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Seasonal Distribution of Bioaerosols in the Coastal Region of Qingdao 被引量:4
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作者 QI Jianhua SHAO Qian +2 位作者 XU Wenbing GAO Dongmei JIN Chuan 《Journal of Ocean University of China》 SCIE CAS 2014年第1期57-65,共9页
Bioaerosols were collected by using a six-stage bioaerosols sampler from September 2007 to August 2008 in the coastal region of Qingdao, China. The terrestrial and marine microbes(including bacteria and fungi) were an... Bioaerosols were collected by using a six-stage bioaerosols sampler from September 2007 to August 2008 in the coastal region of Qingdao, China. The terrestrial and marine microbes(including bacteria and fungi) were analyzed in order to understand the distribution features of bioaerosols. The results show that the average monthly concentrations of terrestrial bacteria, marine bacteria, terrestrial fungi and marine fungi are in the ranges of 80–615 CFU m-3, 91–468 CFU m-3, 76–647 CFU m-3 and 231–1959 CFU m-3, respectively. The concentrations of terrestrial bacteria, marine bacteria, terrestrial fungi, marine fungi and total microbes are the highest in each microbial category during fall, high in spring, and the lowest in the summer and winter. The bacterial particles are coarse in spring, autumn and winter. The sizes of fungal particle present the log-normal distribution in all the seasons. 展开更多
关键词 bioaerosolS BACTERIA FUNGI SEASONAL DISTRIBUTION SIZE DISTRIBUTION
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Spatiotemporal Variations of Bioaerosols in the Vicinity of an Animal Feeding Operation Facility in the US 被引量:2
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作者 Di Hu Lingjuan Wang-Li +2 位作者 Otto D. Simmons III John J. Classen Jason A. Osborne 《Journal of Environmental Protection》 2015年第6期614-627,共14页
Bioaerosol emissions from animal feeding operation (AFO) facilities are of increasing interest due to the magnitude of the emissions and their potential health effect on local communities. There is limited information... Bioaerosol emissions from animal feeding operation (AFO) facilities are of increasing interest due to the magnitude of the emissions and their potential health effect on local communities. There is limited information about fate and transport of AFO bioaerosol emissions. In this study, concentrations of airborne bacteria and fungi were measured at four ambient stations in four wind directions surrounding an egg production farm through winter, spring and summer using Andersen six-stage samplers. Mean concentrations of ambient bacteria and fungi ranged from 8.7 × 102 CFU m-3 to 1.3 × 103 CFU m-3 and from 2.8 × 102 CFU m-3 to 1.4 × 103 CFU m-3, respectively. Ambient bacterial concentrations were not significantly different over the seasons, while ambient fungal concentrations were the highest in summer and the lowest in winter. There were significant differences between downwind and upwind bacterial concentrations (p < 0.0001). Downwind bacterial and fungal concentrations responded differently to the influencing factors. Bacterial concentrations were quadratically correlated with wind vector (combined effects of wind speed and direction) and emission rate, were positively correlated with temperature, and were negatively correlated with solar radiation. Fungal concentrations were positively correlated with temperature, RH, and emission rate, and were negatively correlated with wind vector. 展开更多
关键词 Animal FEEDING Operation bioaerosol Bacteria FUNGI Temproal VARIATION Spatial VARIATION
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Development of a New Sampling Medium for Bioaerosols
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作者 JUN-HUIZHAI MEI-LINGCHEN XIU-ZHIXU ZHEN-HAISUN YUZHOU FENG-XIANGCHE RUI-FUYANG 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2005年第2期82-86,共5页
关键词 Sampling medium bioaerosolS Airborne microorganisms
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Virucidal Efficacy of Chlorine Dioxide Interventions on MS2 Phage Bioaerosol in a Laboratory Chamber
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作者 Shawn Jones George Lukasik +1 位作者 Jeffrey Driver Raymond Harbison 《Occupational Diseases and Environmental Medicine》 2022年第3期206-216,共11页
The ongoing SARS-CoV-2 outbreak has rapidly increased the desire to manage bioaerosol exposures in indoor settings. Studies using chlorine dioxide gas (ClO<sub>2</sub>) at low concentrations have shown thi... The ongoing SARS-CoV-2 outbreak has rapidly increased the desire to manage bioaerosol exposures in indoor settings. Studies using chlorine dioxide gas (ClO<sub>2</sub>) at low concentrations have shown this intervention to be an effective mitigation strategy against viral, bacterial, and fungal elements in ambient air. There is an array of available products for generating ClO<sub>2</sub> gas however most involve the use of expensive or sophisticated technology that makes their applicability limited to specialized consumers. The purpose of this study was to determine