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Science China-technological Sciences | 2015

Oxidation characteristics of boron particles

Yu Dan; Kong Chengdong; Zhuo Jiankun; Li Shuiqing; Yao Qiang

The oxidation characteristics of boron particles, boron-A with the diameter of 2.545 µm and boron-B with the diameter of 10.638 µm, at low temperature (<1500 K) have been investigated by thermogravimetry (TG) coupled with simultaneous differential scanning calorimetry (DSC), infrared and mass spectra. A rapid oxidation stage of boron particles, followed by a slow oxidation stage of sintered particles, is found from the TG and DSC curves. The onset temperatures of the oxidation process of boron-A particles are in the range of 806–889 K, which are at least 105 K lower than those of boron-B at the same condition. As the partial pressure of oxygen increases from 5% to 35%, the onset temperature of boron-A or boron-B particles decreases. However, when the partial pressure of oxygen is above 35%, the onset temperature becomes constant, implying a saturation effect of oxygen on the reaction rate. It indicates that the chemical adsorption of oxygen, i.e. chemical reaction, on the particle surface is the rate-limited step at the beginning of the rapid oxidation stage. Therefore, the first-order chemical reaction model is used to simulate the oxidation of boron particles, even that of the sinter. The average activation energies of the particles are 291.3 kJ/mol for boron-A and 338.4 kJ/mol for boron-B. While the average activation energies of the sintered particles are 36.35 kJ/mol for boron-A and 31.87 kJ/mol for boron-B. The pre-exponential factor of the particles is ~104, while that of the sinter is 10-1. The oxidation rate constant of boron is qualitatively mainly affected by the specific surface of the sample and the thickness of the oxide layer.


Archive | 2016

Nitrogen gas burner is thoughtlessly hanged down in advance to percussion flow part

Zhuo Jiankun; Song Shaopeng; Song Guangwu; Li Na; Yao Qiang; Pan Tao; Jin Dajian; Feng Fuxing; Xiao Xiaohua


Archive | 2015

Device for fuel pyrolysis and multifuel combustion of coking of prevention and control low order coal deposition

Zhuo Jiankun; Shang Tiankun; Xiao Zhenghang; Li Shuiqing; Yao Qiang


Proceedings of the Combustion Institute | 2017

機能性ナノ粒子の火炎アシスト溶射合成中の液滴ナノ粒子への遷移のレーザ研究【Powered by NICT】

Liu Chenyang; Li Shuiqing; Zong Yichen; Yao Qiang; D Tse Stephen


Proceedings of the Combustion Institute | 2017

促進低温触媒酸化特性を持った新規な三成分ナノ触媒Pd/CeO_2TiO_2の火炎合成【Powered by NICT】

Wang Nafeng; Li Shuiqing; Zong Yichen; Yao Qiang; Zhang Yiyang


Proceedings of the Combustion Institute | 2017

高ナトリウム褐炭燃焼の初期段階における超微粒子サイズ分布の測定と数値シミュレーション【Powered by NICT】

Gao Qi; Li Shuiqing; Yang Mengmeng; Biswas Pratim; Yao Qiang


Proceedings of the Combustion Institute | 2017

アルミニウムナノ粒子凝集体の燃焼:温和な酸化微小爆発まで【Powered by NICT】

Tang Yong; Kong Chengdong; Zong Yichen; Li Shuiqing; Zhuo Jiankun; Yao Qiang


Archive | 2017

Impinging stream part pre-mixing low-nitrogen gas combustor

Zhuo Jiankun; Song Shaopeng; Song Guangwu; Li Na; Yao Qiang; Pan Tao; Jin Dajian; Feng Fuxing; Xiao Xiaohua


Zhongguo Dianji Gongcheng Xuebao | 2016

天然ガスの低炭素燃焼特性に及ぼす燃料分級と煙道ガス再循環の影響の機構を研究した。【JST・京大機械翻訳】

Song Shaopeng; Zhuo Jiankun; Li Na; Yao Qiang; Jiao Weihong; Song Guangwu; Pan Tao


Zhongguo Dianji Gongcheng Xuebao | 2016

石炭火力発電所の超低排出技術ルートと協同除去【JST・京大機械翻訳】

Shi Wenzheng; Yang Mengmeng; Zhang Xuhui; Li Shuiqing; Yao Qiang

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Yu Dan

Tsinghua University

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