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1.
空气微生物研究方法进展与展望   总被引:8,自引:0,他引:8  
着重论述了空气微生物气溶胶的研究方法,主要有培养基法和非培养基法。培养基法是传统的微生物研究方法,需要花费大量的时间和劳动力,只能够检测活的能够在培养基上生长的微生物,可以大致反映空气中的微生物气溶胶。非培养基法,主要是PCR法,具有敏感性高、快速、特异性强等特点,能够检测出环境样品中绝大多数的微生物,是一种微生物气溶胶检测的有效途径。最后指出实时持续的监测是将来空气微生物研究的努力方向和发展趋势。  相似文献   

2.
自由表面流人工湿地微生物气溶胶研究   总被引:4,自引:0,他引:4  
微生物气溶胶的种类、浓度和粒径分布与人类健康关系密切。采用MD8空气浮游菌采样仪和FA-1型6级筛孔撞击式空气微生物采样器,对人工湿地细菌和真菌气溶胶的数量和粒径分布进行研究。结果表明,人工湿地进水前,细菌和真菌气溶胶平均值较低,分别为64.0、126.0CFU/m3;进水后,细菌气溶胶平均值在6月26日达到最高,为2292.5CFU/m3,真菌气溶胶平均值在8月27日达到最高,为6200.0CFU/m3;易进入肺部的细菌和真菌(粒径为0.65~4.70μm)粒子数分别占粒子总数的22.2%~62.3%、54.2%~87.6%;空气细菌中值直径为1.88~4.13μm,空气真菌中值直径在3.00μm左右波动。空气细菌中革兰氏阳性菌明显多于革兰氏阴性菌,空气真菌主要为酵母菌、镰刀菌属、枝孢属、毛霉属、交链孢属、肉座菌属、枝霉属、青霉属和曲霉属。  相似文献   

3.
垃圾填埋场微生物气溶胶粒径分布研究   总被引:4,自引:0,他引:4  
为了了解垃圾填埋场微生物气溶胶粒径分布规律,在北京市某垃圾卫生填埋场填埋区、渗滤液处理区、生活区分别选定监测点,利用安德森六级微生物采样器,对填埋场空气微生物进行了系统的定点取样、测定和分析。研究结果表明,空气细菌粒径分布均为第Ⅰ级(>8.2 μm)最高,填埋区空气细菌粒径呈偏态分布,渗滤液处理区、生活区分别在第Ⅳ级和第Ⅲ级出现第2个峰值。携带细菌的可吸入微粒在渗滤液处理区比例最大。空气真菌与放线菌均在第Ⅳ级分布最高,携带真菌和放线菌的可吸入粒子的比例显著大于细菌(P<0.05)。填埋区不同作业时段空气微生物粒径在各级分布比例基本一致。填埋区细菌气溶胶中值直径为5.7 μm,渗滤液处理区为3.7 μm,生活区为5.3 μm,显著大于真菌气溶胶和放线菌气溶胶的中值直径(P<0.05)。  相似文献   

4.
研究了培养基成分种类及其用量对菌产微生物絮凝剂的影响。结果表明,较高的C/N比对菌产絮凝剂有利,碳源中的蔗糖是菌株Aeromonassp.N11产絮凝剂的良好碳源,氮源以采用复合氮源为佳。培养基中加入酵母膏有利于絮凝剂的产生。NaCl能够促进所产絮凝剂的絮凝活性,碳源蔗糖和氮源脲对菌产絮凝剂的影响最大。利用正交实验得出产絮凝剂培养基的最佳配比为蔗糖20g/L,酵母膏08g/L,脲05g/L,硫酸胺05g/L,NaCl7g/L。  相似文献   

5.
研究了微生物絮凝剂产生菌HHE-P7在酱油废水中产生微生物絮凝剂的絮凝特性.实验表明,酱油废水由于碳源丰富,是一种良好的培养基.HHE-P7菌最佳培养条件为:COD 20 000 mg/L,K2HPO41.0 g/L,培养3 d.最佳絮凝条件为在1 L高岭土水中投加10~15 mL微生物絮凝剂(MBF7),pH调至9,则絮凝率为90%以上;微生物絮凝剂在水系中主要起吸附架桥的作用.  相似文献   