the virucidal efficacy of three pragmatic and affordable, ClO<sub>2</sub> generating products using an aerosolized MS2 surrogate in a sealed chamber room under five different scenarios. The products tested included: Ultrashock—a ClO<sub>2</sub> releasing pod (30 ppmv), Filter Media—a ClO<sub>2</sub> impregnated zeolite media made to fit into an air blower housing (<0.01 ppmv) and Flow Stick—a smaller ClO<sub>2</sub> impregnated media filled air reactor tube (<0.01 ppmv). Testing scenarios included product deployment post MS2 bioaerosol introduction (Ultrashock and Filter Media), during MS2 bioaerosol introduction (Filter Media and Flow Stick) and prior to MS2 bioaerosol introduction (Filter Media). MS2 surface samples were collected using sterile petri-dishes and MS2 and ClO<sub>2</sub> air samples were collected from sampling ports on the outer chamber wall at 0, 90 and 180 minutes. The Ultrashock and Filter Media with air flow in the rapid sweep scenario showed the greatest reduction in air MS2 (T<sub>180</sub> = 99.992% and T<sub>180</sub> = 99.996% respectively) compared to the control (T<sub>180 </sub>= 99.6%). When compared to the control results, the filter media with air flow engaged prior to the introduction of MS2 yielded reductions of 99.87% and 99.93% in air and on surfaces respectively at T<sub>0</sub>, demonstrating the protective effect residual ClO2 has against air and surface contamination. These product formats have potential uses as remedial and preventative interventions against viral constituents in air and should undergo further evaluation to determine efficacy and human health risk. 展开更多
关键词 Virucidal Activity Chlorine Dioxide MS2 Phage bioaerosolS
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Characterization of Bioaerosol Bacterial Communities During Hazy and Foggy Weather in Qingdao, China 被引量:2
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作者 QI Jianhua LI Mengzhe +1 位作者 ZHEN Yu WU Lijing 《Journal of Ocean University of China》 SCIE CAS CSCD 2018年第3期516-526,共11页
This study was conducted to evaluate the impact of hazy and foggy weather on the bacterial communities in bioaerosols, for which samples were collected from the Qingdao coastal region on sunny, foggy, and hazy days in... This study was conducted to evaluate the impact of hazy and foggy weather on the bacterial communities in bioaerosols, for which samples were collected from the Qingdao coastal region on sunny, foggy, and hazy days in January and March 2013. Bacterial community compositions were determined using polymerase chain reaction denaturing gradient gel electrophoresis(PCR-DGGE). The bacterial community diversity was found to be high on foggy and hazy days, and the dominant species differed during hazy weather. The Shannon-Wiener index revealed that the bacterial community diversity of coarse particles was higher than that of fine particles in the bioaerosols. The bacterial community diversity of fine particles significantly correlated with relative humidity(RH; r^2 = 0.986). The cluster analysis results indicated that the bacterial communities on sunny days differed from those on hazy and foggy days. Compared with sunny days, the bacterial communities in the fine particles during hazy weather exhibited greater changes than those in the coarse particles. Most of the sequenced bacteria were found to be closely affiliated with uncultured bacteria. During hazy weather, members of the classes Bacilli and Gammaproteobacteria(Pseudomonas and Acinetobacter) were dominant. The DGGE analysis revealed that Proteobacteria and Firmicutes were the predominant phyla, and their relative percentages to all the measured species changed significantly on hazy days, particularly in the fine particles. Haze and fog had a significant impact on the bacterial communities in bioaerosols, and the bacterial community diversity varied on different hazy days. 展开更多
关键词 细菌 社区 天气 模糊 中国 聚合酶链反应 DGGE 相对湿度
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The influence of air supply inlet location on the spatial-temporal distribution of bioaerosol in isolation ward under three mixed ventilation modes 被引量:1
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作者 Zhijian Liu Tianci Wang +2 位作者 Yongxin Wang Haiyang Liu Guoqing Cao Song Tang 《Energy and Built Environment》 2023年第4期445-457,共13页
