H,ONOGI A.Effects of ascorbic acid on the deodorizing activity of polyphenols against methanethiol[J].Bioscience,Biotechnology,and Biochemistry,1996,60:1703-1704.
    [55]
    LIU B Y,JI J,ZHANG B G,et al.Catalytic ozonation of VOCs at low temperature:a comprehensive review[J].Journal of Hazardous Material,2022,422:30.
    [56]
    WANG C Y,ZHU L,ZHAO F,et al.The chemistry of gaseous benzene degradation using non-thermal plasma[J].Environmental Science and Pollution Research,2021,28:1565-1573.
    [57]
    HE X J,FENG F D,FU Y Q,et al.Dielectric barrier discharge for hydrogen sulphide waste gas decomposition[J].IOP Conference Series:Earth and Environmental Science,2019,237 (2):022052.
    [58]
    HOLUB M,BRANDENBURG R,GROSCH H,et al.Plasma supported odour removal from waste air in water treatment plants:an industrial case study[J].Aerosol and Air Quality Research,2014,14:697-707.
  • Relative Articles

    [1]FEI Tingting, DING Xiaoting, QUE Xiang, LIN Jin, LIN Jian, WANG Ziwei, LIU Jinfu. SPATIOTEMPORAL HETEROGENEITY ANALYSIS OF ENERGY CARBON EMISSION EFFICIENCY IN CHINA BASED ON SBM-DEA AND STWR MODEL[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(10): 188-200. doi: 10.13205/j.hjgc.202410022
    [2]ZHENG Haitao, LIU Jianguo, LUO Tao, CHENG Xueling, TAO Bangyi, LIU Cheng, HUANG Kan, SONG Xiaoquan, SHAO Shiyong, CAO Nianwen, XIANG Yan, ZHANG Tianshu, CHEN Bing, LIU Nana, JIN Xiang, LONG Wenrui, LIU Jiaxin, LI Qilong, MA Yubin, WU Lin, JIN Jiangbo, XU Manman, XU Ziqiang, WU Xiaoqing, BI Cuicui, LIU Qing, LI Junmin, HAN Chenghui, HAN Yong, QIN Fuqiang, ZHANG Chengxin, TAN Wei, WANG Bingbing, WANG Mian, CHENG Yin, LI Hao, WANG Guang, YUN Long. RESEARCH PROGRESS ON INTEGRATED THREE-DIMENSIONAL DETECTION TECHNOLOGY FOR ATMOSPHERIC POLLUTION IN COASTAL OCEAN BOUNDARY LAYER[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(3): 1-16. doi: 10.13205/j.hjgc.202403001
    [3]CHEN Fang, HU Jun, XU Lizhong, HUANG Weilong, GUO Eryang, RAO Qinghua. SPATIOTEMPORAL AGGREGATION CHANGE PATTERN OF PM2.5 AND O3 CONCENTRATION IN FUJIAN PROVINCE,CHINA[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(7): 171-182. doi: 10.13205/j.hjgc.202407019
    [4]GUO Yajun, WANG Hualan, LI Mingxuan, LI Ruohan. ANALYSIS OF AIR POLLUTION CHARACTERISTICS IN EXPRESSWAY AREAS[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(12): 166-171. doi: 10.13205/j.hjgc.202312020
    [5]ZHANG Qing, ZHAO Liya, GUO Zhiwei, QI Kai. SPATIAL AND TEMPORAL DISTRIBUTION CHARACTERISTICS OF ATMOSPHERIC POLLUTANTS IN WUHAN FROM 2017 TO 2020[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(2): 82-90. doi: 10.13205/j.hjgc.202302012
    [6]ZUO Penglai, GAO Qiang, ZHANG Yun, HAN Jiahui, TONG Yali, LIU Ping, GAO Jiajia. RESEARCH ON VERIFICATION FOR AIR POLLUTANTS ULTRA-LOW EMISSION TECHNOLOGIES OF COAL-FIRED POWER PLANTS[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(12): 224-230. doi: 10.13205/j.hjgc.202212030
    [7]XIAO Kai, REN Xue-chang, CHEN Ren-hua. ANALYSIS OF TRANSMISSION CHARACTERISTICS AND POTENTIAL SOURCES OF AIR POLLUTANTS IN JIAYUGUAN[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(9): 92-101,109. doi: 10.13205/j.hjgc.202109014
    [8]YU Zhen-dong, XU Wei. CURRENT SITUATION AND COUNTERMEASURES OF AIR POLLUTION EMISSION CONTROL OF COKING INDUSTRY IN THE FENWEI PLAIN[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(1): 111-116,186. doi: 10.13205/j.hjgc.202101017
    [9]ZHANG Ya-ru, CHEN Yong-jin, GUO Qing-chun, SUN Hao. ANALYSIS ON TEMPO-SPATIAL VARIATION AND PREDICTION OF AIR POLLUTANTS IN JINAN[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(2): 114-121. doi: 10.13205/j.hjgc.202002016
    [10]ZHAO Bin, LIU Bin. APPLICATION OF STACKING IN GROUND-LEVEL PM2.5 CONCENTRATION ESTIMATING[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(2): 153-159. doi: 10.13205/j.hjgc.202002022
    [17]Ding Wenshan Cai Liangcai Shao Bin Ding Fei, . RESEARCH ON AIRPORT AIR POLLUTION STATUS[J]. ENVIRONMENTAL ENGINEERING , 2015, 33(3): 69-72. doi: 10.13205/j.hjgc.201503014
    [18]Shi Lingling, Li Xiaomin, Liu Jing, Xu Yaxuan, Li Xing. AIR POLLUTION SITUATION OF HENAN PROVINCE AND ITS CONTROLLING MEASURES[J]. ENVIRONMENTAL ENGINEERING , 2015, 33(5): 104-108. doi: 10.13205/j.hjgc.201505022
  • Cited by

