The Experts below are selected from a list of 54 Experts worldwide ranked by ideXlab platform
Melisa Gazdić - One of the best experts on this subject based on the ideXlab platform.
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Building Thermal Insulation Material Based on Sheep Wool
New Technologies Development and Application II, 2020Co-Authors: Sanela Klarić, Emir Klarić, Muhidin Zametica, Melisa GazdićAbstract:The number of the research has confirmed that sheep wool is an ideal material for insulation in buildings. In BiH, there are facilities for wool washing and processing. Often times, well developed stations for purchasing wool through repurchasing stations can through extra investment revitalize the system. Production of thermal insulation panels from sheep wool in BiH, with the current infrastructure and qualified work force available, could provide a product which is of good quality and competitive price in view of the demanding EU or US markets. In addition, the production could easily be tailored to fit the existing facilities. Only the last step of the production process of the wool thermal insulation panels is different from the current one and requires specialised machines for panels. The feasibility study identified that investment into the project of production of thermal insulation panels made out of sheep wool would be cost-effective for the investors, since the earning would be sufficient to cover the future expenditures and that such project would be profitable. As was identified and elaborated in the Financial Analysis section, for the purpose of this study it is not necessary to present additional arguments in favour of the economic and financial cost-effectiveness of launching the project by expressing (monetising) significant non-financial social benefits of this project in terms of money. The indicators of Financial Net Present Value (cost-effectiveness of the investment) and Financial Internal Return Rate (FNPV and FIRR) show that net revenues can cover overall investment and obtain the planned profit. Among other things, the study identified several social benefits that would follow the launch of the project of production of sheep wool thermal insulation panels: (1) Sheep wool as building insulation material uses little primary energy and CO_2 for production, installation, usage and recycling; (2) Sheep wool waste can be used as Natural Fertiliser; (3) Launching production of sheep wool insulation materials would revive infrastructure of sheep breeding, shearing and wool buying. The sheep wool is made out of biodegradable proteins and after being used in building construction the material can be turned into Natural Fertiliser. Adequate support to sheep farming sector would bring about preservation of the autochthonous sheep breed Pramenka in BiH. It is important to stress that sheep wool can be easily recycled and reused.
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Building Thermal Insulation Material Based on Sheep Wool
New Technologies Development and Application II, 2020Co-Authors: Sanela Klarić, Emir Klarić, Muhidin Zametica, Melisa GazdićAbstract:The number of the research has confirmed that sheep wool is an ideal material for insulation in buildings. In BiH, there are facilities for wool washing and processing. Often times, well developed stations for purchasing wool through repurchasing stations can through extra investment revitalize the system. Production of thermal insulation panels from sheep wool in BiH, with the current infrastructure and qualified work force available, could provide a product which is of good quality and competitive price in view of the demanding EU or US markets. In addition, the production could easily be tailored to fit the existing facilities. Only the last step of the production process of the wool thermal insulation panels is different from the current one and requires specialised machines for panels. The feasibility study identified that investment into the project of production of thermal insulation panels made out of sheep wool would be cost-effective for the investors, since the earning would be sufficient to cover the future expenditures and that such project would be profitable. As was identified and elaborated in the Financial Analysis section, for the purpose of this study it is not necessary to present additional arguments in favour of the economic and financial cost-effectiveness of launching the project by expressing (monetising) significant non-financial social benefits of this project in terms of money. The indicators of Financial Net Present Value (cost-effectiveness of the investment) and Financial Internal Return Rate (FNPV and FIRR) show that net revenues can cover overall investment and obtain the planned profit. Among other things, the study identified several social benefits that would follow the launch of the project of production of sheep wool thermal insulation panels: (1) Sheep wool as building insulation material uses little primary energy and CO_2 for production, installation, usage and recycling; (2) Sheep wool waste can be used as Natural Fertiliser; (3) Launching production of sheep wool insulation materials would revive infrastructure of sheep breeding, shearing and wool buying. The sheep wool is made out of biodegradable proteins and after being used in building construction the material can be turned into Natural Fertiliser. Adequate support to sheep farming sector would bring about preservation of the autochthonous sheep breed Pramenka in BiH. It is important to stress that sheep wool can be easily recycled and reused.
Sanela Klarić - One of the best experts on this subject based on the ideXlab platform.
