References
- Michalak A., Krzeszowiak J., Pawlas K. (2014). Czy ekspozycja na nieprzyjemne zapachy (odory) szkodzi zdrowiu człowieka? (Does exposure to unpleasant odors harm human health?) Medycyna Środowiskowa, 17(4), 76–81.
- Barbusiński K., Parzentna-Gabor A., Kasperczyk D. (2021). Removal of odors (mainly H2S and NH3) using biological treatment methods, Clean Technologies, 3, 138–155. DOI:10.3390/cleantechnol3010009
- Bąk J., Barbusiński K., Thomas M. (2021). Review of methods for assessing the impact of WWTPs on the natural environment, Clean Technologies, 3, 98–122. DOI:10.3390/cleantechnol3010007
- Air quality in Europe–2020 report; EEA Report, No 09/2020
- Guidelines for Air Quality, WHO, Geneva, 2000.
- Jia H., Gao S., Duan Y., Fu Q., Che X., Xu H., Wang Z., Cheng J. (2021). Investigation of health risk assessment and odor pollution of volatile organic compounds from industrial activities in the Yangtze River Delta region, China, Ecotoxicology and Environmental Safety, 208. DOI: 10.1016/j.ecoenv.2020.111474
- Rybarczyk P., Szulczyński B., Gębicki J., Hupka J. (2019). Treatment of malodorous air in biotrickling filters: A review. Biochemical Engineering Journal, 141, 146–162. DOI:10.1016/j.bej.2018.10.014
- Damian Kasperczyk (2019). Zastosowanie bioreaktorów trójfazowych do degradacji lotnych związków organicznych i substancji odorogennych (Application of trickle-bed bioreactors for the degradation of volatile organic compounds and odorogenic substances) PhD thesis Silesian University of Technology, Poland, Gliwice.
- Rene E.R., Montes M., Veiga M.C., Kennes C. (2012). Novel Bioreactors for Waste Gas Treatment. Environmental Chemistry for a Sustainable World: Volume 2: Remediation of Air and Water Pollution, 121–164. DOI:10.1007/978-94-007-2439-6_3
- Barbusiński K., Kalemba K., Kasperczyk D., Urbaniec K., Kozik V. (2017). Biological methods for odor treatment–A review. Journal of Cleaner Production, 152, 223–241. DOI:10.1016/j.jclepro.2017.03.093
- Wysocka I., Gębicki J., Namieśnik J. (2019). Technologies for deodorization of malodorous gases, Environmental Science and Pollution Research, 26, 9409-9434. DOI:10.1007/s11356-019-04195-1
- Ren B., Zhao Y., Lyczko N., Nzihou A. (2019). Current status and outlook of odor removal technologies in wastewater treatment plant. Waste and Biomass Valorization, 10, 1443–1458. DOI:10.1007/s12649-018-0384-9
- Kasperczyk, D., Urbaniec, K. (2015). Application of a compact trickle-bed bioreactor to the biodegradation of pollutants from the ventilation air in a copper-ore mine. Journal of Cleaner Production, 87, 971–976. DOI: 10.1016/j.jclepro.2014.09.009
- Gospodarek M., Rybarczyk P., Szulczyński B., Gębicki J. (2019). Comparative Evaluation of Selected Biological Methods for the Removal of Hydrophilic and Hydrophobic Odorous VOCs from Air. Processes, 7, 187–209, 10.3390/pr7040187
- Alonso, C., Zhu, X., Suidan, M.T., Kim, B.R., Kim, B.J. (2001). Mathematical model of biofiltration of VOCs: effect of nitrate concentration and backwashing. Journal of Environmental Engineering, 127, 655–664. DOI: 10.1061/(ASCE)0733-9372(2001)127:7(655)
- Smith, F.L., Sorial, G.A., Suidan, M.T., Breen, A.W., Biswas, P., Brenner, R.C. (1996). Development of two biomass control strategies for extended, stable operation of highly efficient biofilters with high toluene loadings. Environmental Science and Technology, 30, 1744–1751. DOI:10.1021/es950743y
- Cox H.H.J, Deshusses M.A. (1998). Biological waste air treatment in biotrickling filters. Current Opinion in Biotechnology, 9(3), 256–262, DOI: 10.1016/S0958-1669(98)80056-6
