刘方, 宋晨, 亢炜燎, 吴鑫, 杨丽. 纤维增韧提高载氧体抗磨损性实验研究[J]. 中国电机工程学报, 2021, 41(4): 1234-1241. DOI: 10.13334/j.0258-8013.pcsee.201650
引用本文: 刘方, 宋晨, 亢炜燎, 吴鑫, 杨丽. 纤维增韧提高载氧体抗磨损性实验研究[J]. 中国电机工程学报, 2021, 41(4): 1234-1241. DOI: 10.13334/j.0258-8013.pcsee.201650
LIU Fang, SONG Chen, KANG Weiliao, WU Xin, YANG Li. Experimental Investigation on Fiber Toughening to Improve Attrition Resistance of Oxygen Carrier[J]. Proceedings of the CSEE, 2021, 41(4): 1234-1241. DOI: 10.13334/j.0258-8013.pcsee.201650
Citation: LIU Fang, SONG Chen, KANG Weiliao, WU Xin, YANG Li. Experimental Investigation on Fiber Toughening to Improve Attrition Resistance of Oxygen Carrier[J]. Proceedings of the CSEE, 2021, 41(4): 1234-1241. DOI: 10.13334/j.0258-8013.pcsee.201650

纤维增韧提高载氧体抗磨损性实验研究

Experimental Investigation on Fiber Toughening to Improve Attrition Resistance of Oxygen Carrier

  • 摘要: 载氧体作为化学链燃烧技术中的关键环节,对其性能的研究具有重要意义。铁基载氧体由于其热力学性能良好、环保、储量丰富及价格低廉等优点,被认为最具工业应用前景的一类载氧体,但是目前其抗磨损性差、寿命短的问题极大限制了在化学链燃烧技术中的应用。基于纤维增韧陶瓷材料技术,设计载氧体在不同工况下的磨损测试实验,研究Al2O3纤维对贫铁矿载氧体增韧效果及作用机理。结果表明,Al2O3纤维虽然在一定程度上降低了载氧体的反应性,但有效提高了贫铁矿载氧体的机械强度和抗磨损性,基于Gwyn磨损方程研究了载氧体在不同工况下的磨损特性,表征结果显示增韧后的载氧体呈现出典型的纤维增韧现象。该文的工作为改良载氧体的耐磨性和寿命提供了一种新思路,对提高载氧体的寿命具有积极的作用。

     

    Abstract: Oxygen carrier (OC) is a key parameter in chemical-looping combustion technology, and it is of great importance to improve the OCs' performance. The Iron-based oxygen carrier is considered of great industrial application prospect due to its abundant reserves and low price, however, the problems such as poor attrition resistance and short life limit its application. In this study, the toughening effect and mechanism of the Al2O3 fiber on the lean iron ore oxygen carrier were systematically examined by attrition test experiment under different working conditions based on the fiber toughened ceramic material technology. The results show that Al2O3 fiber merely reduced the reactivity of oxygen carrier, but effectively improved the mechanical strength and attrition resistance of oxygen carrier with a typical fiber toughening phenomenon. By verifying the feasibility of fiber toughening in the field of chemical looping combustion, this study would provide a new idea for the improvement of OC's attrition resistance and lifetime.

     

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