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Erschienen in: Journal of Material Cycles and Waste Management 5/2023

19.04.2023 | SPECIAL FEATURE: REGIONAL CASE STUDY

Environmental policy and legal framework for controlling mercury emissions from stationary sources: a case study in Taiwan

verfasst von: Wen-Tien Tsai, Chi-Hung Tsai, Yun-Hwei Shen

Erschienen in: Journal of Material Cycles and Waste Management | Ausgabe 5/2023

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Abstract

In recent years, the Taiwan government partnered with the U.S. Environmental Protection Agency (USEPA) Global Mercury Partnership program to follow the Minamata Convention on Mercury. Due to the most important mercury (Hg) emissions from the stationary vent streams, the Environmental Protection Administration (EPA) has promulgated the strict standards and limits for industrial facilities. In this work, the legal framework for Hg control will focus on the main generators, including coal-fired power plants, cement-manufacturing plants, metal-smelting plants, and waste incineration plants, under the Air Pollution Control Act and the Waste Management Act. Based on the official survey data, the updated analysis of inventory Hg emissions in Taiwan was performed to echo the sustainable material management of Hg-containing waste by the recovery methods, showing a downward trend in the Hg emissions during the period of 2016–2020. To reduce the discharge into the atmospheric environment, the multiple air pollution control devices for Hg emissions from the main stationary sources in Taiwan were also reviewed in this work. Some recommendations for controlling Hg emissions from the stationary sources were also addressed to provide for the policy makers, environmental engineers, and process manager.

