Influencing Factors Analysis of Taiwan Eutrophicated Reservoirs
Treatment cost and quality of domestic water are highly correlated with raw water quality in reservoirs. This study aims to identify the key factors that influence the trophic state levels and correlations among Carlson trophic state index (CTSI) levels, water quality parameters and weather factors...
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doaj-37ca05a8754a4042b5a35c18bf01dde22020-11-25T02:07:46ZengMDPI AGWater2073-44412020-05-01121325132510.3390/w12051325Influencing Factors Analysis of Taiwan Eutrophicated ReservoirsMarsha Savira Agatha Putri0Jr-Lin Lin1Lin-Han Chiang Hsieh2Yasmin Zafirah3Gerry Andhikaputra4Yu-Chun Wang5Department of Environmental Engineering, College of Engineering, Chung Yuan Christian University, 200 Chung-Pei Road, Zhongli 320, TaiwanDepartment of Environmental Engineering, College of Engineering, Chung Yuan Christian University, 200 Chung-Pei Road, Zhongli 320, TaiwanDepartment of Environmental Engineering, College of Engineering, Chung Yuan Christian University, 200 Chung-Pei Road, Zhongli 320, TaiwanDepartment of Environmental Engineering, College of Engineering, Chung Yuan Christian University, 200 Chung-Pei Road, Zhongli 320, TaiwanDepartment of Environmental Engineering, College of Engineering, Chung Yuan Christian University, 200 Chung-Pei Road, Zhongli 320, TaiwanDepartment of Environmental Engineering, College of Engineering, Chung Yuan Christian University, 200 Chung-Pei Road, Zhongli 320, TaiwanTreatment cost and quality of domestic water are highly correlated with raw water quality in reservoirs. This study aims to identify the key factors that influence the trophic state levels and correlations among Carlson trophic state index (CTSI) levels, water quality parameters and weather factors in four major reservoirs in Taiwan from 2000 to 2017. Weather (e.g., air temperature, relative humidity, total precipitation, sunlight percentage and cloud cover) and water quality parameters (e.g., pH, chemical oxygen demand, suspended solids (SS), ammonia, total hardness, nitrate, nitrite and water temperature) were included in the principal component analysis and absolute principal component score models to evaluate the main governing factors of the trophic state levels (e.g., CTSI). SS were washed out by precipitation, thereby influencing the reservoir transparency tremendously and contributing over 50% to the CTSI level in eutrophicated reservoirs (e.g., the Shihmen and Chengchinghu Reservoirs). CTSI levels in the mesotrophic reservoir (e.g., Liyutan Reservoir) had strong correlation with chlorophyll-a and total phosphorus. Results show that rainfall/weather factors were the key driving factors that affected the CTSI levels in Taiwan eutrophicated reservoirs, indicating the need to consider basin management and the impacts of extreme precipitation in reservoir management and future policymaking.https://www.mdpi.com/2073-4441/12/5/1325reservoireutrophicationsource apportionmentCarlson trophic state index |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marsha Savira Agatha Putri Jr-Lin Lin Lin-Han Chiang Hsieh Yasmin Zafirah Gerry Andhikaputra Yu-Chun Wang |
spellingShingle |
Marsha Savira Agatha Putri Jr-Lin Lin Lin-Han Chiang Hsieh Yasmin Zafirah Gerry Andhikaputra Yu-Chun Wang Influencing Factors Analysis of Taiwan Eutrophicated Reservoirs Water reservoir eutrophication source apportionment Carlson trophic state index |
author_facet |
Marsha Savira Agatha Putri Jr-Lin Lin Lin-Han Chiang Hsieh Yasmin Zafirah Gerry Andhikaputra Yu-Chun Wang |
author_sort |
Marsha Savira Agatha Putri |
title |
Influencing Factors Analysis of Taiwan Eutrophicated Reservoirs |
title_short |
Influencing Factors Analysis of Taiwan Eutrophicated Reservoirs |
title_full |
Influencing Factors Analysis of Taiwan Eutrophicated Reservoirs |
title_fullStr |
Influencing Factors Analysis of Taiwan Eutrophicated Reservoirs |
title_full_unstemmed |
Influencing Factors Analysis of Taiwan Eutrophicated Reservoirs |
title_sort |
influencing factors analysis of taiwan eutrophicated reservoirs |
publisher |
MDPI AG |
series |
Water |
issn |
2073-4441 |
publishDate |
2020-05-01 |
description |
Treatment cost and quality of domestic water are highly correlated with raw water quality in reservoirs. This study aims to identify the key factors that influence the trophic state levels and correlations among Carlson trophic state index (CTSI) levels, water quality parameters and weather factors in four major reservoirs in Taiwan from 2000 to 2017. Weather (e.g., air temperature, relative humidity, total precipitation, sunlight percentage and cloud cover) and water quality parameters (e.g., pH, chemical oxygen demand, suspended solids (SS), ammonia, total hardness, nitrate, nitrite and water temperature) were included in the principal component analysis and absolute principal component score models to evaluate the main governing factors of the trophic state levels (e.g., CTSI). SS were washed out by precipitation, thereby influencing the reservoir transparency tremendously and contributing over 50% to the CTSI level in eutrophicated reservoirs (e.g., the Shihmen and Chengchinghu Reservoirs). CTSI levels in the mesotrophic reservoir (e.g., Liyutan Reservoir) had strong correlation with chlorophyll-a and total phosphorus. Results show that rainfall/weather factors were the key driving factors that affected the CTSI levels in Taiwan eutrophicated reservoirs, indicating the need to consider basin management and the impacts of extreme precipitation in reservoir management and future policymaking. |
topic |
reservoir eutrophication source apportionment Carlson trophic state index |
url |
https://www.mdpi.com/2073-4441/12/5/1325 |
work_keys_str_mv |
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