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Reservoir Eutrophication Improves in 1999water2000

Reservoir Eutrophication Improves in 1999water2000」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532 , 欄位標題的內容是Reservoir Eutrophication Improves in 1999 , 欄位摘要的內容是The EPA has finished compiling results from 1999 monitoring of reservoir water quality. The results show that water quality has improved since 1998 and six reservoirs, including Shimen reservoir, no longer show signs of eutrophication. However, there are still seven remaining reservoirs in eutrophication. While performing water quality monitoring, the EPA also evaluated the suitability of different assessment indicators for use in future monitoring work. The EPA has released results from 1999 monitoring of reservoir eutrophication, which reveal that of twenty reservoirs, seven are in eutrophication, twelve show normal nutrient levels, and one is oligotrophic (a lack of sufficient nutrients). Of the fourteen eutrophic reservoirs in 1998, nutrient levels have returned to normal in the Shimen, Baoshan, Yungho Shan, Mingteh, Tsengwen, and Nanhwa reservoirs. Monitoring was carried out through tests at Taiwan's twenty major water reservoirs. Test items included common physiochemical and eutrophication indicators. In addition to these tests, at the Liyu Tan (Miaoli) and Nanhwa (Tainan) reservoirs, monitoring of biological indicators was also carried out. Samples taken at three different times during the year1999 led to the following conclusions: water quality was highest at the Tehchi reservoir; water quality at the Sun Moon Lake and Nanhwa reservoirs was good, on the border between normal and oligotrophic; eutrophication is most serious at the Fengshan and Chengching Lake reservoirs, and is also serious at the Liyu Tan reservoir; changes in water quality were most dramatic at the Fei-Tsui reservoir; and the Chingmian and Baihe reservoirs also exhibited eutrophication. Water quality at other major reservoirs was normal. To better understand results from different assessment methods, the Trophic Diatom Index (TDI) was also experimented with as an expression of eutrophication conditions. The TDI series utilizes the phosphorous endurance of different diatoms (a type of algae) as an indicator to judge levels of eutrophication. In particular, the reaction of cohesive diatoms is able to show water quality over a relatively longer period of time. Analysis of diatom community structures reveals that eutrophication at Liyu Tan is more severe than Nanhwa, a result concurrent with assessment results from the commonly used Carlson Index. Looking at single and composite indicators from the Carlson Index over the years, most reservoirs in Taiwan tend towards low levels of chlorophyll. This means that most of Taiwan's reservoirs are easily affected by heavy rains that can wash large amounts of sediments and nutrient salts into the reservoir. This results in low transparency and overly high phosphate concentrations. However, chlorophyll concentrations, which should reflect the actual amount of eutrophic algae (and thus the degree of eutrophication), still tend to stay relatively lower in Taiwan, so the EPA is searching for locally feasible eutrophication indicators. The EPA pointed out that within the watersheds of most reservoirs, polluting activities such as the planting of fruit trees and chumming for fish are still common. The EPA will send monitoring results to reservoir managers and request their attention in reducing such sources of watershed pollution. , 欄位全文的內容是The EPA has finished compiling results from 1999 monitoring of reservoir water quality. The results show that water quality has improved since 1998 and six reservoirs, including Shimen reservoir, no longer show signs of eutrophication. However, there are still seven remaining reservoirs in eutrophication. While performing water quality monitoring, the EPA also evaluated the suitability of different assessment indicators for use in future monitoring work. The EPA has released results from 1999 monitoring of reservoir eutrophication, which reveal that of twenty reservoirs, seven are in eutrophication, twelve show normal nutrient levels, and one is oligotrophic (a lack of sufficient nutrients). Of the fourteen eutrophic reservoirs in 1998, nutrient levels have returned to normal in the Shimen, Baoshan, Yungho Shan, Mingteh, Tsengwen, and Nanhwa reservoirs. Monitoring was carried out through tests at Taiwan's twenty major water reservoirs. Test items included common physiochemical and eutrophication indicators. In addition to these tests, at the Liyu Tan (Miaoli) and Nanhwa (Tainan) reservoirs, monitoring of biological indicators was also carried out. Samples taken at three different times during the year1999 led to the following conclusions: water quality was highest at the Tehchi reservoir; water quality at the Sun Moon Lake and Nanhwa reservoirs was good, on the border between normal and oligotrophic; eutrophication is most serious at the Fengshan and Chengching Lake reservoirs, and is also serious at the Liyu Tan reservoir; changes in water quality were most dramatic at the Fei-Tsui reservoir; and the Chingmian and Baihe reservoirs also exhibited eutrophication. Water quality at other major reservoirs was normal. To better understand results from different assessment methods, the Trophic Diatom Index (TDI) was also experimented with as an expression of eutrophication conditions. The TDI series utilizes the phosphorous endurance of different diatoms (a type of algae) as an indicator to judge levels of eutrophication. In particular, the reaction of cohesive diatoms is able to show water quality over a relatively longer period of time. Analysis of diatom community structures reveals that eutrophication at Liyu Tan is more severe than Nanhwa, a result concurrent with assessment results from the commonly used Carlson Index. Looking at single and composite indicators from the Carlson Index over the years, most reservoirs in Taiwan tend towards low levels of chlorophyll. This means that most of Taiwan's reservoirs are easily affected by heavy rains that can wash large amounts of sediments and nutrient salts into the reservoir. This results in low transparency and overly high phosphate concentrations. However, chlorophyll concentrations, which should reflect the actual amount of eutrophic algae (and thus the degree of eutrophication), still tend to stay relatively lower in Taiwan, so the EPA is searching for locally feasible eutrophication indicators. The EPA pointed out that within the watersheds of most reservoirs, polluting activities such as the planting of fruit trees and chumming for fish are still common. The EPA will send monitoring results to reservoir managers and request their attention in reducing such sources of watershed pollution. , 欄位年度的內容是2000 , 欄位月份的內容是3 , 欄位卷的內容是3 , 欄位期的內容是10 , 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water , 欄位標題2的內容是Reservoir Eutrophication Improves in 1999 , 欄位檔案位置的內容是print/V3/V3-10