The outbreak of COVID-19 and the spread of infectious pathogens through bioaerosols have once again aroused widespread concern worldwide.Isolation ward is an important place to prevent the spread of infectious bioaero... The outbreak of COVID-19 and the spread of infectious pathogens through bioaerosols have once again aroused widespread concern worldwide.Isolation ward is an important place to prevent the spread of infectious bioaerosols.However,infection of health care workers(HCWs)in the isolation ward often occurs,so it is ur-gent to carry out relevant research to reduce the cross-infection between HCWs and patients.In this paper,the temporal and spatial distribution characteristics of bioaerosols under three mixed ventilation modes in a single ward were studied,namely,upper supply side return air of Case 1 and side supply and side return ventilation are Case 2 and Case 3 respectively.The results show that the removal efficiency of bioaerosol in the ventilation mode of Case 3,in which directional airflow is formed from the air supply inlet to the release source and then to the exhaust outlet,is 46.6%and 67.7%higher than that of Case 1 and Case 2,respectively.In addition,ventilation methods based on mixed theory do not guarantee good air quality in the breathing zone(1.3 m to 1.7 m)of HCWs,which may increase the inhalation risk for HCWs.It is hoped that our results can provide some useful suggestions for optimizing the airflow layout of the isolation ward,reducing the risk of cross-infection,and virus elimination. 展开更多
关键词 bioaerosol Isolation ward Mixed ventilation Breathing zone Computational fluid dynamics
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The exposure risks associated with pathogens and antibiotic resistance genes in bioaerosol from municipal landfill and surrounding area
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作者 Zhishu Liang Yun Yu +3 位作者 Xiaolong Wang Wen Liao Guiying Li Taicheng An 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2023年第7期90-103,共14页
Pathogenic microbes with antibiotic resistance can thrive on municipal solid waste as nutrients and be aerosolized and transported to vicinities during waste disposal processes.However,the characterization of pathogen... Pathogenic microbes with antibiotic resistance can thrive on municipal solid waste as nutrients and be aerosolized and transported to vicinities during waste disposal processes.However,the characterization of pathogenic bioaerosols and assessment of their exposure risks are lacking.Herein,particle size,concentration,activity,antibiotic resistance,and pathogenicity of airborne microorganisms were assessed in different sectors of a typical landfill.Results showed that active sector in downwind direction has the highest bioaerosol level(1234 CFU/m3),while residential area has the highest activity(14.82 mg/L).Botanical deodorizer from mist cannon can effectively remove bioaerosol.Most bioaerosols can be inhaled into respiratory system till bronchi with sizes ranging from 2.1−3.3 and 3.3−4.7μm.Pathogenic bacteria(Bacilli,Bacillus,and Burkholderia-Paraburkholderia)and allergenic fungi(Aspergillus,Cladosporium,and Curvularia)prevailed in landfill.Although high abundance of microbial volatile organic compounds(mVOCs)producing bioaerosols were detected,these mVOCs contributed little to odor issues in landfill.Notably,surrounding areas have higher levels of antibiotic-resistance genes(ARGs)than inner landfill with tetC,acrB,acrF,mdtF,and bacA as dominant ones.Most ARGs were significantly correlated with bacterial community,while environmental parameters mainly influenced fungal prevalence.These findings can assist in reducing and preventing respiratory allergy or infection risks in occupational environments relating to waste management. 展开更多
关键词 bioaerosol Pathogenic community mVOCs Antibiotic-resistance genes Health risk Botanical deodorizer
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Comparison of optical properties of bioaerosols composed of microbial spores and hyphae[Invited]
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作者 王新宇 胡以华 +4 位作者 杨星 顾有林 何海浩 丁婉莹 王鹏 《Chinese Optics Letters》 SCIE EI CAS CSCD 2023年第9期40-46,共7页
Bioaerosols exhibit significant broadband extinction performance and have vital impacts on climate change,optical detection,communication,disease transmission,and the development of optical attenuation materials.Micro... Bioaerosols exhibit significant broadband extinction performance and have vital impacts on climate change,optical detection,communication,disease transmission,and the development of optical attenuation materials.Microbial spores and microbial hyphae represent two primary forms of bioaerosol particles.However,a comprehensive investigation and comparison of their optical properties have not been conducted yet.In this paper,the spectra of spores and hyphae were tested,and the absorption peaks,component contents,and protein structural differences were compared.Accurate structural models were established,and the optical attenuation parameters were calculated.Aerosol chamber experiments were conducted to verify the optical attenuation performance of microbial spores and hyphae in the mid-infrared and far-infrared spectral bands.Results demonstrate that selecting spores and hyphae can significantly reduce the average transmittance from 21.2%to 6.4%in the mid-infrared band and from 31.3%to 19.6%in the far-infrared band within three minutes.The conclusions have significant implications for the selection of high-performance microbial optical attenuation materials as well as for the rapid detection of bioaerosol types in research on climate change and the spread of pathogenic aerosols. 展开更多
关键词 bioaerosol optical properties optical materials light-matter interactions Fourier transform infrared spectra.
