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WANG, SHUXIAO (2) answer(s).
 
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ID:   126552


Considerations for decision-making on distributed power generat / Holtmeyer, Melissa L; Wang, Shuxiao; Axelbaum, Richard L   Journal Article
Holtmeyer, Melissa L Journal Article
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Publication 2013.
Summary/Abstract Energy resources for rural electrification are variable and widely dispersed, such that a solution for one region might not be appropriate for another. This study evaluates the feasibility of renewable energy technologies, centralized grid extension and local coal-fired power for rural areas that currently do not have sufficient access to electricity. The renewable power generation options considered are solar photovoltaic and wind power, with battery storage or fossil fuel generator backup. New local coal-fired power, as well as extension of the grid from an existing centralized power system, are considered to compare the impacts of scale and traditional approaches to power generation. A case study for a rural area in Northwestern China demonstrates the complexity of energy decision-making when faced with low peak demands and non-ideal renewable resource availability. Economic factors, including cost of electricity generation, breakeven grid extension distance, capacity shortage fraction (the ratio of the annual capacity shortage to the annual electric load) and land use are evaluated.
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2
ID:   150393


Meeting Minamata: cost-effective compliance options for atmospheric mercury control in Chinese coal-fired power plants / Ancora, Maria Pia; Zhang, Lei ; Wang, Shuxiao ; Schreifels, Jeremy J   Journal Article
Schreifels, Jeremy J Journal Article
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Summary/Abstract A new international treaty, Minamata Convention, identifies mercury (Hg) as a global threat to human health and seeks to control its releases and emissions. Coal-fired power plants are a major source of mercury pollution worldwide and are expected to be the first key sector to be addressed in China under Minamata Convention. A best available technique (BAT) adoption model was developed in the form of a decision tree and cost-effectiveness for each technological option. Co-benefit control technologies and their enhancement with coal blending/switching and halogen injection (HI) can provide early measures to help China meet the Minamata Convention obligations. We project future energy and policy scenarios to simulate potential national mercury reduction goals for China and estimate costs of the control measures for each scenario. The “Minamata Medium” scenario, equivalent to the goal of the US Mercury and Air Toxics Standards (MATS) rule, requires the application of activated carbon injection (ACI) and HI on 30% and 20% of power plants, respectively. The corresponding total costs would be $2.5 billion, approximately one-fourth the costs in the US. An emission limit of 3 µg/m3 in 2030 was identified as a feasible policy option for China to comply with Minamata Convention.
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