- Kasperczyk D., Bartelmus G., Gąszczak A. (2012). Removal of styrene from dilute gaseous waste streams using trickle-bed bioreactor: kinetics, mass transfer and modeling of biodegradation process, Journal of Chemical Technology & Biotechnology, 87, 758-763. DOI:10.1002/jctb.3733
- Hekmat D., Vortmeyer D. (1994). Modelling of biodegradation processes in trickle-bed bioreactors, Chemical Engineering Science, 49, 4327–4345. DOI:10.1016/S0009-2509(05)80025-9
- Wu H., Yan H., Quan Y., Zhao Huazhang, Jiang N., Yin C. (2018). Recent progress and perspectives in biotrickling filters for VOCs and odorous gases treatment, Journal of Environmental Management, 222, 409–419. DOI: 10.1016/j.jenvman.2018.06.001
- Zhou Q., Zhang L., Chen J., Xu B., Chu G., Chen J. (2016). Performance and microbial analysis of two different inocula for the removal of chlorobenzene in biotrickling filters. Chemical Engineering Journal, 284, 174–181. DOI:10.1016/j.cej.2015.08.130
- Cheng Z., Li C., Kennes C., Ye J., Chen D., Zhang S., Chen J., Yu J. (2017). Improved biodegradation potential of chlorobenzene by a mixed fungal-bacterial consortium. International Biodeterioration and Biodegradation, 123, 276–285. DOI:10.1016/j.ibiod.2017.07.008
- Lebrero R., Estrada J.M., Munoz R., Quijano G. (2012). Toluene mass transfer characterization in a biotrickling filter, Biochemical Engineering Journal, 60, 44–49. DOI:10.1016/j.bej.2011.09.017.
- Tu Y., Yang C., Cheng Y., Zeng G., Lu L., Wang L. (2015). Effect of saponins on n-hexane removal in biotrickling filters, Bioresource Technology, 175, 231–238. DOI:10.1016/j.biortech.2014.10.039.
- Rybarczyk P., Marycz M., Szulczyński B., Brillowska-Dąbrowska A., Rybarczyk A., Gębicki J. (2021). Removal of cyclohexane and ethanol from air in biotrickling filters inoculated with Candida albicans and Candida subhashii, Archives of environmental Protection, 1, 26-34. DOI:10.24425/aep.2021.136445.
- Wan S., Li G., Zu L., An T. (2011). Purification of waste gas containing high concentration trimethylamine in biotrickling filter inoculated with B350 mixed microorganisms, Bioresource Technology, 102, 6757-6760. DOI:10.1016/j.biortech.2011.03.059
- Alinezhad E., Haghighi M., Rahmani F., Keshizadeh H., Abdi M., Naddafi K. (2019). Technical and economic investigation of chemical scrubber and biofiltration in removal of H2S and NH3 from wastewater treatment plant. Journal of Environmental Management, 241, 32–43. DOI: 10.1016/j.jenvman.2019.04.003
- Liang J., Cheng G., Feng H. (2016). Engineering practices of dezodorization for odor in urban sewage treatment plant in China. Advances in Economics, Business and Management Research, 30, 86–91, DOI: 10.2991/iconfem-16.2016.15
- Lebrero, R., Rodríguez, E., Collantes, M., De Juan, C., Norden, G., Rosenbom, K., Muñoz, R. (2021). Comparative Performance Evaluation of Commercial Packing Materials for Malodorant Abatement in Biofiltration, Applied Sciences, 11, 2966. DOI:10.3390/app11072966
- Hernández J., Lafuente J., Prado Ó.J., Gabriel D. (2013). Startup and longterm performance of biotrickling filters packed with polyurethane foam and poplar wood chips treating a mixture of ethyl-mercaptan, H2S, and NH3, Journal of the Air & Waste Management Association, 63, 462–471, DOI: 10.1080/10962247.2013.763305
- Sun SH., Jia TP., Chen KQ., Peng YZ., Zhang L. (2019). Removal of hydrogen sulfide produced in a municipal WWTP using a biotrickling filter with polypropylene rings as the packing material and microbial community analysis. Huan Jing KeXue, 40(10), 4585–4593, DOI: 10.13227/j.hjkx.201903010