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Bioaerosol nexus of air quality, climate system and human health
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作者 Fangxia Shen Maosheng Yao 《National Science Open》 2023年第4期170-208,共39页
Aerosols of biological origins,known as bioaerosols,in addition to having the aerosol properties,have those of a living system that offers them some enabling functionalities.From science to technology,visible progress... Aerosols of biological origins,known as bioaerosols,in addition to having the aerosol properties,have those of a living system that offers them some enabling functionalities.From science to technology,visible progress around the world has been made in bioaerosol field before and especially during the COVID-19 pandemic.Here the roles of bioaerosol across various disciplines,including air quality,climate and human health are highlighted and appreciated in light of Anthropocene and one health concept.In particular,we recognized the importance of aerobiology under haze air pollution,allergenic pollen and bioaerosol involvement in infectious and inflammation-related non-communicable diseases.Future interdisciplinary studies focusing on the chemical and biological process of microorganisms in air,airborne transmission of emerging pathogens and allergens and the association between bioaerosol exposure and the development and variations of human microbiome and immune response are needed to elucidate the interactions of bioaerosols with the earth system. 展开更多
关键词 bioaerosol human health climate change air pollution
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Bioaerosolization behavior along sewage sludge biostabilization 被引量:1
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作者 Fan Lu Tianyu Hu +2 位作者 Shunyan Wei Liming Shao Pinjing He 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2021年第3期151-164,共14页
Biostabilization is a cost-effective method for the beneficial utilization of sewage sludge.However,during the operation of sludge biostabilization,some microbial species could be released into the atmospheric environ... Biostabilization is a cost-effective method for the beneficial utilization of sewage sludge.However,during the operation of sludge biostabilization,some microbial species could be released into the atmospheric environment from the solid-phase of sludge easily and present a high risk to human health.This study aimed to evaluate the risk of bioaerosol during sludge biostabilization.We found a total of nine bacterial phyla,one archaeal phylum,and two fungal phyla in the bioaerosol samples.Among them,Proteobacteria,Actinobacteria,Bacteroidetes,and Ascomycota were the dominant phyla.In addition,the bioaerosolization indexes(BI)of prokaryotic phyla and flingal phyla ranged 0-45 and 0-487,respectively.Mass ilia y Pseudarthrobacter,Pseudomonas,Tremellales spp.,and Fusarium were the preferentially aerosolized microbial genera with maximum bioaerosolization indexes of 19962,10360,1802,3055,and 7398.The bioaerosol concentration during the biostabilization ranged from 160 to 1440 cell/m^(3),and we identified species such as Stenotrophomonas rhizophila and Fusarium graminerum with high bioaerosolization indexes that could be threats to human health.Euryachaeota,which belongs to archaeal phyla,had the highest biostabilization index in our study.We also found that Pseudarthrobacter was the easiest to aerosolize during the sludge biostabilization process. 展开更多
关键词 SLUDGE COMPOSTING bioaerosol bioaerosolization index High-throughput sequencing 4’ 6-diamidino-2-phenylindole(DAPI)
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Modification and coupled use of technologies are an essential envisioned need for bioaerosol study - An emerging public health concern
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作者 Prakriti Sharma Ghimire Lekhendra Tripathee Shichang Kang 《Fundamental Research》 CAS 2022年第2期218-221,共4页
