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Standardization of Soil Pollution Analysis MethodsEnvironmental Analysis

Standardization of Soil Pollution Analysis MethodsEnvironmental Analysis」於資料集「Environmental Policy Monthly」由單位「行政院環境保護署」的楊先生所提供,聯繫電話是(02)23117722#2217,(02)23117722#2216,最近更新時間為:2022-01-15 01:13:03。 欄位編號的內容是905 , 欄位標題的內容是Standardization of Soil Pollution Analysis Methods , 欄位摘要的內容是The EPA has been gradually completing soil pollution standards and methods to be used in standardized analysis. In accordance with the Soil and Groundwater Pollution Remediation Act future soil pollution analysis work will be conducted by commissioned analysis organizations that have been licensed by the EPA. The EPA appeals to all analysis organizations wishing to take advantage of this opportunity to quickly submit license applications. According to General Director Wang Pih, the newly-appointed head of the EPA’s National Institute of Environmental Analysis, the Institute has successively completed drafting of standardized soil pollution analysis methods providing a unified basis for soil analysis in Taiwan. These methods not only comply with international standards, but also meet domestic needs and conform to domestic soil geology and pollution types. Though small in land area, Taiwan has a diverse and complex geology. As an illustration, Taiwan possesses eleven of the twelve soil types contained in the US Department of Agriculture soil classification scheme. To insure that soil samples collected by agencies and organizations are representative, the EPA has compiled the document Soil Sampling Methods. This document, which explicitly specifies sampling equipment, materials, methods, and relevant QC and safety measures, is intended to enable the collection of high-quality, low-cost, representative samples. The EPA currently lists 39 soil pollutants as controlled, including eight heavy metals, fifteen VOCs, eight pesticides, six semi-volatile organic compounds (SVOCs), dioxin and PCBs. Of these items, heavy metals attract the most attention. Apart from often accumulating to high concentrations, possessing low mobility, and not being decomposed by microbes, heavy metals are difficult to clean up, may be absorbed by crops and enter the food chain, and can be concentrated by living organisms. This accounts for the severe threat they pose to human health. Past efforts to survey the heavy metal content of soils in Taiwan mainly sought to understand the degree of danger these pollutants posed to the food chain. A weak acid (0.1M hydrochloric acid) was consequently used as the extraction solvent for determining the absorption of heavy metals by crops. In contrast, the current Soil Pollution Control Standards (土壤污染管制標準) take into consideration the full environmental effects and impacts of heavy metals, and therefore specifies full quantitative values as control standards. For this reason, the EPA announced in January 2002 that a strong acid—aqua regia— will be henceforth used as a standard solvent in soil tests. EPA has announced standard methods of analysis for the presence of the eight heavy metals—lead, cadmium, copper, zinc, nickel, chromium, arsenic and mercury—in the soil. In addition, the EPA plans to announce waste analysis methods for the remaining 31 controlled organic pollutants. Future soil pollution survey work shall proceed smoothly now that up-to-date analysis methods are available. General Director Pih has therefore appealed to analysis companies and academic organizations to quickly apply to central government authorities for licensing and soil analysis laboratory certification. Doing so will enable them to take part in survey and cleanup work at soil pollution sites slated for remediation. For more information, please visit the National Institute of Environmental Analysis website at http://www.niea.gov.tw/analysis/epa_www.htm or call the Institute at 03-491-5818 ext. 4409. , 欄位全文的內容是The EPA has been gradually completing soil pollution standards and methods to be used in standardized analysis. In accordance with the Soil and Groundwater Pollution Remediation Act future soil pollution analysis work will be conducted by commissioned analysis organizations that have been licensed by the EPA. The EPA appeals to all analysis organizations wishing to take advantage of this opportunity to quickly submit license applications. According to General Director Wang Pih, the newly-appointed head of the EPA’s National Institute of Environmental Analysis, the Institute has successively completed drafting of standardized soil pollution analysis methods providing a unified basis for soil analysis in Taiwan. These methods not only comply with international standards, but also meet domestic needs and conform to domestic soil geology and pollution types. Though small in land area, Taiwan has a diverse and complex geology. As an illustration, Taiwan possesses eleven of the twelve soil types contained in the US Department of Agriculture soil classification scheme. To insure that soil samples collected by agencies and organizations are representative, the EPA has compiled the document Soil Sampling Methods. This document, which explicitly specifies sampling equipment, materials, methods, and relevant QC and safety measures, is intended to enable the collection of high-quality, low-cost, representative samples. The EPA currently lists 39 soil pollutants as controlled, including eight heavy metals, fifteen VOCs, eight pesticides, six semi-volatile organic compounds (SVOCs), dioxin and PCBs. Of these items, heavy metals attract the most attention. Apart from often accumulating to high concentrations, possessing low mobility, and not being decomposed by microbes, heavy metals are difficult to clean up, may be absorbed by crops and enter the food chain, and can be concentrated by living organisms. This accounts for the severe threat they pose to human health. Past efforts to survey the heavy metal content of soils in Taiwan mainly sought to understand the degree of danger these pollutants posed to the food chain. A weak acid (0.1M hydrochloric acid) was consequently used as the extraction solvent for determining the absorption of heavy metals by crops. In contrast, the current Soil Pollution Control Standards (土壤污染管制標準) take into consideration the full environmental effects and impacts of heavy metals, and therefore specifies full quantitative values as control standards. For this reason, the EPA announced in January 2002 that a strong acid—aqua regia— will be henceforth used as a standard solvent in soil tests. EPA has announced standard methods of analysis for the presence of the eight heavy metals—lead, cadmium, copper, zinc, nickel, chromium, arsenic and mercury—in the soil. In addition, the EPA plans to announce waste analysis methods for the remaining 31 controlled organic pollutants. Future soil pollution survey work shall proceed smoothly now that up-to-date analysis methods are available. General Director Pih has therefore appealed to analysis companies and academic organizations to quickly apply to central government authorities for licensing and soil analysis laboratory certification. Doing so will enable them to take part in survey and cleanup work at soil pollution sites slated for remediation. For more information, please visit the National Institute of Environmental Analysis website at http://www.niea.gov.tw/analysis/epa_www.htm or call the Institute at 03-491-5818 ext. 4409. , 欄位年度的內容是2002 , 欄位月份的內容是5 , 欄位卷的內容是5 , 欄位期的內容是3 , 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 Analysis , 欄位標題2的內容是Standardization of Soil Pollution Analysis Methods , 欄位檔案位置的內容是print/V5/V5-03

