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Co-combustion of biocoal and lignite in a circulating fluidised bed combustor to decrease the impact on global warming
Keivani, Babak1; Olgun, Hayati1; Atimtay, Aysel T.2
发表日期2019
ISSN1758-2083
EISSN1758-2091
卷号18期号:2页码:120-137
英文摘要

This work covers co-combustion of biocoal obtained from red pine wood chips with Orhaneli lignite in a 30 kW-thermal capacity circulating fluidised bed combustor (CFBC) system in air and oxygen-enriched atmosphere. The combustor was of 108 mm inside diameter and 6 m height. The combustion temperature was held at 850+50 degrees C. Oxygen enriched combustion tests were carried out at different ratios of lignite and biocoal mixtures. Biocoal share in the fuel mixture was increased up to 50% by wt. It was found that the fuel mixtures up to 50% by wt. of biocoal were combusted effectively in the system. The oxygen concentration in the oxidant was varied between 21 and 27% by vol. for the oxygen-enriched combustion experiments. The results showed that biocoal can be a good additive fuel to lignite coal and oxygen-enriched co-combustion is an option for reducing flue gas emissions of SO2, CO and N2O.


WOS研究方向Environmental Sciences & Ecology
来源期刊INTERNATIONAL JOURNAL OF GLOBAL WARMING
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/90738
作者单位1.Ege Univ, Solar Energy Inst, TR-35100 Izmir, Turkey;
2.Middle East Tech Univ, Dept Environm Engn, TR-06800 Ankara, Turkey
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Keivani, Babak,Olgun, Hayati,Atimtay, Aysel T.. Co-combustion of biocoal and lignite in a circulating fluidised bed combustor to decrease the impact on global warming[J],2019,18(2):120-137.
APA Keivani, Babak,Olgun, Hayati,&Atimtay, Aysel T..(2019).Co-combustion of biocoal and lignite in a circulating fluidised bed combustor to decrease the impact on global warming.INTERNATIONAL JOURNAL OF GLOBAL WARMING,18(2),120-137.
MLA Keivani, Babak,et al."Co-combustion of biocoal and lignite in a circulating fluidised bed combustor to decrease the impact on global warming".INTERNATIONAL JOURNAL OF GLOBAL WARMING 18.2(2019):120-137.
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