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An Integrated Process for Recycling of ThO<sub>2</sub>Based Mixed Oxide Rejected Nuclear Fuel Pellets
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作者 Gitender Singh Prashal M. Khot +3 位作者 Pradeep Kumar Chetan Baghra Raj Bhushan Bhatt Praveen G. Behere 《World Journal of Nuclear Science and Technology》 2017年第4期309-330,共22页
This paper presents a study on the process engineering aspects of relevance to the industrial implementation of ThO2 and (Th, U)O2 mixed oxide (MOX) pellet type fuel manufacturing. The paper in particular focuses on t... This paper presents a study on the process engineering aspects of relevance to the industrial implementation of ThO2 and (Th, U)O2 mixed oxide (MOX) pellet type fuel manufacturing. The paper in particular focuses on the recycling of thoria based fuel production scrap which is an economically important component in the fuel manufacturing process. The thoria based fuels are envisaged for Advanced Heavy Water Reactor (AHWR) and other reactors important to the Indian Nuclear Power Programme. A process was developed for recycling the chemically clean, off-specification and defective sintered ThO2 and (Th, U)O2 MOX nuclear fuel pellets. ThO2 doesn’t undergo oxidation or reduction and thus, more traditional methods of recycling are impractical. The integrated process was developed by combining three basic approaches of recycling namely mechanical micronisation, air oxidation (for MOX) and microwave dissolution-denitration. A thorough investigation of the influence of several variables as heating method, UO2 content, fluoride and polyvinyl alcohol (PVA) addition during microwave dissolution-denitration was recorded on the product characteristics. The suitability evaluation of the recycled powder for re-fabrication of the fuel was carried out by analyzing the particle size, BET specific surface area, phase using XRD, bulk density and impurities. The physical and chemical properties of recycled powder obtained from the sintered (Th1-y, Uy)O2 (y;0 - 30 wt%) pellets advocate 100% utilisation for fuel re-fabrication. Recycled ThO2 by integrated process showed distinctly high sinterability compared to standard powder evaluated in terms of surface area and particle size. 展开更多
关键词 ThO2 MOX (Th U)O2 ahwr RECYCLING Microwave DENITRATION
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大型反应堆堆芯空间控制技术发展趋势 被引量:2
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作者 方愿捷 费敏锐 +2 位作者 钱虹 王灵 杜大军 《自动化仪表》 CAS 2019年第8期1-7,共7页
堆芯作为大型反应堆的核心,容易受到氙诱导的空间振荡效应影响。在堆芯控制策略影响下,通常堆芯的平均功率能够保持恒定,但堆芯功率分布并不一致。特别在极端恶劣情形下,会引发核电站事故。堆芯功率空间控制技术通过对反应堆进行区域划... 堆芯作为大型反应堆的核心,容易受到氙诱导的空间振荡效应影响。在堆芯控制策略影响下,通常堆芯的平均功率能够保持恒定,但堆芯功率分布并不一致。特别在极端恶劣情形下,会引发核电站事故。堆芯功率空间控制技术通过对反应堆进行区域划分,建立堆芯节点模型实现状态空间表达;借助奇异摄动方法降阶模型,基于输出/状态反馈架构设计控制系统调节器,最终达到抑制反应堆的空间振荡、精确控制各子区域功率的目标。针对大型反应堆堆芯控制方法的不同区域划分堆芯节点模型和状态空间进行综述,并从反馈形式上对空间控制方法进行分类与分析。对比和总结了系统模型和控制技术,为该领域的进一步研究提供参考。 展开更多
关键词 核电 加压重水堆 先进重水堆 堆芯功率控制 空间振荡 堆芯节点模型 空间控制
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