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减少膜生物反应器中细菌气溶胶的排放:SRT 和添加 PAC 和钙的影响。

Reducing bacterial aerosol emissions from membrane bioreactors: The impact of SRT and the addition of PAC and calcium.

机构信息

Department of Civil and Environmental Engineering, Sejong University, 209 Neungdongro, Gwangjin-gu, Seoul, 05006, Republic of Korea.

Taeyoung E&C 111, Yeouigongwon-ro, Yeongdeungpo-gu, Seoul, 07241, Republic of Korea.

出版信息

Water Res. 2019 Jun 1;156:58-70. doi: 10.1016/j.watres.2019.03.017. Epub 2019 Mar 16.

Abstract

Bacterial aerosols resulting from membrane bioreactor (MBR) processes, which require excessive aeration in a confined space, are important to investigate because of their possible adverse effects on human health. This study investigated the influence of solid retention time (SRT) on bacterial aerosols from MBRs. Moreover, powdered activated carbon (PAC) and calcium were used to attenuate bacterial aerosol emissions from MBRs. The particulate matter (PM) emitted from the MBRs was reduced by 30.5 and 25.2% at SRTs of 20 and 80 d, respectively, compared to the level emitted at an SRT of 10 d. Total cell counts were similarly reduced at SRTs of 20 and 80 d. Longer SRTs also led to greater reductions in the particle size distribution of the sludge within 10 μm. Several factors in the MBR influenced the behavior of the bacterial aerosol emissions from the MBRs. This study showed that changes in viscosity and particle size induced by the SRT influenced the bacterial aerosol emissions in MBRs. Therefore, SRT was identified as an important design parameter affecting bacterial aerosol emissions in MBR processes. The amounts of particulate matter and bacterial aerosols were reduced in MBRs using PAC and calcium, both of which exerted an immediate effect on the bacterial aerosol emissions in MBRs by increasing the aerosol-particle size.

摘要

由于膜生物反应器 (MBR) 工艺需要在密闭空间中进行过度曝气,因此会产生细菌气溶胶,这对人类健康可能产生不利影响,因此需要对其进行研究。本研究调查了固体停留时间 (SRT) 对 MBR 中细菌气溶胶的影响。此外,还使用粉末活性炭 (PAC) 和钙来减弱 MBR 中细菌气溶胶的排放。与 SRT 为 10 d 时相比,SRT 分别为 20 和 80 d 时,MBR 排放的颗粒物 (PM) 减少了 30.5%和 25.2%。总细胞计数在 SRT 为 20 和 80 d 时也同样减少。较长的 SRT 还导致 10 µm 内污泥的粒径分布有更大的减少。MBR 中的几个因素影响了 MBR 中细菌气溶胶排放的行为。本研究表明,SRT 引起的粘度和粒径变化会影响 MBR 中细菌气溶胶的排放。因此,SRT 被确定为影响 MBR 工艺中细菌气溶胶排放的重要设计参数。PAC 和钙的使用减少了 MBR 中的颗粒物和细菌气溶胶,这两种物质都通过增加气溶胶颗粒的大小对 MBR 中的细菌气溶胶排放产生即时影响。

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