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首页> 外文期刊>Journal of Aerosol Science >Collection of airborne microorganisms by a new electrostatic precipitator
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Collection of airborne microorganisms by a new electrostatic precipitator

机译:用新型静电除尘器收集空气中的微生物

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摘要

Bioaerosol exposure assessment and the protection of civil/government/military establishments from bioterrorism require the development of low-power bioaerosol collectors that are able not only to efficiently collect airborne microorganisms, but also to preserve their biological integrity. In search for such a method, a new bioaerosol sampler was evalauted. In this device, the airborne microorganisms are imparted electrical charges and are then deposited in an electrical field onto a growth medium (agar). Experiments were conducted with Pseudomonas fluorescence vegative cells, Bacillus subtilis var. niger (BG) endospores (used to simulate the spores of anthrax-causing Bacillus anthracis when testing bioaerosol sensors) and Penicillium brevicompactum fungal spores. It was found that 80-90% of initially "charge-neutralized" biological particles were removed from the air, when a small amount of ionization was generated in the electrostatic precipitator's (ESP) inlet and a precipitation voltage of +- 4000 V was applied across the agar plates. Over 70% of viable BG and P.brevicompactum spores entering the ESP were enumerated as colony forming units. The bioefficiency of the new sampler was about the same as that of the Biosampler, which was tested in parallel. In experiments with sensitive P.fluorescens vegetative cells, the ESP enumerated twice as many cells as the Biosampler. The latter result indicates that the electrostatic collection method may be especially useful for the collection and enumeration of sensitive airborne microorganisms. Experiments investigating the effect of aging time on the amount of electrical charge carried by the airborne microorganisms showed that the level of electrical charge gradually decreases with increasing aging time. However, evan after the P. fluorescence cells had remained airborne for an hour, they retained enough electrical charge to be collected with efficiency higher than 70%.
机译:生物气溶胶的暴露评估以及保护民用/政府/军事机构免受生物恐怖主义的危害,需要开发低功率的生物气溶胶收集器,该收集器不仅能够有效地收集空气中的微生物,而且还能保持其生物完整性。为了寻找这种方法,一个新的生物气溶胶采样器被推崇。在该装置中,空气传播的微生物被赋予电荷,然后在电场中沉积到生长培养基(琼脂)上。用假单胞菌荧光阴性细胞枯草芽孢杆菌变种进行实验。尼日尔(BG)内生孢子(用于在测试生物气溶胶传感器时模拟引起炭疽的炭疽芽孢杆菌的孢子)和短青霉菌真菌孢子。发现在静电除尘器(ESP)的入口中产生少量电离并施加+-4000 V的沉淀电压时,从空气中去除了80-90%最初的“电荷中和”生物颗粒。穿过琼脂平板。列举进入ESP的超过70%的活BG和短小毕赤酵母孢子作为菌落形成单位。新采样器的生物效率与并行测试的生物采样器的生物效率大致相同。在对敏感的萤光假单胞菌营养细胞进行的实验中,ESP枚举的细胞数量是生物采样器的两倍。后一个结果表明,静电收集方法可能特别适用于敏感空气传播微生物的收集和枚举。实验研究了老化时间对空气中微生物携带的电荷量的影响,结果表明,随着老化时间的增加,电荷水平逐渐降低。但是,在体育荧光细胞在空气中停留一个小时后,它们保留了足够的电荷以高于70%的效率被收集。

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