Taiwan Has Potential to Establish Eco-Industrial ParksGeneral Policy
「Taiwan Has Potential to Establish Eco-Industrial ParksGeneral Policy」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665 , 欄位標題的內容是Taiwan Has Potential to Establish Eco-Industrial Parks , 欄位摘要的內容是In discussing Taiwan’s challenges in industrial solid waste recovery and reuse EPA Deputy Administrator James J. Lee recently stated that Taiwan has excellent potential for establishing an “Industrial Eco-System,” and noted that several industrial parks have potential to become eco-industrial parks. Lee specifically noted Formosa Plastic's Mailiao Industrial Park, the Tainan Science Park, and the Changbin Industrial Park as facilities with a diversified industrial base and development potential particularly well positioned to incorporating industrial ecology concepts. Converting them into eco-industrial parks would lead to significant gains in terms of industrial waste minimization and waste reuse.
At a recently press conference on industrial waste management, EPA Deputy Administrator James J. Lee cited Denmark’s experience in managing industrial waste as a useful model for Taiwan. Denmark relies on a combination of providing a range of treatment technologies/options and good coordination among industrial organizations to encourage efficient use of resources and energy. As a result, Denmark has become the first country to develop a successful eco-industrial park. The Deputy Administrator noted that Taiwan can benefit substantially from studying Denmark’s experience as the two countries share many similarities in terms of size, industrial character and waste streams.
In order to maximize the efficiency with which resources are used, Denmark’s eco-industrial park is designed so that its members co-exist in a symbiotic fashion. For example, oil refineries give their desulfurization products to other factories to use as a raw material for manufacturing sulfuric acid; effluent discharge from the wastewater treatment plant is used by a thermal power plant; in turn wet calcium sulfate and ash generated by desulfurization of the power plant’s air emissions is sold to a cement facility for use as raw materials; warm water generated by cooling processes is used for aquaculture and heating homes; and sludge from a pharmaceutical plant is reprocessed into fertilizer for agricultural uses.
The EPA Bureau of Solid Waste Management explained that industrial eco-systems are networks of manufacturing and business relationships in which wastes and byproducts from one company serve as raw materials for another. The result is a system that is highly efficient in its use of resources and raw materials, similar to the “zero waste” food chains of the natural world. The EPA has commissioned the Industrial Technology Research Institute (ITRI) to prepare a “Demonstration Industrial Eco-System Plan” in the hopes of establishing such a system in Taiwan.
The results of ITRI’s research suggest that initial efforts should focus on developing an industrial eco-system for sludge, incinerator ash, and wastes with calorific value. Currently, only 18.9% of sludge is reused in Taiwan. However, through use of appropriate technology, sludge can be reprocessed for use as compost, construction materials, raw materials for cement manufacturing, or incinerated for heat recovery. ITRI has already begun to cooperate with three companies to develop methods for reuse of sludge from paper processing. Similarly, energy recovery techniques can be applied to furnace ash and other wastes with high calorific value to accomplish waste minimization and reuse goals. , 欄位全文的內容是In discussing Taiwan’s challenges in industrial solid waste recovery and reuse EPA Deputy Administrator James J. Lee recently stated that Taiwan has excellent potential for establishing an “Industrial Eco-System,” and noted that several industrial parks have potential to become eco-industrial parks. Lee specifically noted Formosa Plastic's Mailiao Industrial Park, the Tainan Science Park, and the Changbin Industrial Park as facilities with a diversified industrial base and development potential particularly well positioned to incorporating industrial ecology concepts. Converting them into eco-industrial parks would lead to significant gains in terms of industrial waste minimization and waste reuse.
At a recently press conference on industrial waste management, EPA Deputy Administrator James J. Lee cited Denmark’s experience in managing industrial waste as a useful model for Taiwan. Denmark relies on a combination of providing a range of treatment technologies/options and good coordination among industrial organizations to encourage efficient use of resources and energy. As a result, Denmark has become the first country to develop a successful eco-industrial park. The Deputy Administrator noted that Taiwan can benefit substantially from studying Denmark’s experience as the two countries share many similarities in terms of size, industrial character and waste streams.