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Building Thermal Insulation Material Based on Sheep Wool
New Technologies Development and Application II, 2020Co-Authors: Sanela Klarić, Emir Klarić, Muhidin Zametica, Melisa GazdićAbstract:The number of the research has confirmed that sheep wool is an ideal material for insulation in buildings. In BiH, there are facilities for wool washing and processing. Often times, well developed stations for purchasing wool through repurchasing stations can through extra investment revitalize the system. Production of thermal insulation panels from sheep wool in BiH, with the current infrastructure and qualified work force available, could provide a product which is of good quality and competitive price in view of the demanding EU or US markets. In addition, the production could easily be tailored to fit the existing facilities. Only the last step of the production process of the wool thermal insulation panels is different from the current one and requires specialised machines for panels. The feasibility study identified that investment into the project of production of thermal insulation panels made out of sheep wool would be cost-effective for the investors, since the earning would be sufficient to cover the future expenditures and that such project would be profitable. As was identified and elaborated in the Financial Analysis section, for the purpose of this study it is not necessary to present additional arguments in favour of the economic and financial cost-effectiveness of launching the project by expressing (monetising) significant non-financial social benefits of this project in terms of money. The indicators of Financial Net Present Value (cost-effectiveness of the investment) and Financial Internal Return Rate (FNPV and FIRR) show that net revenues can cover overall investment and obtain the planned profit. Among other things, the study identified several social benefits that would follow the launch of the project of production of sheep wool thermal insulation panels: (1) Sheep wool as building insulation material uses little primary energy and CO_2 for production, installation, usage and recycling; (2) Sheep wool waste can be used as Natural Fertiliser; (3) Launching production of sheep wool insulation materials would revive infrastructure of sheep breeding, shearing and wool buying. The sheep wool is made out of biodegradable proteins and after being used in building construction the material can be turned into Natural Fertiliser. Adequate support to sheep farming sector would bring about preservation of the autochthonous sheep breed Pramenka in BiH. It is important to stress that sheep wool can be easily recycled and reused.
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Building Thermal Insulation Material Based on Sheep Wool
New Technologies Development and Application II, 2020Co-Authors: Sanela Klarić, Emir Klarić, Muhidin Zametica, Melisa GazdićAbstract:The number of the research has confirmed that sheep wool is an ideal material for insulation in buildings. In BiH, there are facilities for wool washing and processing. Often times, well developed stations for purchasing wool through repurchasing stations can through extra investment revitalize the system. Production of thermal insulation panels from sheep wool in BiH, with the current infrastructure and qualified work force available, could provide a product which is of good quality and competitive price in view of the demanding EU or US markets. In addition, the production could easily be tailored to fit the existing facilities. Only the last step of the production process of the wool thermal insulation panels is different from the current one and requires specialised machines for panels. The feasibility study identified that investment into the project of production of thermal insulation panels made out of sheep wool would be cost-effective for the investors, since the earning would be sufficient to cover the future expenditures and that such project would be profitable. As was identified and elaborated in the Financial Analysis section, for the purpose of this study it is not necessary to present additional arguments in favour of the economic and financial cost-effectiveness of launching the project by expressing (monetising) significant non-financial social benefits of this project in terms of money. The indicators of Financial Net Present Value (cost-effectiveness of the investment) and Financial Internal Return Rate (FNPV and FIRR) show that net revenues can cover overall investment and obtain the planned profit. Among other things, the study identified several social benefits that would follow the launch of the project of production of sheep wool thermal insulation panels: (1) Sheep wool as building insulation material uses little primary energy and CO_2 for production, installation, usage and recycling; (2) Sheep wool waste can be used as Natural Fertiliser; (3) Launching production of sheep wool insulation materials would revive infrastructure of sheep breeding, shearing and wool buying. The sheep wool is made out of biodegradable proteins and after being used in building construction the material can be turned into Natural Fertiliser. Adequate support to sheep farming sector would bring about preservation of the autochthonous sheep breed Pramenka in BiH. It is important to stress that sheep wool can be easily recycled and reused.
Emir Klarić - One of the best experts on this subject based on the ideXlab platform.
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Building Thermal Insulation Material Based on Sheep Wool
New Technologies Development and Application II, 2020Co-Authors: Sanela Klarić, Emir Klarić, Muhidin Zametica, Melisa GazdićAbstract:The number of the research has confirmed that sheep wool is an ideal material for insulation in buildings. In BiH, there are facilities for wool washing and processing. Often times, well developed stations for purchasing wool through repurchasing stations can through extra investment revitalize the system. Production of thermal insulation panels from sheep wool in BiH, with the current infrastructure and qualified work force available, could provide a product which is of good quality and competitive price in view of the demanding EU or US markets. In addition, the production could easily be tailored to fit the existing facilities. Only the last step of the production process of the wool thermal insulation panels is different from the current one and requires specialised machines for panels. The feasibility study identified that investment into the project of production of thermal insulation panels made out of sheep wool would be cost-effective for the investors, since the earning would be sufficient to cover the future expenditures and that such project would be profitable. As was identified and elaborated in the Financial Analysis section, for the purpose of this study it is not necessary to present additional arguments in favour of the economic and financial cost-effectiveness of launching the project by expressing (monetising) significant non-financial social benefits of this project in terms of money. The indicators of Financial Net Present Value (cost-effectiveness of the investment) and Financial Internal Return Rate (FNPV and FIRR) show that net revenues can cover overall investment and obtain the planned profit. Among other things, the study identified several social benefits that would follow the launch of the project of production of sheep wool thermal insulation panels: (1) Sheep wool as building insulation material uses little primary energy and CO_2 for production, installation, usage and recycling; (2) Sheep wool waste can be used as Natural Fertiliser; (3) Launching production of sheep wool insulation materials would revive infrastructure of sheep breeding, shearing and wool buying. The sheep wool is made out of biodegradable proteins and after being used in building construction the material can be turned into Natural Fertiliser. Adequate support to sheep farming sector would bring about preservation of the autochthonous sheep breed Pramenka in BiH. It is important to stress that sheep wool can be easily recycled and reused.