The airborne microbiome is one of the relevant topics in ecology,biogeochemistiy,environment,and human health.Bioaerosols are ubiquitous air pollutants that play a vital role in the linking of the ecosystem with the b... The airborne microbiome is one of the relevant topics in ecology,biogeochemistiy,environment,and human health.Bioaerosols are ubiquitous air pollutants that play a vital role in the linking of the ecosystem with the biosphere,atmosphere,climate,and public health.However,the sources,abundance,composition,properties,and atmospheric transport mechanisms of bioaerosols are not clearly understood.To screen the effects of climate change on aerosol microbial composition and its consequences for human health,it is first essential to develop standards that recognize the existing microbial components and how they vary naturally.Bioaerosol particles can be considered an information-rich unit comprising diverse cellular and protein materials emitted by humans,animals,and plants.Hence,no single standard technique can satisfactorily extract the required information about bioaerosols.To account for these issues,metagenomics,mass spectrometry,and biological and chemical analyses can be combined with climatic studies to understand the physical and biological relationships among bioaerosols.This can be achieved by strengthening interdisciplinary teamwork in biology,chemistry,earth science,and life sciences and by sharing knowledge and expertise globally.Thus,the coupled use of various advanced analytical approaches is the ultimate key to opening up the biological treasure that lies in the environment. 展开更多
关键词 bioaerosolS Environment bioaerosol measurement Public health concern Airborne microbiology
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介质阻挡放电协同Ag-Cu/TiO_(2)-CS复合光催化剂灭活生物气溶胶的实验研究
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作者 赵璐瑶 张佳丽 +1 位作者 张轲 李彦鹏 《中国环境科学》 EI CAS CSCD 北大核心 2024年第5期2777-2785,共9页
选用大肠杆菌和杂色曲霉菌作为代表性细菌和真菌以制备生物气溶胶,采用溶胶-凝胶法制备了壳聚糖(CS)修饰的Ag-Cu/TiO_(2)-CS复合光催化剂,使用自制线管式介质阻挡放电反应器协同光催化剂对生物气溶胶进行灭活实验研究,考察初始浓度、放... 选用大肠杆菌和杂色曲霉菌作为代表性细菌和真菌以制备生物气溶胶,采用溶胶-凝胶法制备了壳聚糖(CS)修饰的Ag-Cu/TiO_(2)-CS复合光催化剂,使用自制线管式介质阻挡放电反应器协同光催化剂对生物气溶胶进行灭活实验研究,考察初始浓度、放电功率、单一及协同处理对生物气溶胶的灭活影响,并通过SEM、胞外蛋白质与电解质测定探究了生物气溶胶灭活机理.结果表明:Ag、Cu掺杂比为2:2mol%时光催化剂灭菌效果最好,处理时间为10.5s时对大肠杆菌的灭活率为0.61-lg.相比介质阻挡放电单一处理,协同光催化处理后,菌体结构破损加重,胞内物质外泄增多,灭菌效率明显提升,在60W/催化灭活条件下,细菌、真菌的灭活率分别为2.89-lg、2.87-lg,且有效抑制生物气溶胶的复活,灭活后48h内细菌、真菌的复活率分别为-3.40-lg、-3.39-lg. 展开更多
关键词 生物气溶胶灭活 光催化 介质阻挡放电 协同效应
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CHARACTERIZATIONS AND RELATIONSHIPS BETWEEN OUTDOOR AND INDOOR BIOAEROSOLS IN AN OFFICE BUILDING 被引量:9
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作者 HongZhu PatrickPhelan +1 位作者 TianhuaDuan GregoryRaupl: 《China Particuology》 SCIE EI CAS CSCD 2003年第3期119-123,共5页
Characterizations and relationships between indoor and outdoor bioaerosols were examined in an occupied office building, equipped with an air conditioning (HVAC) system, in Tempe, Arizona, USA. A two-stage microbial a... Characterizations and relationships between indoor and outdoor bioaerosols were examined in an occupied office building, equipped with an air conditioning (HVAC) system, in Tempe, Arizona, USA. A two-stage microbial air sampler was used to collect bioaerosols both inside and outside the office at fixed locations in space and at regular time intervals from August to December, 2000. Simultaneous measurements of bioaerosol, temperature, relative humidity, light intensity and wind speed were performed to explore the effects of environmental factors on bioaerosol levels. Twenty species of airborne bacteria and four genera of airborne fungi were found in our samples. The particle sizes of most outdoor and indoor bioaerosols were larger than 8.0 mm. According to the measurements of sampling days, the concentrations of outdoor bioaerosols were highest in the morning, but declined in the afternoon and reached the lowest point in the evening. The concentration peak of indoor bioaerosol (especially at the lower level) occurred in the evening, suggesting that the concentration of indoor bioaerosols follows that of outdoors, but with a time delay due to the lag associated with indoor-outdoor air exchange. With regard to the effects of four environmental factors temperature, relative humidity, light intensity, and wind speed, the relative humidity had the most pronounced influence on the outdoor bioaerosol concentrations with the number of bacteria and fungi increasing sharply on a day of high relative humidity in the desert area. 展开更多