In order to maximize the efficiency with which resources are used, Denmark’s eco-industrial park is designed so that its members co-exist in a symbiotic fashion. For example, oil refineries give their desulfurization products to other factories to use as a raw material for manufacturing sulfuric acid; effluent discharge from the wastewater treatment plant is used by a thermal power plant; in turn wet calcium sulfate and ash generated by desulfurization of the power plant’s air emissions is sold to a cement facility for use as raw materials; warm water generated by cooling processes is used for aquaculture and heating homes; and sludge from a pharmaceutical plant is reprocessed into fertilizer for agricultural uses.
The EPA Bureau of Solid Waste Management explained that industrial eco-systems are networks of manufacturing and business relationships in which wastes and byproducts from one company serve as raw materials for another. The result is a system that is highly efficient in its use of resources and raw materials, similar to the “zero waste” food chains of the natural world. The EPA has commissioned the Industrial Technology Research Institute (ITRI) to prepare a “Demonstration Industrial Eco-System Plan” in the hopes of establishing such a system in Taiwan.
The results of ITRI’s research suggest that initial efforts should focus on developing an industrial eco-system for sludge, incinerator ash, and wastes with calorific value. Currently, only 18.9% of sludge is reused in Taiwan. However, through use of appropriate technology, sludge can be reprocessed for use as compost, construction materials, raw materials for cement manufacturing, or incinerated for heat recovery. ITRI has already begun to cooperate with three companies to develop methods for reuse of sludge from paper processing. Similarly, energy recovery techniques can be applied to furnace ash and other wastes with high calorific value to accomplish waste minimization and reuse goals. , 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18 , 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General Policy , 欄位標題2的內容是Taiwan Has Potential to Establish Eco-Industrial Parks , 欄位檔案位置的內容是print/V1/V3-18 。
編號
665
標題
Taiwan Has Potential to Establish Eco-Industrial Parks
摘要
In discussing Taiwan’s challenges in industrial solid waste recovery and reuse EPA Deputy Administrator James J. Lee recently stated that Taiwan has excellent potential for establishing an “Industrial Eco-System,” and noted that several industrial parks have potential to become eco-industrial parks. Lee specifically noted Formosa Plastic's Mailiao Industrial Park, the Tainan Science Park, and the Changbin Industrial Park as facilities with a diversified industrial base and development potential particularly well positioned to incorporating industrial ecology concepts. Converting them into eco-industrial parks would lead to significant gains in terms of industrial waste minimization and waste reuse. At a recently press conference on industrial waste management, EPA Deputy Administrator James J. Lee cited Denmark’s experience in managing industrial waste as a useful model for Taiwan. Denmark relies on a combination of providing a range of treatment technologies/options and good coordination among industrial organizations to encourage efficient use of resources and energy. As a result, Denmark has become the first country to develop a successful eco-industrial park. The Deputy Administrator noted that Taiwan can benefit substantially from studying Denmark’s experience as the two countries share many similarities in terms of size, industrial character and waste streams. In order to maximize the efficiency with which resources are used, Denmark’s eco-industrial park is designed so that its members co-exist in a symbiotic fashion. For example, oil refineries give their desulfurization products to other factories to use as a raw material for manufacturing sulfuric acid; effluent discharge from the wastewater treatment plant is used by a thermal power plant; in turn wet calcium sulfate and ash generated by desulfurization of the power plant’s air emissions is sold to a cement facility for use as raw materials; warm water generated by cooling processes is used for aquaculture and heating homes; and sludge from a pharmaceutical plant is reprocessed into fertilizer for agricultural uses. The EPA Bureau of Solid Waste Management explained that industrial eco-systems are networks of manufacturing and business relationships in which wastes and byproducts from one company serve as raw materials for another. The result is a system that is highly efficient in its use of resources and raw materials, similar to the “zero waste” food chains of the natural world. The EPA has commissioned the Industrial Technology Research Institute (ITRI) to prepare a “Demonstration Industrial Eco-System Plan” in the hopes of establishing such a system in Taiwan. The results of ITRI’s research suggest that initial efforts should focus on developing an industrial eco-system for sludge, incinerator ash, and wastes with calorific value. Currently, only 18.9% of sludge is reused in Taiwan. However, through use of appropriate technology, sludge can be reprocessed for use as compost, construction materials, raw materials for cement manufacturing, or incinerated for heat recovery. ITRI has already begun to cooperate with three companies to develop methods for reuse of sludge from paper processing. Similarly, energy recovery techniques can be applied to furnace ash and other wastes with high calorific value to accomplish waste minimization and reuse goals.
