Fine Particulate Matter (PM2.5) Monitoring in TaiwanEnvironmental Monitoring
「Fine Particulate Matter (PM2.5) Monitoring in TaiwanEnvironmental Monitoring」於資料集「MajorEnvironmentalPolicies」由單位「行政院環境保護署」的陳小姐所提供,聯繫電話是(02)23117722#2753,(02)23117722#2756,最近更新時間為:2023-07-30 01:03:45。 欄位編號的內容是3553 , 欄位標題的內容是Fine Particulate Matter (PM2.5) Monitoring in Taiwan , 欄位摘要的內容是Environmental Monitoring
Fine Particulate Matter (PM2.5) Monitoring in Taiwan
Fine particulate matter (PM2.5) has become a major issue of public concern in recent years. In addition to taking more active approaches to improve air quality, such as setting air pollution reduction goals, promoting the IoT (Internet of Things) for air quality monitoring and enhancing monitoring efforts, monitoring capacity is also being built up to provide references for formulating control measures that will better protect the public’s health. , 欄位全文的內容是Fine Particulate Matter (PM2.5) Monitoring in Taiwan
Fine particulate matter (PM2.5) has become a major issue of public concern in recent years. In addition to taking more active approaches to improve air quality, such as setting air pollution reduction goals, promoting the IoT (Internet of Things) for air quality monitoring and enhancing monitoring efforts, monitoring capacity is also being built up to provide references for formulating control measures that will better protect the public’s health.
Monitoring data is the basis for air quality protection and air pollution control work. Effectively determining the status of air quality requires long-term operation and maintenance of monitoring systems along with comprehensive support in order to gather reliable data.
Building up air quality monitoring capacity
To acquire accurate and reliable real-time monitoring data, the EPA will build up its monitoring capacity by heading in the following directions.
Promoting the air quality monitoring IoT
Environmental quality monitoring IoT is a new challenge taken up by the EPA, which has proposed the Environmental Quality Monitoring IoT Plan to the Executive Yuan. Under the proposal, the EPA will integrate all of Taiwan’s air quality monitoring resources, including air quality monitoring of smokestacks and in industrial areas, information disclosure for public access, using IoT technology to develop microsensors, and establishing a smart urban and rural monitoring IoT demonstration project. The demonstration project will conduct small-scale monitoring operations for certain pollutants so that the general public can participate in reducing pollution and help safeguard their own well-being.
The IoT plan will be carried out from 2017 to 2020. It will focus on improving air quality sensors, establishing a sensor testing and certification platform and system, expanding monitoring spots, integrating systems of monitoring stations and sensing spots, creating a smart environmental monitoring data center, developing a universal application service and integration platform, improving environmental enforcement, and transforming the operation systems into smart-working mode.
The EPA hopes to achieve the following goals:
1. Improve the accuracy of environmental governance information: by meeting the demand for accurate local environmental data.
2. Improve air quality forecasts: Improving forecasts from the regional down to township level, pinpointing abnormal weather patterns to facilitate effective responses and to implement pollution reduction management.
3. Smart management: Improving environmental law enforcement through tracking pollution sources in pollution hotspots and to improve the overall environmental quality via the IoT.
The Environmental Quality Monitoring IoT Plan launched into full force in 2017. The EPA will focus on establishing basic infrastructure and operating systems by setting 500 air quality monitoring spots in central Taiwan, promoting research and development, running pilot tests, and analyzing data.
Enhancing air quality monitoring
To improve the performance of air quality monitoring, the EPA has been keeping 76 monitoring stations nationwide running smoothly and conducting PM2.5 monitoring at 31 of them. Data usability is higher than 96% after quality assurance and quality control (QA/QC) checks. All monitoring data is published on the EPA website in real time, and the Air Quality Index (AQI) for the following three days is forecast twice daily. In addition, an early alarm mechanism is in place to remind people to take extra precautions when severe transboundary pollutants such as those in dust storms and haze from China appear between November and May.
Using the Air Quality Index to help safeguard public health
The EPA has announced that it will use the AQI to help citizens understand real time air quality and its effects on humans, and to recommend the appropriate practices for reducing health impacts. Based on different levels of impact on human health, monitoring data for O3, PM2.5, PM10, CO, SO2, and NO2 in the air on any given day is each converted into a sub-index, among which the highest reading is chosen as the AQI for that day.
There are six AQI levels: good, moderate, unhealthy for sensitive groups, unhealthy, very unhealthy, and hazardous. All air quality monitoring data and AQI readings are available in real time on the website (http://taqm.epa.gov.tw/). The following table shows AQI levels and the respective recommendations for the public.