关键词 bioaerosolS characterization CONCENTRATION indoor-outdoor office
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Sulfur dioxide and o-xylene co-treatment in biofilter:Performance, bacterial populations and bioaerosols emissions 被引量:8
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作者 Yongli Sun Song Xue +3 位作者 Lin Li Wenjie Ding Junxin Liu Yunping Han 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2018年第7期41-51,共11页
Sulfur dioxide(SO_2) and benzene homologs are frequently present in the off-gas during the process of sewage sludge drying. A laboratory scale biofilter was set up to co-treat SO_2 and o-xylene in the present study.... Sulfur dioxide(SO_2) and benzene homologs are frequently present in the off-gas during the process of sewage sludge drying. A laboratory scale biofilter was set up to co-treat SO_2 and o-xylene in the present study. SO_2 and o-xylene could be removed simultaneously in a single biofilter. Their concentration ratio in the inlet stream influenced the removal efficiencies. It is worth noting that the removal of SO_2 could be enhanced when low concentrations of o-xylene were introduced into the biofilter. Pseudomonas sp., Paenibacillus sp., and Bacillus sp. were the main functional bacteria groups in the biofilter. Sulfur-oxidizing bacteria(SOB) and o-xylene-degrading bacteria(XB) thrived in the biofilter and their counts as well as their growth rate increased with the increase in amount of SO2 and o-xylene supplied. The microbial populations differed in counts and species due to the properties and components of the compounds being treated in the biofilter. The presence of mixed substrates enhanced the diversity of the microbial population. During the treatment process, bioaerosols including potentially pathogenic bacteria, e.g., Acinetobacter lwoffii and Aeromonas sp., were emitted from the biofilter. Further investigation is needed to focus on the potential hazards caused by the bioaerosols emitted from waste gas treatment bioreactors. 展开更多
关键词 Off-gas treatment BIOFILTER Sulfur-oxidizing bacteria o-Xylene-degrading bacteria bioaerosolS Pathogens
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Quantification of multi-antibiotic resistant opportunistic pathogenic bacteria in bioaerosols in and around a pharmaceutical wastewater treatment plant 被引量:4
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作者 Mengyu Zhang Jiane Zuo +3 位作者 Xin Yu Xuchuan Shi Lei Chen Zaixing Li 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2018年第10期53-63,共11页
Pharmaceutical wastewater treatment plants(WWTPs) are thought to be a "seedbed" and reservoirs for multi-antibiotic resistant pathogenic bacteria which can be transmitted to the air environment through aeration. W... Pharmaceutical wastewater treatment plants(WWTPs) are thought to be a "seedbed" and reservoirs for multi-antibiotic resistant pathogenic bacteria which can be transmitted to the air environment through aeration. We quantified airborne multi-antibiotic resistance in a full-scale plant to treat antibiotics-producing wastewater by collecting bioaerosol samples from December2014 to July 2015. Gram-negative opportunistic pathogenic bacteria(GNOPB) were isolated, and antibiotic susceptibility tests against 18 commonly used antibiotics, including 11 β-lactam antibiotics, 3 aminoglycosides, 2 fluoroquinolones, 1 furan and 1 sulfonamide, were conducted.More than 45% of airborne bacteria isolated from the pharmaceutical WWTP were resistant to three or more antibiotics, and some opportunistic pathogenic strains were resistant