- Chen Y., Xie L., Cai W., Wu J. (2019). Pilot–scale study using biotrickling filter to remove H2S from sewage lift station: Experiment and CFD simulation. Biochemical Engineering Journal, 144, 177–184. DOI: 10.1016/j.bej.2019.02.003
- Huan Ch., Fang J., Tong X., Zeng Y., Liu Y., Jiang X., Ji G., Xu L., Lyu Q., Yan Z. (2020). Simultaneous elimination of H2S and NH3 in a biotrickling filter packed with polyhedral spheres and best efficiency in compost deodorization. Journal of Cleaner Production, 124708, DOI:10.1016/j.jclepro.2020.124708
- Liu J., Kang X., Liu X., Yue P., Sun J., Lu C. (2020). Simultaneous removal of bioaerosols, odors and volatile organic compounds from a wastewater treatment plant by a full-scale integrated reactor. Process Safety and Environmental Protection, 144, 2–14. DOI: 10.1016/j.psep.2020.07.003
- Ying S., Kong X., Cai Z., Man Z., Xin Y., Liu D. (2020). Interactions and microbial variations in a biotrickling filter treating low concentrations of hydrogen sulfide and ammonia. Chemosphere, 255, DOI: 10.1016/j.chemosphere.2020.126931
- Chen Y., Wang X., He S., Zhu S., Shen S. (2016). The performance of a two-layer biotrickling filter filled with new mixed packing materials for the removal of H2S from air, Journal of Environmental Management, 165, 11–16. DOI:10.1016/j.jenvman.2015.09.008
- Tu X., Xu. M., Li J., Li E., Feng R., Zhao G., Huang S., Guo J. (2019). Enhancement of using combined packing materials on the removal of mixed sulfur compounds in a biotrickling filter and analysis of microbial communities, BMC Biotechnology, 19, DOI:10.1186/s12896-019-0540-8
- Vikrant K., Kim K., Szulejko J., Pandey S.K., Singh R.S., Giri B.S., Brown R.J.C., Lee S.-h. (2017). Bio-filters for the Treatment of VOCs and Odors–A review, Asian Journal of Atmospheric Environment, 11, 139–152.DOI: 10.5572/ajae.2017.11.3.139
- Kasperczyk D., Urbaniec K, Barbusiński K., Rene. E.R., Colmenares-Quintero R.F. (2019). Application of a compact trickle-bed bioreactor for the removal of odor and volatile organic compounds emitted from a wastewater treatment plant. Journal of Environmental Management, 236, 413–419, DOI: 10.1016/j.jenvman.2019.01.106
- Kasperczyk D., Urbaniec K, Barbusinski K. (2014). Removal of Pollutants from the Air in a Copper-Ore Mine Using a Compact Trickle-Bed Bioreactor. Chemical Engineering Transaction, 39, 1309–1314, DOI: 10.3303/CET1439219
- Bąk A., Kozik V., Dybal P., Sulowicz S., Kasperczyk D., Kus S., Barbusinski K. (2017). Abatement robustness of volatile organic compounds using compact trickle-bed bioreactor: Biotreatment of styrene, ethanol and dimethyl sulfide mixture in contaminated airstream, International Biodeterioration & Biodegradation, 119, 316–328. DOI:10.1016/j.ibiod.2016.10.039
- Kasperczyk D., Urbaniec K., Barbusiński K., Rene E.R., Colmenares-Quintero R.F. (2021). Development and adaptation of the technology of air biotreatment in trickle-bed bioreactor to the automotive painting industry. Journal of Cleaner Production, 309. DOI:10.1016/j.jclepro.2021.127440
- Kamiński A., Koziczyński P. (2017). Analiza możli-wości zastosowania bioreaktora strużkowego do oczyszczania lotnych związków organicznych powstających na terenie oczyszczalni ścieków PKN Orlen S.A. (Analysis of the possibility of using a trickle-bed bioreactor for purification of volatile organic compounds generated in the PKN Orlen S.A. wastewater treatment plant), Inżynieria Ekologiczna, 18, 176–183. DOI: 10.12912/23920629/75657