    Periodical cited type(1)

    1. 孟德友,蔡河章,王宏. 泉州市2017-2021年大气污染特征及新冠疫情的影响. 环境科学与技术. 2023(08): 66-76 .

    Other cited types(2)

  • Created with Highcharts 5.0.7Amount of accessChart context menuAbstract Views, HTML Views, PDF Downloads StatisticsAbstract ViewsHTML ViewsPDF Downloads2024-052024-062024-072024-082024-092024-102024-112024-122025-012025-022025-032025-04051015202530
    Created with Highcharts 5.0.7Chart context menuAccess Class DistributionFULLTEXT: 9.1 %FULLTEXT: 9.1 %META: 88.3 %META: 88.3 %PDF: 2.7 %PDF: 2.7 %FULLTEXTMETAPDF
    Created with Highcharts 5.0.7Chart context menuAccess Area Distribution其他: 22.3 %其他: 22.3 %上海: 0.9 %上海: 0.9 %东莞: 0.6 %东莞: 0.6 %临汾: 0.3 %临汾: 0.3 %保定: 0.3 %保定: 0.3 %北京: 0.9 %北京: 0.9 %十堰: 0.6 %十堰: 0.6 %南京: 0.3 %南京: 0.3 %合肥: 0.9 %合肥: 0.9 %呼和浩特: 0.3 %呼和浩特: 0.3 %大同: 0.3 %大同: 0.3 %天津: 0.6 %天津: 0.6 %常州: 0.9 %常州: 0.9 %常德: 0.9 %常德: 0.9 %平顶山: 0.3 %平顶山: 0.3 %广州: 0.6 %广州: 0.6 %张家口: 0.9 %张家口: 0.9 %成都: 1.5 %成都: 1.5 %扬州: 0.9 %扬州: 0.9 %昆明: 0.6 %昆明: 0.6 %晋城: 0.6 %晋城: 0.6 %朝阳: 0.3 %朝阳: 0.3 %杭州: 2.8 %杭州: 2.8 %湖州: 1.9 %湖州: 1.9 %漯河: 3.4 %漯河: 3.4 %芒廷维尤: 25.7 %芒廷维尤: 25.7 %芝加哥: 1.9 %芝加哥: 1.9 %苏州: 0.6 %苏州: 0.6 %蚌埠: 1.5 %蚌埠: 1.5 %衡阳: 0.9 %衡阳: 0.9 %衢州: 1.5 %衢州: 1.5 %西宁: 13.0 %西宁: 13.0 %西安: 0.6 %西安: 0.6 %贵阳: 1.2 %贵阳: 1.2 %运城: 1.5 %运城: 1.5 %连云港: 0.3 %连云港: 0.3 %遵义: 0.3 %遵义: 0.3 %邢台: 0.3 %邢台: 0.3 %邯郸: 0.6 %邯郸: 0.6 %郑州: 3.4 %郑州: 3.4 %重庆: 0.3 %重庆: 0.3 %长沙: 0.9 %长沙: 0.9 %阜阳: 0.3 %阜阳: 0.3 %青岛: 0.6 %青岛: 0.6 %其他上海东莞临汾保定北京十堰南京合肥呼和浩特大同天津常州常德平顶山广州张家口成都扬州昆明晋城朝阳杭州湖州漯河芒廷维尤芝加哥苏州蚌埠衡阳衢州西宁西安贵阳运城连云港遵义邢台邯郸郑州重庆长沙阜阳青岛

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (198) PDF downloads(6) Cited by(3)
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return