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Building Thermal Insulation Material Based on Sheep Wool
New Technologies Development and Application II, 2020Co-Authors: Sanela Klarić, Emir Klarić, Muhidin Zametica, Melisa GazdićAbstract:The number of the research has confirmed that sheep wool is an ideal material for insulation in buildings. In BiH, there are facilities for wool washing and processing. Often times, well developed stations for purchasing wool through repurchasing stations can through extra investment revitalize the system. Production of thermal insulation panels from sheep wool in BiH, with the current infrastructure and qualified work force available, could provide a product which is of good quality and competitive price in view of the demanding EU or US markets. In addition, the production could easily be tailored to fit the existing facilities. Only the last step of the production process of the wool thermal insulation panels is different from the current one and requires specialised machines for panels. The feasibility study identified that investment into the project of production of thermal insulation panels made out of sheep wool would be cost-effective for the investors, since the earning would be sufficient to cover the future expenditures and that such project would be profitable. As was identified and elaborated in the Financial Analysis section, for the purpose of this study it is not necessary to present additional arguments in favour of the economic and financial cost-effectiveness of launching the project by expressing (monetising) significant non-financial social benefits of this project in terms of money. The indicators of Financial Net Present Value (cost-effectiveness of the investment) and Financial Internal Return Rate (FNPV and FIRR) show that net revenues can cover overall investment and obtain the planned profit. Among other things, the study identified several social benefits that would follow the launch of the project of production of sheep wool thermal insulation panels: (1) Sheep wool as building insulation material uses little primary energy and CO_2 for production, installation, usage and recycling; (2) Sheep wool waste can be used as Natural Fertiliser; (3) Launching production of sheep wool insulation materials would revive infrastructure of sheep breeding, shearing and wool buying. The sheep wool is made out of biodegradable proteins and after being used in building construction the material can be turned into Natural Fertiliser. Adequate support to sheep farming sector would bring about preservation of the autochthonous sheep breed Pramenka in BiH. It is important to stress that sheep wool can be easily recycled and reused.
Muhidin Zametica - One of the best experts on this subject based on the ideXlab platform.
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Building Thermal Insulation Material Based on Sheep Wool
New Technologies Development and Application II, 2020Co-Authors: Sanela Klarić, Emir Klarić, Muhidin Zametica, Melisa GazdićAbstract:The number of the research has confirmed that sheep wool is an ideal material for insulation in buildings. In BiH, there are facilities for wool washing and processing. Often times, well developed stations for purchasing wool through repurchasing stations can through extra investment revitalize the system. Production of thermal insulation panels from sheep wool in BiH, with the current infrastructure and qualified work force available, could provide a product which is of good quality and competitive price in view of the demanding EU or US markets. In addition, the production could easily be tailored to fit the existing facilities. Only the last step of the production process of the wool thermal insulation panels is different from the current one and requires specialised machines for panels. The feasibility study identified that investment into the project of production of thermal insulation panels made out of sheep wool would be cost-effective for the investors, since the earning would be sufficient to cover the future expenditures and that such project would be profitable. As was identified and elaborated in the Financial Analysis section, for the purpose of this study it is not necessary to present additional arguments in favour of the economic and financial cost-effectiveness of launching the project by expressing (monetising) significant non-financial social benefits of this project in terms of money. The indicators of Financial Net Present Value (cost-effectiveness of the investment) and Financial Internal Return Rate (FNPV and FIRR) show that net revenues can cover overall investment and obtain the planned profit. Among other things, the study identified several social benefits that would follow the launch of the project of production of sheep wool thermal insulation panels: (1) Sheep wool as building insulation material uses little primary energy and CO_2 for production, installation, usage and recycling; (2) Sheep wool waste can be used as Natural Fertiliser; (3) Launching production of sheep wool insulation materials would revive infrastructure of sheep breeding, shearing and wool buying. The sheep wool is made out of biodegradable proteins and after being used in building construction the material can be turned into Natural Fertiliser. Adequate support to sheep farming sector would bring about preservation of the autochthonous sheep breed Pramenka in BiH. It is important to stress that sheep wool can be easily recycled and reused.
