Partitioning Behavior of Arsenic in an Ultra-Supercritical Coal-Fired Power Plant Equipped with APCDs for Ultra-Low Emission
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Publisher
Springer Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-16-1657-0_71
Reference36 articles.
1. Álvarez-Ayuso E, Querol X (2006) Environmental impact of a coal combustion-desulphurisation plant: Abatement capacity of desulphurisation process and environmental characterisation of combustion by- products. Chemosphere 65(11):2009–2017
2. Bhangare RC, Ajmal PY (2011) Distribution of trace elements in coal and combustion residues from five thermal power plants in India. Int J Coal Geol 86(4):349–356
3. Córdoba P, Ochoa-Gonzalez R (2012) Partitioning of trace inorganic elements in a coal-fired power plant equipped with a wet flue gas desulphurisation system. Fuel 92:145–157
4. Dai SF (2012) Geochemistry of trace elements in Chinese coals: A review of abundances, genetic types, impacts on human health, and industrial utilization. Int J Coal Geol 94(3):3–21
5. Duan LB, Cui J (2017) Partitioning behavior of Arsenic in circulating fluidized bed boilers co-firing petroleum coke and coal. Fuel Process Technol 166:107–144
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