6.
微生物絮凝剂制备的研究新进展   总被引:1,自引:0,他引:1  
微生物絮凝剂具有高效、无毒、无二次污染等特点,是一种具有良好应用前景的天然有机高分子絮凝剂。然而,微生物絮凝剂的高制备成本限制了其推广应用。降低生产成本已成为微生物絮凝剂工业化制备过程中亟需解决的问题。在分析微生物絮凝剂制备成本偏高原因的基础上,系统介绍了近年来国内外关于微生物絮凝剂制备的最新进展,包括利用复合菌群产微生物絮凝剂、利用廉价替代培养基制备微生物絮凝剂和利用剩余污泥制备微生物絮凝剂等;针对现有研究的不足,展望了微生物絮凝剂制备的发展趋势。  相似文献   

7.
大气溶胶对环境污染、气候变化以及人体健康有着重要的影响,大气溶胶的采集和分析已成为当前大气环境研究领域中的一个重要课题.论述的新型多级冲击采样器能够实现大气溶胶颗粒物按空气动力学粒径的大小7级分离采集,提供大致均匀的平面样品以进行后续的物理、化学分析,同时保证各分级切割粒径的稳定性.利用振动孔溶胶发生器产生均匀、粒径大致相同、单分散相的1.5~17μm空气动力学粒径标准粒子,对新型多级冲击采样器前三级的切割粒径和收集效率进行鉴定性分析实验,结果表明,能够满足对大气溶胶颗粒物分级采集的要求.  相似文献   

8.
为探明空调房间气流形式与通风量对室内微生物气溶胶的影响规律,在一个标准气流实验室,使用Andersen六级撞击式空气采样器对空气中的细菌与真菌气溶胶进行采样,分析了其浓度变化特点,及其与大气细颗粒物PM_(2.5)的相关关系。结果表明,晴朗天气下,气流室内不同气流形式和通风量对微生物气溶胶浓度的影响不同。总体来说,不管是哪种气流形式,通风量的增加均在一定范围内降低了室内微生物气溶胶及大气细颗粒物浓度,其中细菌气溶胶和PM_(2.5)在通风方式为侧面送风侧面排风时的去除效果最好,且分别在换气次数为3次/h和4次/h时其浓度达到最低,其去除效率分别为88.5%和42%,而真菌气溶胶在侧面送风顶面排风时的去除效果最好,在4次/h浓度最低,去除效率为6%。研究结果可以为探究室内环境空气质量及控制室内微生物污染提供基础数据。  相似文献   

9.
大气溶胶对环境污染、气候变化以及人体健康有着重要的影响,大气溶胶的采集和分析已成为当前大气环境研究领域中的一个重要课题.论述的新型多级冲击采样器能够实现大气溶胶颗粒物按空气动力学粒径的大小7级分离采集,提供大致均匀的平面样品以进行后续的物理、化学分析,同时保证各分级切割粒径的稳定性.利用振动孔溶胶发生器产生均匀、粒径大致相同、单分散相的1.5~17μm空气动力学粒径标准粒子,对新型多级冲击采样器前三级的切割粒径和收集效率进行鉴定性分析实验,结果表明,能够满足对大气溶胶颗粒物分级采集的要求.  相似文献   

10.
城市固体废弃物综合处理厂微生物气溶胶污染特性   总被引:3,自引:1,他引:2  
以鄂尔多斯市某城市固体废弃物综合处理厂的生活垃圾预处理区、餐厨预处理区、粪便预处理区及联合厌氧发酵区为对象,研究不同功能区的微生物气溶胶污染特性。研究结果表明,不同功能区空气异养细菌和真菌的浓度存在显著性差异(p<0.05),尤以生活垃圾集料间产生的异养细菌和真菌浓度最高。对照空气微生物评价标准,不同功能区产生的异养细菌和真菌大都有不同程度的污染。粒径分析表明,不同功能区异养细菌粒径主要集中在第1、2、3、4级,各功能区之间无显著性差异(p>0.05),与细菌粒径分布不同,不同功能区真菌粒径主要分布在第3级和第4级,也无明显差异(p>0.05)。  相似文献   

