Temasek Life Sciences Laboratory, 1 Research Link, National University of Singapore, Singapore City, Singapore.
Indoor Air. 2021 Mar;31(2):574-586. doi: 10.1111/ina.12729. Epub 2020 Dec 23.
Particulate matter (PM, especially PM with diameter 2.5 microns) has been regarded as the major air pollutant. Negative air ions (NAIs) could electrically charge PM and remove it much more efficiently. In this study, a bio-generator of NAIs has been developed, which helps plants to generate NAIs at around 100 × 10 ions/cm under pulsed electrical field (PEF) treatment. By using the bio-generator, PM concentration in a growth chamber could be reduced from around 500 to near 0 µg/m within 5 minutes. It could also be used to remove continuously generated PM. Upon PEF treatment, genes encoding oxidoreductases and other enzymes were up-regulated, some of which might contribute to the generation of superoxide anions (one of NAIs). On the other hand, the emission of large numbers of electrons from the surface/edge of plant leaves has been detected upon PEF treatment and these electrons might be captured by surrounding air molecules to generate high concentration of NAIs.
颗粒物(PM,尤其是直径为 2.5 微米的颗粒物)已被视为主要空气污染物。空气负离子(NAIs)可以使 PM 带电,并更有效地去除它。在这项研究中,开发了一种 NAIs 的生物发生器,它可以帮助植物在脉冲电场(PEF)处理下产生约 100×10 个离子/cm 的 NAIs。通过使用生物发生器,生长室内的 PM 浓度可在 5 分钟内从约 500µg/m 降低到接近 0µg/m。它也可用于去除持续产生的 PM。PEF 处理后,编码氧化还原酶和其他酶的基因被上调,其中一些可能有助于超氧阴离子(NAIs 的一种)的产生。另一方面,在 PEF 处理后,从植物叶片的表面/边缘检测到大量电子的发射,这些电子可能被周围的空气分子捕获,以产生高浓度的 NAIs。