編號

532

標題

Reservoir Eutrophication Improves in 1999

摘要

The EPA has finished compiling results from 1999 monitoring of reservoir water quality. The results show that water quality has improved since 1998 and six reservoirs, including Shimen reservoir, no longer show signs of eutrophication. However, there are still seven remaining reservoirs in eutrophication. While performing water quality monitoring, the EPA also evaluated the suitability of different assessment indicators for use in future monitoring work. The EPA has released results from 1999 monitoring of reservoir eutrophication, which reveal that of twenty reservoirs, seven are in eutrophication, twelve show normal nutrient levels, and one is oligotrophic (a lack of sufficient nutrients). Of the fourteen eutrophic reservoirs in 1998, nutrient levels have returned to normal in the Shimen, Baoshan, Yungho Shan, Mingteh, Tsengwen, and Nanhwa reservoirs. Monitoring was carried out through tests at Taiwan's twenty major water reservoirs. Test items included common physiochemical and eutrophication indicators. In addition to these tests, at the Liyu Tan (Miaoli) and Nanhwa (Tainan) reservoirs, monitoring of biological indicators was also carried out. Samples taken at three different times during the year1999 led to the following conclusions: water quality was highest at the Tehchi reservoir; water quality at the Sun Moon Lake and Nanhwa reservoirs was good, on the border between normal and oligotrophic; eutrophication is most serious at the Fengshan and Chengching Lake reservoirs, and is also serious at the Liyu Tan reservoir; changes in water quality were most dramatic at the Fei-Tsui reservoir; and the Chingmian and Baihe reservoirs also exhibited eutrophication. Water quality at other major reservoirs was normal. To better understand results from different assessment methods, the Trophic Diatom Index (TDI) was also experimented with as an expression of eutrophication conditions. The TDI series utilizes the phosphorous endurance of different diatoms (a type of algae) as an indicator to judge levels of eutrophication. In particular, the reaction of cohesive diatoms is able to show water quality over a relatively longer period of time. Analysis of diatom community structures reveals that eutrophication at Liyu Tan is more severe than Nanhwa, a result concurrent with assessment results from the commonly used Carlson Index. Looking at single and composite indicators from the Carlson Index over the years, most reservoirs in Taiwan tend towards low levels of chlorophyll. This means that most of Taiwan's reservoirs are easily affected by heavy rains that can wash large amounts of sediments and nutrient salts into the reservoir. This results in low transparency and overly high phosphate concentrations. However, chlorophyll concentrations, which should reflect the actual amount of eutrophic algae (and thus the degree of eutrophication), still tend to stay relatively lower in Taiwan, so the EPA is searching for locally feasible eutrophication indicators. The EPA pointed out that within the watersheds of most reservoirs, polluting activities such as the planting of fruit trees and chumming for fish are still common. The EPA will send monitoring results to reservoir managers and request their attention in reducing such sources of watershed pollution.