11.
Exposures from indoor environments are a major issue for evaluating total long-term personal exposures to the fine fraction (<2.5 microm in aerodynamic diameter) of particulate matter (PM). It is widely accepted in the indoor air quality (IAQ) research community that biocontamination is one of the important indoor air pollutants. Major indoor air biocontaminants include mold, bacteria, dust mites, and other antigens. Once the biocontaminants or their metabolites become airborne, IAQ could be significantly deteriorated. The airborne biocontaminants or their metabolites can induce irritational, allergic, infectious, and chemical responses in exposed individuals. Biocontaminants, such as some mold spores or pollen grains, because of their size and mass, settle rapidly within the indoor environment. Over time they may become nonviable and fragmented by the process of desiccation. Desiccated nonviable fragments of organisms are common and can be toxic or allergenic, depending upon the specific organism or organism component. Once these smaller and lighter fragments of biological PM become suspended in air, they have a greater tendency to stay suspended. Although some bioaerosols have been identified, few have been quantitatively studied for their prevalence within the total indoor PM with time, or for their affinity to penetrate indoors. This paper describes a preliminary research effort to develop a methodology for the measurement of nonviable biologically based PM, analyzing for mold and ragweed antigens and endotoxins. The research objectives include the development of a set of analytical methods and the comparison of impactor media and sample size, and the quantification of the relationship between outdoor and indoor levels of bioaerosols. Indoor and outdoor air samples were passed through an Andersen nonviable cascade impactor in which particles from 0.2 to 9.0 microm were collected and analyzed. The presence of mold, ragweed, and endotoxin was found in all eight size ranges. The presence of respirable particles of mold and pollen found in the fine particle size range from 0.2 to 5.25 microm is evidence of fragmentation of larger source particles that are known allergens.  相似文献   

12.
ABSTRACT

Exposures from indoor environments are a major issue for evaluating total long-term personal exposures to the fine fraction (<2.5μm in aerodynamic diameter) of particulate matter (PM). It is widely accepted in the indoor air quality (IAQ) research community that biocontamination is one of the important indoor air pollutants. Major indoor air biocontaminants include mold, bacteria, dust mites, and other antigens. Once the biocontaminants or their metabolites become airborne, IAQ could be significantly deteriorated. The airborne biocontaminants or their metabolites can induce irritational, allergic, infectious, and chemical responses in exposed individuals.

Biocontaminants, such as some mold spores or pollen grains, because of their size and mass, settle rapidly within the indoor environment. Over time they may become nonviable and fragmented by the process of desiccation. Desiccated nonviable fragments of organisms are common and can be toxic or allergenic, depending upon the specific organism or organism component. Once these smaller and lighter fragments of biological PM become suspended in air, they have a greater tendency to stay suspended. Although some bioaerosols have been identified, few have been quantitatively studied for their prevalence within the total indoor PM with time, or for their affinity to penetrate indoors.

This paper describes a preliminary research effort to develop a methodology for the measurement of nonvi-able biologically based PM, analyzing for mold and ragweed antigens and endotoxins. The research objectives include the development of a set of analytical methods and the comparison of impactor media and sample size, and the quantification of the relationship between outdoor and indoor levels of bioaerosols. Indoor and outdoor air samples were passed through an Andersen nonviable cascade impactor in which particles from 0.2 to 9.0 um were collected and analyzed. The presence of mold, ragweed, and endotoxin was found in all eight size ranges. The presence of respirable particles of mold and pollen found in the fine particle size range from 0.2 to 5.25 um is evidence of fragmentation of larger source particles that are known allergens.  相似文献   

13.
The incidences of allergies, allergic diseases and asthma are increasing world wide. Global climate change is likely to impact plants and animals, as well as microorganisms. The World Health Organization, U.S. Environmental Protection Agency, U.S. Department of Agriculture, U.S. Department of Health and Human Services, and the Intergovernmental Panel on Climate Change cite increased allergic reactions due to climate change as a growing concern. Monitoring of indoor and ambient particulate matter (PM) and the characterization of the content for biological aerosol concentrations has not been extensively performed. Samples from urban and rural North Carolina (NC), and Denver (CO), were collected and analyzed as the goal of this research. A study of PM10 (<10 μm in aerodynamic diameter) and PM2.5 (<2.5 μm in aerodynamic diameter) fractions of ambient bioaerosols was undertaken for a six month period to evaluate the potential for long-term concentrations. These airborne bioaerosols can induce irritational, allergic, infectious, and chemical responses in exposed individuals. Three separate sites were monitored, samples were collected and analyzed for mass and biological content (endotoxins, (1,3)-β-d-glucan and protein). Concentrations of these bioaerosols were reported as a function of PM size fraction, mass and volume of air sampled. The results indicated that higher concentrations of biologicals were present in PM10 than were present in PM2.5, except when near-roadway conditions existed. This study provides the characterization of ambient bioaerosol concentrations in a variety of areas and conditions.  相似文献   

