""2016"This study confirms the feasibility of the guideline for
「""2016"This study confirms the feasibility of the guideline for 」於資料集「EPQSummary_EnvironmentalMonitoringAndTesting」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 01:01:45。 欄位Project Title的內容是"" , 欄位Project Subject的內容是"This study confirms the feasibility of the guideline for toxicity identification evaluation (TIE) of high-tech industry effluents. Physicochemical treatments including pH adjustment, C-18 solid-phase extraction, aeration, sodium thiosulfate addition, and EDTA addition can be used as the best approaches for TIE. We use actual effluents for respective toxicity characteristics test and toxicity confirmation test. If pollutants are apparently absent, we add pollutants to these effluents to simulate the real pollution source on biological toxicity. The samples are subjected to both chemical analysis and biotoxicity test for two-way identification of toxicants. The TIE results effectively confirm that the cause of toxicity in hydrogen peroxide for S1, hydrogen peroxide and Cu ions for S3, Cu ions for S4, hypochlorite for S5, nitrogen-ammonia for S6; whereas S2 does not exhibit any toxicity effect, demonstrating its potential applications for TIE of high-tech industry effluents. The results verify the feasibility of the established guideline for TIE of high-tech industry effluents using both chemical analysis and biotoxicity test for two-way identification of toxicants.A draft method for Vibrio fischeri bioluminescence method is proposed and validated. The quality control for SOP using reference toxic substances is established. The draft method is further tested using high-tech industry effluents for toxicity identification and confirmation procedures, verifying its feasibility for effective screening of acute biotoxicity in high-tech industry effluents. Based on the experience gained after completion of the 4 year projects, we recommend: (1) Select the two organisms for biotoxicity test carefully. Significant difference in sensitivity is warranted. (2) Develop analytical approach of combining TIE and EDA method for the identification of biotoxicity and toxicants in industrial effluents. In addition Three pioneered research directions are recommended: (1) Research and development of automated and intelligent biotoxicity methods, including acute and chronic toxicity, to continuously improve method performance and data quality.(2) Research and development of biochemical and cell-based high-throughput rapid screening test methods and build relevant core technologies.(3) Research and development of computational toxicology technologies and build relevant software infrastructure, heading towards the goal of predictive and preventive toxicology." , 欄位Project Year的內容是2016 , 欄位Organizer的內容是"Environmental Analysis Laboratory" , 欄位Executive Unit的內容是"國立清華大學" , 欄位Reporting download URL的內容是https://epq.epa.gov.tw/project/filedownload.aspx?fid=131089 , 欄位Publish Date的內容是20170201 。
Project Title
""
Project Subject
"This study confirms the feasibility of the guideline for toxicity identification evaluation (TIE) of high-tech industry effluents. Physicochemical treatments including pH adjustment, C-18 solid-phase extraction, aeration, sodium thiosulfate addition, and EDTA addition can be used as the best approaches for TIE. We use actual effluents for respective toxicity characteristics test and toxicity confirmation test. If pollutants are apparently absent, we add pollutants to these effluents to simulate the real pollution source on biological toxicity. The samples are subjected to both chemical analysis and biotoxicity test for two-way identification of toxicants. The TIE results effectively confirm that the cause of toxicity in hydrogen peroxide for S1, hydrogen peroxide and Cu ions for S3, Cu ions for S4, hypochlorite for S5, nitrogen-ammonia for S6; whereas S2 does not exhibit any toxicity effect, demonstrating its potential applications for TIE of high-tech industry effluents. The results verify the feasibility of the established guideline for TIE of high-tech industry effluents using both chemical analysis and biotoxicity test for two-way identification of toxicants.A draft method for Vibrio fischeri bioluminescence method is proposed and validated. The quality control for SOP using reference toxic substances is established. The draft method is further tested using high-tech industry effluents for toxicity identification and confirmation procedures, verifying its feasibility for effective screening of acute biotoxicity in high-tech industry effluents. Based on the experience gained after completion of the 4 year projects, we recommend: (1) Select the two organisms for biotoxicity test carefully. Significant difference in sensitivity is warranted. (2) Develop analytical approach of combining TIE and EDA method for the identification of biotoxicity and toxicants in industrial effluents. In addition Three pioneered research directions are recommended: (1) Research and development of automated and intelligent biotoxicity methods, including acute and chronic toxicity, to continuously improve method performance and data quality.(2) Research and development of biochemical and cell-based high-throughput rapid screening test methods and build relevant core technologies.(3) Research and development of computational toxicology technologies and build relevant software infrastructure, heading towards the goal of predictive and preventive toxicology."
Project Year
2016
Organizer
"Environmental Analysis Laboratory"
Executive Unit
"國立清華大學"
Reporting download URL
Publish Date
20170201
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