全文

The EPA has finished compiling results from 1999 monitoring of reservoir water quality. The results show that water quality has improved since 1998 and six reservoirs, including Shimen reservoir, no longer show signs of eutrophication. However, there are still seven remaining reservoirs in eutrophication. While performing water quality monitoring, the EPA also evaluated the suitability of different assessment indicators for use in future monitoring work. The EPA has released results from 1999 monitoring of reservoir eutrophication, which reveal that of twenty reservoirs, seven are in eutrophication, twelve show normal nutrient levels, and one is oligotrophic (a lack of sufficient nutrients). Of the fourteen eutrophic reservoirs in 1998, nutrient levels have returned to normal in the Shimen, Baoshan, Yungho Shan, Mingteh, Tsengwen, and Nanhwa reservoirs. Monitoring was carried out through tests at Taiwan's twenty major water reservoirs. Test items included common physiochemical and eutrophication indicators. In addition to these tests, at the Liyu Tan (Miaoli) and Nanhwa (Tainan) reservoirs, monitoring of biological indicators was also carried out. Samples taken at three different times during the year1999 led to the following conclusions: water quality was highest at the Tehchi reservoir; water quality at the Sun Moon Lake and Nanhwa reservoirs was good, on the border between normal and oligotrophic; eutrophication is most serious at the Fengshan and Chengching Lake reservoirs, and is also serious at the Liyu Tan reservoir; changes in water quality were most dramatic at the Fei-Tsui reservoir; and the Chingmian and Baihe reservoirs also exhibited eutrophication. Water quality at other major reservoirs was normal. To better understand results from different assessment methods, the Trophic Diatom Index (TDI) was also experimented with as an expression of eutrophication conditions. The TDI series utilizes the phosphorous endurance of different diatoms (a type of algae) as an indicator to judge levels of eutrophication. In particular, the reaction of cohesive diatoms is able to show water quality over a relatively longer period of time. Analysis of diatom community structures reveals that eutrophication at Liyu Tan is more severe than Nanhwa, a result concurrent with assessment results from the commonly used Carlson Index. Looking at single and composite indicators from the Carlson Index over the years, most reservoirs in Taiwan tend towards low levels of chlorophyll. This means that most of Taiwan's reservoirs are easily affected by heavy rains that can wash large amounts of sediments and nutrient salts into the reservoir. This results in low transparency and overly high phosphate concentrations. However, chlorophyll concentrations, which should reflect the actual amount of eutrophic algae (and thus the degree of eutrophication), still tend to stay relatively lower in Taiwan, so the EPA is searching for locally feasible eutrophication indicators. The EPA pointed out that within the watersheds of most reservoirs, polluting activities such as the planting of fruit trees and chumming for fish are still common. The EPA will send monitoring results to reservoir managers and request their attention in reducing such sources of watershed pollution.

年度

2000

月份

3

3

10

順序

1

倒序

2

分類

water

標題2

Reservoir Eutrophication Improves in 1999

檔案位置

print/V3/V3-10

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