14.
It is well known that characterization of airborne bioaerosols in indoor environments is a challenge because of inherent irregularity in concentrations, which are influenced by many environmental factors. The primary aim of this study was to quantify the day-to-day variability of airborne fungal levels in a single residential environment over multiple seasons. Indoor air quality practitioners must recognize the inherent variability in airborne bio-aerosol measurements during data analysis of mold investigations. Changes in airborne fungi due to varying season and day is important to recognize when considering health impacts of these contaminants and when establishing effective controls. Using an Andersen N6 impactor, indoor and outdoor bioaerosol samples were collected on malt extract agar plates for 18 weekdays and 19 weekdays in winter and summer, respectively. Interday and intraday variability for the bioaerosols were determined for each sampler. Average fungal concentrations were 26 times higher during the summer months. Day-to-day fungal samples showed a relatively high inconsistency suggesting airborne fungal levels are very episodic and are influenced by several environmental factors. Summer bio-aerosol variability ranged from 7 to 36% and winter variability from 24 to 212%; these should be incorporated into results of indoor mold investigations. The second objective was to observe the relationship between biological and nonbiological particulate matter (PM). No correlation was observed between biological and nonbiological PM. Six side-by-side particulate samplers collected coarse PM (PM10) and fine PM (PM2.5) levels in both seasons. PM2.5 particulate concentrations were found to be statistically higher during summer months. Interday variability observed during this study suggests that indoor air quality practitioners must adjust their exposure assessment strategies to reflect the temporal variability in bioaerosol concentrations.  相似文献   

15.
Fischer G  Müller T  Ostrowski R  Dott W 《Chemosphere》1999,38(8):1745-1755
Exposure to secondary metabolites of airborne fungi in waste handling facilities is discussed in regard to potential toxic impacts on human health. The relevance of mycotoxins has been intensely studied in connection with contamination of food and feed. Toxic secondary metabolites are expected to be present in airborne spores, but exposure to mycotoxins in bioaerosols has not been studied sufficiently. Aspergillus fumigatus is one of the most frequent species in the air of compost plants. A wide range of secondary metabolites was found in pure cultures of freshly isolated strains of A. fumigatus. Tryptoquivaline, a compound with tremorgenic properties, and trypacidin, for which no toxic properties are described, were found in native bioaerosols in a compost facility. The highly toxic metabolites gliotoxin and verruculogen were not found in the bioaerosols.  相似文献   

16.
Characteristics of microbial aerosols released from chicken and swine feces   总被引:1,自引:0,他引:1  
Bioaerosols generated during livestock and poultry production are significant occupational hazards. This study investigates the characteristics of bioaerosols released from animal feces. Fresh feces from pigs and chickens were obtained and tested in a controlled-environment facility. Airborne viable (culturable) bacteria and fungi were sampled hourly for 48 hr. The predominant species were identified via polymerase chain reaction analysis. The number of bacterial colonies released from chicken feces increased gradually, peaked at approximately 20 hr, and remained relatively constant to test end; however, the bacterial colonies released from swine feces did not increase significantly. The chicken feces released significantly (P < 0.05) more bacterial aerosols than swine feces over 40 hr, by approximately 1 order of magnitude. However, the difference in total fungal aerosols released from the two feces types was relatively small (30-40%) and insignificant (P > 0.05). Aerosols sized between approximately 0.65 and 1.1 microm were predominant for bacteria, whereas aerosols sized between approximately 2.1 and 3.3 microm prevailed for fungi. Genera Stenotrophomonas were the predominant bacterial aerosols, whereas Cladosporium and Acremonium accounted for the greatest amounts of fungi from chicken and swine feces, respectively. More than 1000 culturable bacterial colonies can be released from 1 g of chicken feces per hour, and approximately 80% of these bioaerosols are respirable. Most bacterial aerosols released from swine and chicken feces were opportunistic human pathogens; thus, the significance of their presence warrants further investigations.  相似文献   