Future outlook
Air quality control should be based on safeguarding public health. Therefore, the EPA will tackle air pollution with more active approaches and has set national air pollution improvement goals, aiming to cut down the number of red alert days by 20% within two years, and by 50% within four years, in order to lower the exposure to PM2.5. , 欄位年度的內容是2017 , 欄位月份的內容是5 , 欄位卷的內容是20 , 欄位期的內容是5 , 欄位順序的內容是1 , 欄位倒序的內容是2 , 欄位分類的內容是Environmental Monitoring , 欄位標題2的內容是Fine Particulate Matter (PM2.5) Monitoring in Taiwan , 欄位檔案位置的內容是V20/V20-5 。
編號
3553
標題
Fine Particulate Matter (PM2.5) Monitoring in Taiwan
摘要
Environmental Monitoring Fine Particulate Matter (PM2.5) Monitoring in Taiwan Fine particulate matter (PM2.5) has become a major issue of public concern in recent years. In addition to taking more active approaches to improve air quality, such as setting air pollution reduction goals, promoting the IoT (Internet of Things) for air quality monitoring and enhancing monitoring efforts, monitoring capacity is also being built up to provide references for formulating control measures that will better protect the public’s health.
全文
Fine Particulate Matter (PM2.5) Monitoring in Taiwan Fine particulate matter (PM2.5) has become a major issue of public concern in recent years. In addition to taking more active approaches to improve air quality, such as setting air pollution reduction goals, promoting the IoT (Internet of Things) for air quality monitoring and enhancing monitoring efforts, monitoring capacity is also being built up to provide references for formulating control measures that will better protect the public’s health. Monitoring data is the basis for air quality protection and air pollution control work. Effectively determining the status of air quality requires long-term operation and maintenance of monitoring systems along with comprehensive support in order to gather reliable data. Building up air quality monitoring capacity To acquire accurate and reliable real-time monitoring data, the EPA will build up its monitoring capacity by heading in the following directions. Promoting the air quality monitoring IoT Environmental quality monitoring IoT is a new challenge taken up by the EPA, which has proposed the Environmental Quality Monitoring IoT Plan to the Executive Yuan. Under the proposal, the EPA will integrate all of Taiwan’s air quality monitoring resources, including air quality monitoring of smokestacks and in industrial areas, information disclosure for public access, using IoT technology to develop microsensors, and establishing a smart urban and rural monitoring IoT demonstration project. The demonstration project will conduct small-scale monitoring operations for certain pollutants so that the general public can participate in reducing pollution and help safeguard their own well-being. The IoT plan will be carried out from 2017 to 2020. It will focus on improving air quality sensors, establishing a sensor testing and certification platform and system, expanding monitoring spots, integrating systems of monitoring stations and sensing spots, creating a smart environmental monitoring data center, developing a universal application service and integration platform, improving environmental enforcement, and transforming the operation systems into smart-working mode. The EPA hopes to achieve the following goals: 1. Improve the accuracy of environmental governance information: by meeting the demand for accurate local environmental data. 2. Improve air quality forecasts: Improving forecasts from the regional down to township level, pinpointing abnormal weather patterns to facilitate effective responses and to implement pollution reduction management. 3. Smart management: Improving environmental law enforcement through tracking pollution sources in pollution hotspots and to improve the overall environmental quality via the IoT. The Environmental Quality Monitoring IoT Plan launched into full force in 2017. The EPA will focus on establishing basic infrastructure and operating systems by setting 500 air quality monitoring spots in central Taiwan, promoting research and development, running pilot tests, and analyzing data. Enhancing air quality monitoring To improve the performance of air quality monitoring, the EPA has been keeping 76 monitoring stations nationwide running smoothly and conducting PM2.5 monitoring at 31 of them. Data usability is higher than 96% after quality assurance and quality control (QA/QC) checks. All monitoring data is published on the EPA website in real time, and the Air Quality Index (AQI) for the following three days is forecast twice daily. In addition, an early alarm mechanism is in place to remind people to take extra precautions when severe transboundary pollutants such as those in dust storms and haze from China appear between November and May. Using the Air Quality Index to help safeguard public health The EPA has announced that it will use the AQI to help citizens understand real time air quality and its effects on humans, and to recommend the appropriate practices for reducing health impacts. Based on different levels of impact on human health, monitoring data for O3, PM2.5, PM10, CO, SO2, and NO2 in the air on any given day is each converted into a sub-index, among which the highest reading is chosen as the AQI for that day. There are six AQI levels: good, moderate, unhealthy for sensitive groups, unhealthy, very unhealthy, and hazardous. All air quality monitoring data and AQI readings are available in real time on the website (http://taqm.epa.gov.tw/). The following table shows AQI levels and the respective recommendations for the public. Future outlook Air quality control should be based on safeguarding public health. Therefore, the EPA will tackle air pollution with more active approaches and has set national air pollution improvement goals, aiming to cut down the number of red alert days by 20% within two years, and by 50% within four years, in order to lower the exposure to PM2.5.
年度
2017
月份
5
卷
20
期
5
順序
1
倒序
2
分類
Environmental Monitoring
標題2
Fine Particulate Matter (PM2.5) Monitoring in Taiwan
檔案位置
V20/V20-5
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