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Literatur
1.
Zurück zum Zitat Raj D, Maiti SK (2019) Sources, toxicity, and remediation of mercury: an essence review. Environ Monit Assess 191:566CrossRef Raj D, Maiti SK (2019) Sources, toxicity, and remediation of mercury: an essence review. Environ Monit Assess 191:566CrossRef
2.
Zurück zum Zitat Beckers F, Rinklebe J (2017) Cycling of mercury in the environment: sources, fate, and human health implications: a review. Crit Rev Environ Sci Technol 47:693–794CrossRef Beckers F, Rinklebe J (2017) Cycling of mercury in the environment: sources, fate, and human health implications: a review. Crit Rev Environ Sci Technol 47:693–794CrossRef
3.
Zurück zum Zitat Sundseth K, Jozef M, Pacyna JM, Pacyna EG, Pirrone N, Thorne RJ (2017) Global sources and pathways of mercury in the context of human health. Int J Environ Res Public Health 14:105CrossRef Sundseth K, Jozef M, Pacyna JM, Pacyna EG, Pirrone N, Thorne RJ (2017) Global sources and pathways of mercury in the context of human health. Int J Environ Res Public Health 14:105CrossRef
4.
Zurück zum Zitat Saturday A (2018) Mercury and its associated impacts on environment and human health: a review. J Environ Health Sci 4(2):37–43 Saturday A (2018) Mercury and its associated impacts on environment and human health: a review. J Environ Health Sci 4(2):37–43
6.
Zurück zum Zitat Sakamoto M, Tatsuta N, Izumo K, Phan PT, Vu LD, Yamamoto M, Nakamura M, Nakai K, Murata K (2018) Health impacts and biomarkers of prenatal exposure to methylmercury: lessons from Minamata. Japan Toxics 6:45CrossRef Sakamoto M, Tatsuta N, Izumo K, Phan PT, Vu LD, Yamamoto M, Nakamura M, Nakai K, Murata K (2018) Health impacts and biomarkers of prenatal exposure to methylmercury: lessons from Minamata. Japan Toxics 6:45CrossRef
7.
Zurück zum Zitat Perrez FX (2020) The role of the United Nations Environment Assembly in emerging issues of international environmental law. Sustainability 12:5680CrossRef Perrez FX (2020) The role of the United Nations Environment Assembly in emerging issues of international environmental law. Sustainability 12:5680CrossRef
8.
Zurück zum Zitat Huang SW, Chen CY, Chen MH (2008) Total and organic Hg in fish from the reservoir of a chlor-alkali plant in Tainan. Taiwan J Food Drug Anal 16(2):75–80 Huang SW, Chen CY, Chen MH (2008) Total and organic Hg in fish from the reservoir of a chlor-alkali plant in Tainan. Taiwan J Food Drug Anal 16(2):75–80
9.
Zurück zum Zitat Crook J, Mousavi A (2016) The chlor-alkali process: a review of history and pollution. Environ Forensics 17:211–217CrossRef Crook J, Mousavi A (2016) The chlor-alkali process: a review of history and pollution. Environ Forensics 17:211–217CrossRef
10.
Zurück zum Zitat Lakshmanan S, Murugesan T (2014) The chlor-alkali process: work in progress. Clean Technol Environ Policy 16:225–234CrossRef Lakshmanan S, Murugesan T (2014) The chlor-alkali process: work in progress. Clean Technol Environ Policy 16:225–234CrossRef
11.
Zurück zum Zitat Tsai WT (2016) Analysis of municipal solid waste incineration plants for promoting power generation efficiency in Taiwan. J Mater Cycles Waste Manag 18:393–398CrossRef Tsai WT (2016) Analysis of municipal solid waste incineration plants for promoting power generation efficiency in Taiwan. J Mater Cycles Waste Manag 18:393–398CrossRef
12.
Zurück zum Zitat Tsai WT (2022) Multimedia pollution prevention of mercury-containing waste and articles: case study in Taiwan. Sustainability 14:1557CrossRef Tsai WT (2022) Multimedia pollution prevention of mercury-containing waste and articles: case study in Taiwan. Sustainability 14:1557CrossRef
15.
Zurück zum Zitat Nansai K, Oguchi M, Suzuki N, Kida A, Nataami T, Tanaka C, Haga M (2012) High-resolution inventory of Japanese anthropogenic mercury emissions. Environ Sci Technol 46:4933–4940CrossRef Nansai K, Oguchi M, Suzuki N, Kida A, Nataami T, Tanaka C, Haga M (2012) High-resolution inventory of Japanese anthropogenic mercury emissions. Environ Sci Technol 46:4933–4940CrossRef
16.
Zurück zum Zitat Takiguchi H, TamuraT, (2018) Mercury emission control in Japan. Asian J Atmos Environ 12:37–46CrossRef Takiguchi H, TamuraT, (2018) Mercury emission control in Japan. Asian J Atmos Environ 12:37–46CrossRef
17.
Zurück zum Zitat Sung JL, Seo YC, Jurng J, Hong JH, Park JW, Hyun JE, Lee TG (2004) Mercury emissions from selected stationary combustion sources in Korea. Sci Total Environ 325:155–161CrossRef Sung JL, Seo YC, Jurng J, Hong JH, Park JW, Hyun JE, Lee TG (2004) Mercury emissions from selected stationary combustion sources in Korea. Sci Total Environ 325:155–161CrossRef
18.
Zurück zum Zitat Kim JH, Park JM, Lee SB, Pudasainee D, Seo YC (2010) Anthropogenic mercury emission inventory with emission factors and total emission in Korea. Atmos Environ 44:2714–2721CrossRef Kim JH, Park JM, Lee SB, Pudasainee D, Seo YC (2010) Anthropogenic mercury emission inventory with emission factors and total emission in Korea. Atmos Environ 44:2714–2721CrossRef
19.
Zurück zum Zitat Pudasainee D, Seo YC, Kim JH, Hong JH, Park JM (2014) National inventory of mercury release into different phase media estimated by UNEP toolkit in South Korea. Atmos Pollut Res 5:630–638CrossRef Pudasainee D, Seo YC, Kim JH, Hong JH, Park JM (2014) National inventory of mercury release into different phase media estimated by UNEP toolkit in South Korea. Atmos Pollut Res 5:630–638CrossRef
