The aim of this work is to mitigate the impact of climate
change by reducing the amount of CO2 emitted to the
atmosphere in Mulla Abdulla and Taza power plants in
Kirkuk/ Iraq using CCS techniques, and to calculate the
cost of the system components.
Iraq
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In this paper a methodology has been developed for optimum planning of hybrid PV, Wind and diesel generator system with some battery backup in Kirkuk Technical College in Iraq. The local solar radiation, wind data and components database from different manufactures are analyzed and simulated in HOMER model to assess the technical and economic viability of the integrated system. Performance of each component was evaluated and sensitivity analysis was performed to optimize the system at different conditions.
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Present reserves of oil and natural gas can only cover consumption at this rate for the next 50 years in the case of oil, and for the next 70 years in the case of natural gas. Therefore, one of the fundamental priorities for a country such as Iraq is to use several renewable energies (RE) sources and environmentally friendly energy conversion technologies. Iraq is endowed with large reserves of energy sources, mainly hydrocarbons and a considerable potential for the utilization of RE sources especially with respect to solar energy.
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Due to shift in the average patterns of weather, climate change became one of the significant development challenges. Hydropower is currently being utilized in more than 150 countries, including 11,000 stations with 27,000 generating units. Increasing attention has been paid to hydropower generation in recent years, because it is renewable energy. Temperature and precipitation effects from global climate change could alter future hydrologic conditions in Iraq and, as a result, future hydropower generation. This is also valid for the Middle East and Iraq.
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However, the design, control, and optimization of the hybrid systems are usually very complex tasks; the stand-alone hybrid solar–diesel power generation system is recognized generally more suitable than systems that only have one energy source for supply of electricity to off-grid applications. A proposed PV system has been designed and optimized using HOMER software computer model to supply a potato cooled store in Kirkuk city in Iraq.
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The aim of this paper is to find the best hybrid combination from the available resources in a given village location that can meet the electricity demand in a sustainable manner and to see whether this is a cost effective solution or
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Adapting water management and agricultural practices to climate variability is essential and requires integrated responses. This brief explores how countries can harness south-south and triangular cooperation for accelerating the exchange of adaptation technologies, knowledge and practices in the water and agriculture sectors. It also highlights challenges, best practices, lessons learned, and the roles of stakeholders in replicating and transferring such technologies.