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Building Thermal Insulation Material Based on Sheep Wool
New Technologies Development and Application II, 2020Co-Authors: Sanela Klarić, Emir Klarić, Muhidin Zametica, Melisa GazdićAbstract:The number of the research has confirmed that sheep wool is an ideal material for insulation in buildings. In BiH, there are facilities for wool washing and processing. Often times, well developed stations for purchasing wool through repurchasing stations can through extra investment revitalize the system. Production of thermal insulation panels from sheep wool in BiH, with the current infrastructure and qualified work force available, could provide a product which is of good quality and competitive price in view of the demanding EU or US markets. In addition, the production could easily be tailored to fit the existing facilities. Only the last step of the production process of the wool thermal insulation panels is different from the current one and requires specialised machines for panels. The feasibility study identified that investment into the project of production of thermal insulation panels made out of sheep wool would be cost-effective for the investors, since the earning would be sufficient to cover the future expenditures and that such project would be profitable. As was identified and elaborated in the Financial Analysis section, for the purpose of this study it is not necessary to present additional arguments in favour of the economic and financial cost-effectiveness of launching the project by expressing (monetising) significant non-financial social benefits of this project in terms of money. The indicators of Financial Net Present Value (cost-effectiveness of the investment) and Financial Internal Return Rate (FNPV and FIRR) show that net revenues can cover overall investment and obtain the planned profit. Among other things, the study identified several social benefits that would follow the launch of the project of production of sheep wool thermal insulation panels: (1) Sheep wool as building insulation material uses little primary energy and CO_2 for production, installation, usage and recycling; (2) Sheep wool waste can be used as Natural Fertiliser; (3) Launching production of sheep wool insulation materials would revive infrastructure of sheep breeding, shearing and wool buying. The sheep wool is made out of biodegradable proteins and after being used in building construction the material can be turned into Natural Fertiliser. Adequate support to sheep farming sector would bring about preservation of the autochthonous sheep breed Pramenka in BiH. It is important to stress that sheep wool can be easily recycled and reused.
Mariele Evers - One of the best experts on this subject based on the ideXlab platform.
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A review of current and possible future human–water dynamics in Myanmar's river basins
Hydrology and Earth System Sciences, 2016Co-Authors: Linda Taft, Mariele EversAbstract:Abstract. Rivers provide a large number of ecosystem services and riparian people depend directly and indirectly on water availability and quality and quantity of the river waters. The country's economy and the people's well-being and income, particularly in agriculturally dominated countries, are strongly determined by the availability of sufficient water. This is particularly true for the country of Myanmar in South-east Asia, where more than 65 % of the population live in rural areas, working in the agricultural sector. Only a few studies exist on river basins in Myanmar at all and detailed knowledge providing the basis for human–water research is very limited. A deeper understanding of human–water system dynamics in the country is required because Myanmar's society, economy, ecosystems and water resources are facing major challenges due to political and economic reforms and massive and rapid investments from neighbouring countries. However, not only policy and economy modify the need for water. Climate variability and change are other essential drivers within human–water systems. Myanmar's climate is influenced by the Indian Monsoon circulation which is subject to interannual and also regional variability. Particularly the central dry zone and the Ayeyarwady delta are prone to extreme events such as serious drought periods and extreme floods. On the one hand, the farmers depend on the Natural Fertiliser brought by regular river inundations and high groundwater levels for irrigation; on the other hand, they suffer from these water-related extreme events. It is expected that theses climatic extreme events will likely increase in frequency and magnitude in the future as a result of global climate change. Different national and international interests in the abundant water resources may provide opportunities and risks at the same time for Myanmar. Several dam projects along the main courses of the rivers are currently in the planning phase. Dams will most likely modify the river flows, the sediment loads and also the still rich biodiversity in the river basins, to an unknown extent. Probably, these Natural and anthropogenically induced developments will also impact a special type of farming; we call it alluvial farming in the river floodplains and on sandbars in the Ayeyarwady River basin in Myanmar, which is called Kaing and Kyun, respectively. Relevant aspects for future development of Myanmar's river basins combine environment-water-related factors, climate, economic and social development, water management and land use changes. Research on these interplays needs to capture the spatial and temporal dynamics of these drivers. However, it is only possible to gain a full understanding of all these complex interrelationships if multi-scale spatiotemporal information is analysed in an inter- and trans-disciplinary approach. This paper gives a structured overview of the current scientific knowledge available and reveals the relevance of this information with regard to human–environment and particularly to human–water interactions in Myanmar's river basins. By applying the eDPSIR framework, it identifies key indicators in the Myanmar human–water system, which has been shown to be exemplary by giving an example of use related to alluvial farming in the central dry zone.