編號

905

標題

Standardization of Soil Pollution Analysis Methods

摘要

The EPA has been gradually completing soil pollution standards and methods to be used in standardized analysis. In accordance with the Soil and Groundwater Pollution Remediation Act future soil pollution analysis work will be conducted by commissioned analysis organizations that have been licensed by the EPA. The EPA appeals to all analysis organizations wishing to take advantage of this opportunity to quickly submit license applications. According to General Director Wang Pih, the newly-appointed head of the EPA’s National Institute of Environmental Analysis, the Institute has successively completed drafting of standardized soil pollution analysis methods providing a unified basis for soil analysis in Taiwan. These methods not only comply with international standards, but also meet domestic needs and conform to domestic soil geology and pollution types. Though small in land area, Taiwan has a diverse and complex geology. As an illustration, Taiwan possesses eleven of the twelve soil types contained in the US Department of Agriculture soil classification scheme. To insure that soil samples collected by agencies and organizations are representative, the EPA has compiled the document Soil Sampling Methods. This document, which explicitly specifies sampling equipment, materials, methods, and relevant QC and safety measures, is intended to enable the collection of high-quality, low-cost, representative samples. The EPA currently lists 39 soil pollutants as controlled, including eight heavy metals, fifteen VOCs, eight pesticides, six semi-volatile organic compounds (SVOCs), dioxin and PCBs. Of these items, heavy metals attract the most attention. Apart from often accumulating to high concentrations, possessing low mobility, and not being decomposed by microbes, heavy metals are difficult to clean up, may be absorbed by crops and enter the food chain, and can be concentrated by living organisms. This accounts for the severe threat they pose to human health. Past efforts to survey the heavy metal content of soils in Taiwan mainly sought to understand the degree of danger these pollutants posed to the food chain. A weak acid (0.1M hydrochloric acid) was consequently used as the extraction solvent for determining the absorption of heavy metals by crops. In contrast, the current Soil Pollution Control Standards (土壤污染管制標準) take into consideration the full environmental effects and impacts of heavy metals, and therefore specifies full quantitative values as control standards. For this reason, the EPA announced in January 2002 that a strong acid—aqua regia— will be henceforth used as a standard solvent in soil tests. EPA has announced standard methods of analysis for the presence of the eight heavy metals—lead, cadmium, copper, zinc, nickel, chromium, arsenic and mercury—in the soil. In addition, the EPA plans to announce waste analysis methods for the remaining 31 controlled organic pollutants. Future soil pollution survey work shall proceed smoothly now that up-to-date analysis methods are available. General Director Pih has therefore appealed to analysis companies and academic organizations to quickly apply to central government authorities for licensing and soil analysis laboratory certification. Doing so will enable them to take part in survey and cleanup work at soil pollution sites slated for remediation. For more information, please visit the National Institute of Environmental Analysis website at http://www.niea.gov.tw/analysis/epa_www.htm or call the Institute at 03-491-5818 ext. 4409.