to 16 antibiotics, whereas 45.3% and 50.3% of the strains isolated from residential community and municipal WWTP showed resistance to three or more antibiotics. The calculation of the multiple antibiotic resistance(MAR) index demonstrated that the air environment in the pharmaceutical WWTP was highly impacted by antibiotic resistance, while the residential community and municipal WWTP was less impacted by antibiotic resistance. In addition, we determined that the dominant genera of opportunistic pathogenic bacteria isolated from all bioaerosol samples were Acinetobacter, Alcaligenes, Citrobacter, Enterobacter, Escherichia, Klebsiella, Pantoea, Pseudomonas and Sphingomonas. Collectively, these results indicate the proliferations and spread of antibiotic resistance through bioaerosols in WWTP treating cephalosporin-producing wastewater, which imposed a potential health risk for the staff and residents in the neighborhood, calling for administrative measures to minimize the air-transmission hazard. 展开更多
关键词 Multi-antibiotic resistance Gram-negative opportunistic pathogenic bacteria bioaerosolS Pharmaceutical wastewater treatment plants
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Molecular approaches for the detection and monitoring of microbial communities in bioaerosols:A review 被引量:13
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作者 Keunje Yoo Tae Kwon Lee +4 位作者 Eun Joo Choi Jihoon Yang Sudheer Kumar Shukla Sang-il Hwang Joonhong Park 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2017年第1期234-247,共14页
Bioaerosols significantly affect atmospheric processes while they undergo long-range vertical and horizontal transport and influence atmospheric chemistry and physics and climate change.Accumulating evidence suggests ... Bioaerosols significantly affect atmospheric processes while they undergo long-range vertical and horizontal transport and influence atmospheric chemistry and physics and climate change.Accumulating evidence suggests that exposure to bioaerosols may cause adverse health effects,including severe disease.Studies of bioaerosols have primarily focused on their chemical composition and largely neglected their biological composition and the negative effects of biological composition on ecosystems and human health.Here,current molecular methods for the identification,quantification,and distribution of bioaerosol agents are reviewed.Modern developments in environmental microbiology technology would be favorable in elucidation of microbial temporal and spatial distribution in the atmosphere at high resolution.In addition,these provide additional supports for growing evidence that microbial diversity or composition in the bioaerosol is an indispensable environmental aspect linking with public health. 展开更多
关键词 bioaerosol Airborne microbial community Molecular methods Metagenomics
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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:3
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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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Reduction and characterization of bioaerosols in a wastewater treatment station via ventilation 被引量:6
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作者 Xuesong Guo Pianpian Wu +2 位作者 Wenjie Ding Weiyi Zhang Lin Li 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2014年第8期1575-1583,共9页
Bioaerosols from wastewater treatment processes are a significant subgroup of atmospheric aerosols. In the present study,airborne microorganisms generated from a wastewater treatment station(WWTS) that uses an oxida... Bioaerosols from wastewater treatment processes are a significant subgroup of atmospheric aerosols. In the present study,airborne microorganisms generated from a wastewater treatment station(WWTS) that uses an oxidation ditch process were diminished by ventilation.Conventional sampling and detection methods combined with cloning/sequencing techniques were applied to determine the groups,concentrations,size