17.
Jo WK  Kang JH 《Chemosphere》2006,65(10):1755-1761
The present study evaluated exposure to bioaerosols at three different types of facilities (pet shops, pet clinics, and flower gardens) by measuring the bacterial, fungal and/or PM(10) concentrations in indoor and outdoor air. Regardless of the season, the total bacteria and total fungi were detected for all samples, whereas the fungal genera were not. The bioaerosol concentrations measured in the flower gardens were significantly higher than those of the pet shops and pet clinics. The mean microbial concentrations at the three types of facilities were close to or exceeded the Korean indoor bioaerosol guidelines (800 CFU m(-3)), thus suggesting the need for remedial action regarding indoor microorganisms, in order to reduce the exposure at the surveyed facilities. Another suggestion was that contrary to the airborne microbes, flower gardens are not an important microenvironment for PM(10) (particulate matter 10 microm in aerodynamic diameter) exposure. Two temporal characteristics (seasonal variation and the summer survey period) were important regarding exposure to airborne microbes, depending upon the type of facility surveyed, microbial or sample types, whereas the sampling time of the day was not. The microbial concentration ratio of indoor air to outdoor air depended upon the facility and season.  相似文献   

18.
Reducing airborne microorganisms may potentially improve the environment in layer breeding houses. The effectiveness of slightly acidic electrolyzed water (SAEW; pH 5.29–6.30) in reducing airborne microorganisms was investigated in a commercial layer house in northern China. The building had a tunnel-ventilation system, with an evaporative cooling. The experimental area was divided into five zones along the length of the house, with zone 1 nearest to an evaporative cooling pad and zone 5 nearest to the fans. The air temperature, relative humidity, dust concentration, and microbial population were measured at the sampling points in the five zones during the study period. The SAEW was sprayed by workers in the whole house. A six-stage air microbial sampler was used to measure airborne microbial population. Results showed that the population of airborne bacteria and fungi were sharply reduced by 0.71 × 105 and 2.82 × 103 colony-forming units (CFU) m?3 after 30 min exposure to SAEW, respectively. Compared with the benzalkonium chloride (BC) solution and povidone-iodine (PVP-I) solution treatments, the population reductions of airborne fungi treated by SAEW were significantly (P < 0.05) more, even though the three disinfectants can decrease both the airborne bacteria and fungi significantly (P < 0.05) 30 min after spraying.
Implications: There are no effective methods for reducing airborne microbial levels in tunnel-ventilated layer breeding houses; additionally, there is limited information available on airborne microorganism distribution. This research investigated the spatial distribution of microbial population, and the effectiveness of spraying slightly acidic electrolyzed water in reducing microbial levels. The research revealed that slightly acidic electrolyzed water spray was a potential method for reducing microbial presence in layer houses. The knowledge gained in this research about the microbial population variations in the building may assist producers in managing the bird housing environment and engineers in designing poultry houses.  相似文献   

19.

Purpose

Bacterial community structure and the chemical components in aerosols caused by rotating brushes in an Orbal oxidation ditch were assessed in a Beijing municipal wastewater treatment plant.

Methods

Air samples were collected at different distances from the aerosol-generating rotating brushes. Molecular culture-independent methods were used to characterize the community structure of the airborne bacteria in each sample regardless of cell culturability. A clone library of 16S rDNA directly amplified from air DNA of each sample was constructed and sequenced to analyze the community composition and diversity. Insoluble particles and water-soluble ions emitted with microorganisms in aerosols were analysis by a scanning electron microscope together with energy dispersive X-ray spectroscopy and ion chromatogram analyzer.

Results

In total, most of the identified bacteria were Proteobacteria. The majority of sequences near the rotating brushes (the main source of the bioaerosols) were Proteobacteria (62.97 %) with ??-(18.52 %) and ??-(44.45?%) subgroups and Bacteroidetes (29.63 %). Complex patterns were observed for each sampling location, suggesting a highly diverse community structure, comparable to that found in water in the Orbal oxidation ditch. Accompany with microorganisms, 46.36???g/m3 of SO 4 2? , 29.35???g/m3 of Cl?, 21.51???g/m3 of NO 3 ? , 19.76???g/m3 of NH 4 + , 11.42???g/m3 of PO 4 3? , 6.18???g/m3 of NO 2 ? , and elements of Mg, Cl, K, Na, Fe, S, and P were detected from the air near the aerosols source.

Conclusions

Differences in the structure of the bacterial communities and chemical components in the aerosols observed between sampling sites indicated important site-related variability. The composition of microorganisms in water was one of the most important sources of bacterial communities in bioaerosols. Chemical components in bioaerosols may provide a media for airborne microorganism attachment, as well as a suitable microenvironment for their growth and survival in the air. This study will be benefit for the formulation of pollution standards, especially for aerosols, that take into account plant workers?? health.  相似文献   

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