全文

The EPA has been gradually completing soil pollution standards and methods to be used in standardized analysis. In accordance with the Soil and Groundwater Pollution Remediation Act future soil pollution analysis work will be conducted by commissioned analysis organizations that have been licensed by the EPA. The EPA appeals to all analysis organizations wishing to take advantage of this opportunity to quickly submit license applications. According to General Director Wang Pih, the newly-appointed head of the EPA’s National Institute of Environmental Analysis, the Institute has successively completed drafting of standardized soil pollution analysis methods providing a unified basis for soil analysis in Taiwan. These methods not only comply with international standards, but also meet domestic needs and conform to domestic soil geology and pollution types. Though small in land area, Taiwan has a diverse and complex geology. As an illustration, Taiwan possesses eleven of the twelve soil types contained in the US Department of Agriculture soil classification scheme. To insure that soil samples collected by agencies and organizations are representative, the EPA has compiled the document Soil Sampling Methods. This document, which explicitly specifies sampling equipment, materials, methods, and relevant QC and safety measures, is intended to enable the collection of high-quality, low-cost, representative samples. The EPA currently lists 39 soil pollutants as controlled, including eight heavy metals, fifteen VOCs, eight pesticides, six semi-volatile organic compounds (SVOCs), dioxin and PCBs. Of these items, heavy metals attract the most attention. Apart from often accumulating to high concentrations, possessing low mobility, and not being decomposed by microbes, heavy metals are difficult to clean up, may be absorbed by crops and enter the food chain, and can be concentrated by living organisms. This accounts for the severe threat they pose to human health. Past efforts to survey the heavy metal content of soils in Taiwan mainly sought to understand the degree of danger these pollutants posed to the food chain. A weak acid (0.1M hydrochloric acid) was consequently used as the extraction solvent for determining the absorption of heavy metals by crops. In contrast, the current Soil Pollution Control Standards (土壤污染管制標準) take into consideration the full environmental effects and impacts of heavy metals, and therefore specifies full quantitative values as control standards. For this reason, the EPA announced in January 2002 that a strong acid—aqua regia— will be henceforth used as a standard solvent in soil tests. EPA has announced standard methods of analysis for the presence of the eight heavy metals—lead, cadmium, copper, zinc, nickel, chromium, arsenic and mercury—in the soil. In addition, the EPA plans to announce waste analysis methods for the remaining 31 controlled organic pollutants. Future soil pollution survey work shall proceed smoothly now that up-to-date analysis methods are available. General Director Pih has therefore appealed to analysis companies and academic organizations to quickly apply to central government authorities for licensing and soil analysis laboratory certification. Doing so will enable them to take part in survey and cleanup work at soil pollution sites slated for remediation. For more information, please visit the National Institute of Environmental Analysis website at http://www.niea.gov.tw/analysis/epa_www.htm or call the Institute at 03-491-5818 ext. 4409.

年度

2002

月份

5

5

3

順序

1

倒序

2

分類

Environmental Analysis

標題2

Standardization of Soil Pollution Analysis Methods

檔案位置

print/V5/V5-03

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