Project Title2012By referring to the ISO standard of 10801 and 1
「Project Title2012By referring to the ISO standard of 10801 and 1」於資料集「EPQSummary_EnvironmentalInformationSystem」由單位「行政院環境保護署」的陳先生所提供,聯繫電話是02-2311-7722#2386,最近更新時間為:2023-07-30 01:01:46。 欄位Project Title的內容是 , 欄位Project Subject的內容是By referring to the ISO standard of 10801 and 10808, this study developed
an analytics platform which enables the generation, monitoring, measurement
and chemical analysis of nanoparticles intended to be used for inhalation toxicity
test. Silver and Zinc oxide were used in this analytic platform. Before
characterizing particles in platform, the standardized PSL and silver particle
were used to calibrate and compare the particle size distribution and number
concentration measured by the SMPS. Results show that the SMPS measures the
particle size distribution and number concentrations accurately with a maximum
deviation of 5 % to the nominal diameter of the PSL particle. The performance
of FMPS was also evaluated by comparing its size distribution measurement of
silver aggregate particles with validated SMPS. Results indicate that the
difference between these two instruments is mainly influenced by the particle
morphology, where the measurements were more correlated as the particle
morphology more approach to sphere. The effective density of silver
monodisperse particles ranging from 20 to 120 nm was measured by the APM. It
was found the effective density increased with increasing sintering temperature
and approached to the silver bulk density of 10.53 g/cm3
when the sintering temperature was raised to 500 oC.
For example, the particle effective density of 20 and 120 nm was increased from 7.56 to 10.51 g/cm3 and 0.98 to 1.89 g/cm3 , respectively, when the sintering temperature was raised from 100 to 500oC.
A NCTU micro-orifice cascade impactor (MCI) whose nozzles are
smoother than those of the MSP nozzle plates was developed. Calibration results
show that the d pa50 of the 7, 8 and 9-th stage of the MCI are 319, 181 and 96 nm,
which are more close to the nominal value as compared to the MSP MOUCI.
Particle loss tests show that the inter stage losses of the NCTU MCI are less than
those of the MSP MOUDI. No clogging in the new nozzle plate was observed
after high concentration particle loading. Field sampling results show that the
mass distribution measured by the NCTU MCI is agreed well with those by the
MSP MOUDI.
The sampling results conducted at Xinzhuang, Zhongshan and Zhudong air
quality monitoring stations (AQMS) were analyzed with the real-time
meteorological and pollution data obtained from AQMS. All the samples were
also distributed to Dr. Shiu of Research Center of Environmental Changes to
conduct the metal analysis by using the LA-ICP-MS or ICP-MS. The PM 2.5 mass
data of present study were compared with those of the PM 2.5 sampling project
conducted by the National Central University (NCU) and AQMS. Results show
that both of the PM 10 and PM 2.5 concentrations measured by the AQMS are 40 %
higher than those of the present study and the PM 2.5 concentrations measured by
the NCU are 17 % lower than the present study.
A PAH sampling system which composed of AD, MOUDI and PUF in
series was developed. The collection efficiency of gaseous PAH, positive and
negative artifacts and particle loss for the AD and the sampling performance of
the AD-MOUDI-PUF were evaluated. Results show that more accurate results
with
.15PAHs concentration on PM 0.1 filter in the MOUDI will obtained when
the AD was used to remove gaseous PAHs. A large amount of gaseous PAHs
will absorb by the PUF and further lead to the positive artifacts without the AD.
For example, 50 % positive artifacts will be created while quartz fiber filter was
employed. , 欄位Project Year的內容是2012 , 欄位Organizer的內容是 , 欄位Executive Unit的內容是國立交通大學環境工程研究所 , 欄位Reporting download URL的內容是https://epq.epa.gov.tw/ProjectDoc/FileDownload?fid=86497&proj_id=1011348969&doc_kind=1 , 欄位Publish Date的內容是20150401 。
Project Title
Project Subject
By referring to the ISO standard of 10801 and 10808, this study developed an analytics platform which enables the generation, monitoring, measurement and chemical analysis of nanoparticles intended to be used for inhalation toxicity test. Silver and Zinc oxide were used in this analytic platform. Before characterizing particles in platform, the standardized PSL and silver particle were used to calibrate and compare the particle size distribution and number concentration measured by the SMPS. Results show that the SMPS measures the particle size distribution and number concentrations accurately with a maximum deviation of 5 % to the nominal diameter of the PSL particle. The performance of FMPS was also evaluated by comparing its size distribution measurement of silver aggregate particles with validated SMPS. Results indicate that the difference between these two instruments is mainly influenced by the particle morphology, where the measurements were more correlated as the particle morphology more approach to sphere. The effective density of silver monodisperse particles ranging from 20 to 120 nm was measured by the APM. It was found the effective density increased with increasing sintering temperature and approached to the silver bulk density of 10.53 g/cm3 when the sintering temperature was raised to 500 oC. For example, the particle effective density of 20 and 120 nm was increased from 7.56 to 10.51 g/cm3 and 0.98 to 1.89 g/cm3 , respectively, when the sintering temperature was raised from 100 to 500oC. A NCTU micro-orifice cascade impactor (MCI) whose nozzles are smoother than those of the MSP nozzle plates was developed. Calibration results show that the d pa50 of the 7, 8 and 9-th stage of the MCI are 319, 181 and 96 nm, which are more close to the nominal value as compared to the MSP MOUCI. Particle loss tests show that the inter stage losses of the NCTU MCI are less than those of the MSP MOUDI. No clogging in the new nozzle plate was observed after high concentration particle loading. Field sampling results show that the mass distribution measured by the NCTU MCI is agreed well with those by the MSP MOUDI. The sampling results conducted at Xinzhuang, Zhongshan and Zhudong air quality monitoring stations (AQMS) were analyzed with the real-time meteorological and pollution data obtained from AQMS. All the samples were also distributed to Dr. Shiu of Research Center of Environmental Changes to conduct the metal analysis by using the LA-ICP-MS or ICP-MS. The PM 2.5 mass data of present study were compared with those of the PM 2.5 sampling project conducted by the National Central University (NCU) and AQMS. Results show that both of the PM 10 and PM 2.5 concentrations measured by the AQMS are 40 % higher than those of the present study and the PM 2.5 concentrations measured by the NCU are 17 % lower than the present study. A PAH sampling system which composed of AD, MOUDI and PUF in series was developed. The collection efficiency of gaseous PAH, positive and negative artifacts and particle loss for the AD and the sampling performance of the AD-MOUDI-PUF were evaluated. Results show that more accurate results with .15PAHs concentration on PM 0.1 filter in the MOUDI will obtained when the AD was used to remove gaseous PAHs. A large amount of gaseous PAHs will absorb by the PUF and further lead to the positive artifacts without the AD. For example, 50 % positive artifacts will be created while quartz fiber filter was employed.
Project Year
2012
Organizer
Executive Unit
國立交通大學環境工程研究所
Reporting download URL
https://epq.epa.gov.tw/ProjectDoc/FileDownload?fid=86497&proj_id=1011348969&doc_kind=1
Publish Date
20150401
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