distributions,and species diversity of airborne microorganisms before and after ventilation. There were 3021 ± 537 CFU/m3 of airborne bacteria and 926 ± 132 CFU/m3 of airborne fungi present in the WWTS bioaerosol.Results showed that the ventilation reduced airborne microorganisms significantly compared to the air in the WWTS. Over 60% of airborne bacteria and airborne fungi could be reduced after4 hr of air exchange. The highest removal(92.1% for airborne bacteria and 89.1% for fungi) was achieved for 0.65–1.1 μm sized particles. The bioaerosol particles over 4.7 μm were also reduced effectively. Large particles tended to be lost by gravitational settling and small particles were generally carried away,which led to the relatively easy reduction of bioaerosol particles0.65–1.1 μm and over 4.7 μm in size. An obvious variation occurred in the structure of the bacterial communities when ventilation was applied to control the airborne microorganisms in enclosed spaces. 展开更多
关键词 Wastewater treatment station Vertical oxidation ditch bioaerosols Genetic Clone library
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校园餐厨垃圾初期降解生物气溶胶释放特征及健康风险研究
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作者 刘彦君 汤倩格 +2 位作者 王盛 李振坤 王建兵 《环境卫生工程》 2024年第1期57-67,共11页
校园餐厨垃圾处理过程无组织释放的生物气溶胶会对校内学生和工作人员的健康构成潜在威胁。研究采用安德森六级采样器及中流量总悬浮颗粒物采样器采集了某大学餐厨垃圾暂存过程的空气样品,通过培养法和高通量测序法分析了其中的可培养... 校园餐厨垃圾处理过程无组织释放的生物气溶胶会对校内学生和工作人员的健康构成潜在威胁。研究采用安德森六级采样器及中流量总悬浮颗粒物采样器采集了某大学餐厨垃圾暂存过程的空气样品,通过培养法和高通量测序法分析了其中的可培养和非培养生物气溶胶。结果表明,餐厨垃圾是重要的生物气溶胶释放源,生物气溶胶中真菌浓度(224.78±27.69) CFU/m^(3)大于细菌浓度(116.95±23.01) CFU/m^(3)且高于环境背景浓度,即细菌环境背景值为(32.80±3.61) CFU/m^(3)、真菌环境背景值为(54.57±17.24) CFU/m^(3)。粒径分布上,细菌气溶胶主要分布在Ⅰ级(≥7.0μm),真菌气溶胶在Ⅳ级(2.1~3.3μm)。细菌气溶胶的优势菌门主要有变形菌门(Proteobacteria)和厚壁菌门(Firmicutes),前者气溶胶化水平较高;真菌气溶胶优势菌门主要有子囊菌门(Ascomycota)和担子菌门(Basidiomycota),两者均易气溶胶化。健康风险方面,呼吸与皮肤接触的非致癌健康风险可满足美国环保署规定的最大可接受水平;但假单胞菌属(Pseudomonas)和镰刀菌属(Fusarium)的年感染风险和疾病负担均高于相应的基准值。 展开更多
关键词 餐厨垃圾 生物气溶胶 群落结构 气溶胶化指数 健康风险
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The source and transport of bioaerosols in the air:A review 被引量:2
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作者 Wenwen Xie Yanpeng Li +5 位作者 Wenyan Bai Junli Hou Tianfeng Ma Xuelin Zeng Liyuan Zhang Taicheng An 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2021年第3期23-41,共19页
Recent pandemic outbreak of the corona-virus disease 2019(COVID-19)has raised widespread concerns about the importance of the bioaerosols.They are atmospheric aerosol particles of biological origins,mainly including b... Recent pandemic outbreak of the corona-virus disease 2019(COVID-19)has raised widespread concerns about the importance of the bioaerosols.They are atmospheric aerosol particles of biological origins,mainly including bacteria,fungi,viruses,pollen,and cell debris.Bioaerosols can exert a substantial impact on ecosystems,climate change,air quality,and public health.Here,we review several relevant topics on bioaerosols,including sampling and detection techniques,characterization,effects on health and air quality,and control methods.However,very few studies have focused on the source apportionment and transport of bioaerosols.The knowledge of the sources and transport pathways of bioaerosols is essential for a comprehensive understanding of the role microorganisms play in the atmosphere and control the spread of epidemic diseases associated with them.Therefore,this review comprehensively summarizes the up to date progress on the source characteristics,source identification,and diffusion and transport process of bioaerosols.We intercompare three types of diffusion and transport models,with a special emphasis on a widely used mathematical model.This review also highlights the main factors affecting the source emission and transport process,such as biogeographic regions,land-use types,and environmental factors.Finally,this review outlines future perspectives on bioaerosols. 展开更多
关键词 bioaerosolS DIFFUSION Source identification Biogeography
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