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DOI10.1016/j.proci.2018.09.012
Development of a wide range-operable, rich-lean low-NOx combustor for NH3 fuel gas-turbine power generation
Kurata, Osamu1; Iki, Norihiko1; Inoue, Takahiro1; Matsunuma, Takayuki1; Tsujimura, Taku2; Furutani, Hirohide2; Kawano, Masato3; Arai, Keisuke3; Okafor, Ekenechukwu Chijioke4; Hayakawa, Akihiro4; Kobayashi, Hideaki4
发表日期2019
ISSN1540-7489
EISSN1873-2704
卷号37期号:4页码:4587-4595
英文摘要

Low-NOx NH3-air combustion power generation technology was developed by using a 50-kWe class micro gas-turbine system at the National Institute of Advanced Industrial Science and Technology (AIST), Japan, for the first time. Based on the global demand for carbon-free power generation as well as recent advances involving gas-turbine technologies, such as heat-regenerative cycles, rapid fuel mixing using strong swirling flows, and two-stage combustion with equivalence ratio control, we developed a low-NOx NH3-air non-premixed combustor for the gas-turbine system. Considering a previously performed numerical analysis, which proved that the NO reduction level depends on the equivalence ratio of the primary combustion zone in a NH3-air swirl burner, an experimental study using a combustor test rig was carried out. Results showed that eliminating air flow through primary dilution holes moves the point of the lowest NO emissions to the lesser fuel flow rate. Based on findings derived by using a test rig, a rich-lean low NOx combustor was newly manufactured for actual gas-turbine operations. As a result, the NH3 single fueled low-NOx combustion gas-turbine power generation using the rich-lean combustion concept succeeded over a wide range of power and rotational speeds, i.e., below 10-40 kWe and 75,000-80,000 rpm, respectively. The NO emissions were reduced to 337 ppm (16% O-2), which was about one-third of that of the base system. Simultaneously, unburnt NH3 was reduced significantly, especially at the low electrical power output, which was indicative of the wider operating range with high combustion efficiency. In addition, N2O emissions, which have a large Global Warming Potential (GWP) of 298, were reduced significantly, thus demonstrating the potential of NH3 gas-turbine power generation with low environmental impacts. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.


WOS研究方向Thermodynamics ; Energy & Fuels ; Engineering
来源期刊PROCEEDINGS OF THE COMBUSTION INSTITUTE
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/90715
作者单位1.Natl Inst Adv Ind Sci & Technol, Res Inst Energy Conservat, Turbomachinery Grp, Namiki 1-2, Tsukuba, Ibaraki 3058564, Japan;
2.Natl Inst Adv Ind Sci & Technol, Fukushima Renewable Energy Inst, Koriyama, Fukushima 9630298, Japan;
3.Toyota Energy Solut Inc, Toyota, Aichi 4718573, Japan;
4.Tohoku Univ, Inst Fluid Sci, Sendai, Miyagi 9808577, Japan
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GB/T 7714
Kurata, Osamu,Iki, Norihiko,Inoue, Takahiro,et al. Development of a wide range-operable, rich-lean low-NOx combustor for NH3 fuel gas-turbine power generation[J],2019,37(4):4587-4595.
APA Kurata, Osamu.,Iki, Norihiko.,Inoue, Takahiro.,Matsunuma, Takayuki.,Tsujimura, Taku.,...&Kobayashi, Hideaki.(2019).Development of a wide range-operable, rich-lean low-NOx combustor for NH3 fuel gas-turbine power generation.PROCEEDINGS OF THE COMBUSTION INSTITUTE,37(4),4587-4595.
MLA Kurata, Osamu,et al."Development of a wide range-operable, rich-lean low-NOx combustor for NH3 fuel gas-turbine power generation".PROCEEDINGS OF THE COMBUSTION INSTITUTE 37.4(2019):4587-4595.
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