全文
In discussing Taiwan’s challenges in industrial solid waste recovery and reuse EPA Deputy Administrator James J. Lee recently stated that Taiwan has excellent potential for establishing an “Industrial Eco-System,” and noted that several industrial parks have potential to become eco-industrial parks. Lee specifically noted Formosa Plastic's Mailiao Industrial Park, the Tainan Science Park, and the Changbin Industrial Park as facilities with a diversified industrial base and development potential particularly well positioned to incorporating industrial ecology concepts. Converting them into eco-industrial parks would lead to significant gains in terms of industrial waste minimization and waste reuse. At a recently press conference on industrial waste management, EPA Deputy Administrator James J. Lee cited Denmark’s experience in managing industrial waste as a useful model for Taiwan. Denmark relies on a combination of providing a range of treatment technologies/options and good coordination among industrial organizations to encourage efficient use of resources and energy. As a result, Denmark has become the first country to develop a successful eco-industrial park. The Deputy Administrator noted that Taiwan can benefit substantially from studying Denmark’s experience as the two countries share many similarities in terms of size, industrial character and waste streams. In order to maximize the efficiency with which resources are used, Denmark’s eco-industrial park is designed so that its members co-exist in a symbiotic fashion. For example, oil refineries give their desulfurization products to other factories to use as a raw material for manufacturing sulfuric acid; effluent discharge from the wastewater treatment plant is used by a thermal power plant; in turn wet calcium sulfate and ash generated by desulfurization of the power plant’s air emissions is sold to a cement facility for use as raw materials; warm water generated by cooling processes is used for aquaculture and heating homes; and sludge from a pharmaceutical plant is reprocessed into fertilizer for agricultural uses. The EPA Bureau of Solid Waste Management explained that industrial eco-systems are networks of manufacturing and business relationships in which wastes and byproducts from one company serve as raw materials for another. The result is a system that is highly efficient in its use of resources and raw materials, similar to the “zero waste” food chains of the natural world. The EPA has commissioned the Industrial Technology Research Institute (ITRI) to prepare a “Demonstration Industrial Eco-System Plan” in the hopes of establishing such a system in Taiwan. The results of ITRI’s research suggest that initial efforts should focus on developing an industrial eco-system for sludge, incinerator ash, and wastes with calorific value. Currently, only 18.9% of sludge is reused in Taiwan. However, through use of appropriate technology, sludge can be reprocessed for use as compost, construction materials, raw materials for cement manufacturing, or incinerated for heat recovery. ITRI has already begun to cooperate with three companies to develop methods for reuse of sludge from paper processing. Similarly, energy recovery techniques can be applied to furnace ash and other wastes with high calorific value to accomplish waste minimization and reuse goals.
年度
2000
月份
3
卷
3
期
18
順序
1
倒序
2
分類
General Policy
標題2
Taiwan Has Potential to Establish Eco-Industrial Parks
檔案位置
print/V1/V3-18
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