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室内空气中挥发性有机化合物去除的生物处理:潜力与挑战。

Biological treatment of indoor air for VOC removal: potential and challenges.

作者信息

Guieysse Benoit, Hort Cecile, Platel Vincent, Munoz Raul, Ondarts Michel, Revah Sergio

机构信息

School of Civil and Environmental Engineering, Nanyang Technological University, Singapore, Singapore.

出版信息

Biotechnol Adv. 2008 Sep-Oct;26(5):398-410. doi: 10.1016/j.biotechadv.2008.03.005. Epub 2008 May 8.

Abstract

There is nowadays no single fully satisfactory method for VOC removal from indoor air due to the difficulties linked to the very low concentration (microg m(-3) range), diversity, and variability at which VOCs are typically found in the indoor environment. Although biological methods have shown a certain potential for this purpose, the specific characteristic of indoor air and the indoor air environment brings numerous challenges. In particular, new methods must be developed to inoculate, express, and maintain a suitable and diverse catabolic ability under conditions of trace substrate concentration which might not sustain microbial growth. In addition, the biological treatment of indoor air must be able to purify large amounts of air in confined environments with minimal nuisances and release of microorganisms. This requires technical innovations, the development of specific testing protocols and a deep understanding of microbial activities and the mechanisms of substrate uptake at trace concentrations.

摘要

由于与室内环境中挥发性有机化合物(VOCs)通常极低的浓度(微克/立方米范围)、多样性和变异性相关的困难,目前还没有一种完全令人满意的从室内空气中去除VOCs的单一方法。尽管生物方法已显示出在此方面具有一定潜力,但室内空气和室内空气环境的特殊性质带来了诸多挑战。特别是,必须开发新方法,以便在可能无法维持微生物生长的微量底物浓度条件下接种、表达并维持合适且多样的分解代谢能力。此外,室内空气的生物处理必须能够在有限环境中净化大量空气,同时将微生物滋扰和释放降至最低。这需要技术创新、制定特定的测试方案以及深入了解微生物活动和微量浓度下底物摄取机制。

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