20.
Zurück zum Zitat Sung JH, Oh JS, Mojammal AHM, Back SK, Lee ES, Kim SH, Seo YC (2018) Estimation and future prediction of mercury emissions from anthropogenic sources in South Korea. J Chem Eng Japan 51:800–808CrossRef Sung JH, Oh JS, Mojammal AHM, Back SK, Lee ES, Kim SH, Seo YC (2018) Estimation and future prediction of mercury emissions from anthropogenic sources in South Korea. J Chem Eng Japan 51:800–808CrossRef
21.
Zurück zum Zitat Takaoka M, Takeda N, Fujiwara T, Kurata M, Kimura T (2002) Control of mercury emissions from a municipal solid waste incinerator in Japan. J Air Waste Manag Assoc 52:931–940CrossRef Takaoka M, Takeda N, Fujiwara T, Kurata M, Kimura T (2002) Control of mercury emissions from a municipal solid waste incinerator in Japan. J Air Waste Manag Assoc 52:931–940CrossRef
22.
Zurück zum Zitat Xu W, Shao M, Yang Y, Liu R, Wu Y, Zhu T (2017) Mercury emission from sintering process in the iron and steel industry of China. Fuel Process Technol 159:340–344CrossRef Xu W, Shao M, Yang Y, Liu R, Wu Y, Zhu T (2017) Mercury emission from sintering process in the iron and steel industry of China. Fuel Process Technol 159:340–344CrossRef
23.
Zurück zum Zitat Charvát P, Klimeš L, Pospíšil J, Klemeš JJ, Varbanov PS (2020) An overview of mercury emissions in the energy industry—a step to mercury footprint assessment. J Clean Prod 267:122087CrossRef Charvát P, Klimeš L, Pospíšil J, Klemeš JJ, Varbanov PS (2020) An overview of mercury emissions in the energy industry—a step to mercury footprint assessment. J Clean Prod 267:122087CrossRef
24.
Zurück zum Zitat Shih YH, Tseng CH (2015) Co-benefits of mercury reduction in Taiwan: a case study of clean energy development. Sustain Sci 10:61–73CrossRef Shih YH, Tseng CH (2015) Co-benefits of mercury reduction in Taiwan: a case study of clean energy development. Sustain Sci 10:61–73CrossRef
26.
Zurück zum Zitat Yokoyama T, Asakura K, Matsuda H, Ito S, Noda N (2000) Mercury emissions from a coal–fired power plant in Japan. Sci Total Environ 259:97–103CrossRef Yokoyama T, Asakura K, Matsuda H, Ito S, Noda N (2000) Mercury emissions from a coal–fired power plant in Japan. Sci Total Environ 259:97–103CrossRef
28.
Zurück zum Zitat Tsai WT (2020) Recycling of waste electrical & electronic equipment (WEEE) and its toxics-containing management in Taiwan—a case study. Toxics 8:48CrossRef Tsai WT (2020) Recycling of waste electrical & electronic equipment (WEEE) and its toxics-containing management in Taiwan—a case study. Toxics 8:48CrossRef
29.
Zurück zum Zitat Liu W, Vidic RD, Brown TD (2000) Impact of flue gas conditions on mercury uptake by sulfur-impregnated activated carbon. Environ Sci Technol 34:154–159CrossRef Liu W, Vidic RD, Brown TD (2000) Impact of flue gas conditions on mercury uptake by sulfur-impregnated activated carbon. Environ Sci Technol 34:154–159CrossRef
30.
Zurück zum Zitat Chou CP, Chang TC, Chiu CH, His HC (2018) Mercury speciation and mass distribution of cement production process in Taiwan. Aerosol Air Qual Res 18:2801–2812CrossRef Chou CP, Chang TC, Chiu CH, His HC (2018) Mercury speciation and mass distribution of cement production process in Taiwan. Aerosol Air Qual Res 18:2801–2812CrossRef
31.
Zurück zum Zitat Luo J, Chen YL, Chen BQ (2020) Investigations on mercury emissions and waste recycling in the cement industry (in Chinese). Sinotech Eng 149:50–64 Luo J, Chen YL, Chen BQ (2020) Investigations on mercury emissions and waste recycling in the cement industry (in Chinese). Sinotech Eng 149:50–64
32.
Zurück zum Zitat Chou CP, Chiu CH, Chang TC, His HC (2021) Mercury speciation and mass distribution of coal-fired power plants in Taiwan using different air pollution control processes. J Air Waste Manag Assoc 71:553–563CrossRef Chou CP, Chiu CH, Chang TC, His HC (2021) Mercury speciation and mass distribution of coal-fired power plants in Taiwan using different air pollution control processes. J Air Waste Manag Assoc 71:553–563CrossRef
33.
Zurück zum Zitat Lee SX, Huang CF, His HC, Wang HC, Chen W (2009) Investigations on mercury distribution of electric arc processes in the iron-making industry (in Chinese). Ind Pollut Control 109:97–108 Lee SX, Huang CF, His HC, Wang HC, Chen W (2009) Investigations on mercury distribution of electric arc processes in the iron-making industry (in Chinese). Ind Pollut Control 109:97–108
35.
Zurück zum Zitat Takaoka M, Oshita K, Takeda N, Morisawa S (2010) Mercury emission from crematories in Japan. Atmos Chem Phys 10:3665–3671CrossRef Takaoka M, Oshita K, Takeda N, Morisawa S (2010) Mercury emission from crematories in Japan. Atmos Chem Phys 10:3665–3671CrossRef
Metadaten
Titel
Environmental policy and legal framework for controlling mercury emissions from stationary sources: a case study in Taiwan
verfasst von
Wen-Tien Tsai
Chi-Hung Tsai
Yun-Hwei Shen
Publikationsdatum
19.04.2023
Verlag
Springer Japan
Erschienen in
Journal of Material Cycles and Waste Management / Ausgabe 5/2023
Print ISSN: 1438-4957
Elektronische ISSN: 1611-8227
DOI
https://doi.org/10.1007/s10163-023-01665-0

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