Miyazaki Yuzo, Kondo Yutaka, Sahu Lokesh K, Imaru Junichi, Fukushima Nobuhiko, Kano Minoru
Research Center for Advanced Science and Technology, University of Tokyo, Komaba 4-6-1, Meguro-ku, Tokyo 153-8904, Japan.
J Environ Monit. 2008 Oct;10(10):1195-201. doi: 10.1039/b806957c.
We designed a continuous soot monitoring system (COSMOS) for fully automated, high-sensitivity, continuous measurement of light absorption by black carbon (BC) aerosols. The instrument monitors changes in transmittance across an automatically advancing quartz fiber filter tape using an LED at a 565 nm wavelength. To achieve measurements with high sensitivity and a lower detectable light absorption coefficient, COSMOS uses a double-convex lens and optical bundle pipes to maintain high light intensity and signal data are obtained at 1000 Hz. In addition, sampling flow rate and optical unit temperature are actively controlled. The inlet line for COSMOS is heated to 400 degrees C to effectively volatilize non-refractory aerosol components that are internally mixed with BC. In its current form, COSMOS provides BC light absorption measurements with a detection limit of 0.45 Mm(-1) (0.045 microg m(-3) for soot) for 10 min. The unit-to-unit variability is estimated to be within +/- 1%, demonstrating its high reproducibility. The absorption coefficients determined by COSMOS agreed with those by a particle soot absorption photometer (PSAP) to within 1% (r2 = 0.97). The precision (+/- 0.60 Mm(-1)) for 10 min integrated data was better than that of PSAP and an aethalometer under our operating conditions. These results showed that COSMOS achieved both an improved detection limit and higher precision for the filter-based light absorption measurements of BC compared to the existing methods.
我们设计了一种连续烟尘监测系统(COSMOS),用于全自动、高灵敏度地连续测量黑碳(BC)气溶胶的光吸收。该仪器使用波长为565 nm的发光二极管(LED)监测自动前进的石英纤维滤带上的透光率变化。为了实现高灵敏度测量和更低的可检测光吸收系数,COSMOS使用双凸透镜和光学束管来维持高光强,并以1000 Hz的频率获取信号数据。此外,还对采样流速和光学单元温度进行主动控制。COSMOS的进样管线加热到400摄氏度,以有效挥发与BC内部混合的非难熔气溶胶成分。以其当前的形式,COSMOS提供的BC光吸收测量的检测限为0.45 Mm-1(对于烟尘为0.045 μg m-3),测量时间为10分钟。估计单元间的变化在±1%以内,表明其具有高重现性。由COSMOS测定的吸收系数与颗粒烟尘吸收光度计(PSAP)测定的吸收系数在1%以内相符(r² = 0.97)。在我们的操作条件下,10分钟积分数据的精度(±0.60 Mm-1)优于PSAP和黑碳测定仪。这些结果表明,与现有方法相比,COSMOS在基于滤光片的BC光吸收测量中实现了更低的检测限和更高的精度。