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RESEARCH PROGRESS OF RED OIL EXPLOSION ACCIDENTS IN NUCLEAR FUEL REPROCESSING PLANT

机译:核燃料加工厂中红油爆炸事故的研究进展

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Since Westinghouse Savannah River Company(WSRC) of America first applied PUREX process in 1954, PUREX process is always the top priority in nuclear fuel reprocessing plant. And this process is based on liquid to liquid extraction with TBP as the extractant. TBP is irreplaceable in the development of PUREX process in nuclear fuel reprocessing, its advantages are well recognized. However TBP does have some disadvantages such as formation of red oil, which will appear in the system of high nitric acid concentration and heavy metal nitrate, once the red oil forms, it can lead a exothermic runaway decomposition in reasonable conditions, such as exceeding a certain temperature(typically 130°C) or high acid concentration. If gas products and energy released from the decomposition reaction could not be exported in time, it will lead to vessel overpressure and caused violent explosion accidents. By now, it has happened 6 times so-called red oil explosion accidents worldwide, resulting in different degrees of equipment and construction damage and environmental contamination. From 1953 to now, research related to red oil has never stopped. WSRC , Hanford Company, Oak Ridge National Laboratory and Los Alamos National Laboratory of America have conducted many studies, as well as some research institutions from Russia , UK, France and India. Defense Nuclear Facilities Safety Board of America issued a technical report in 2003, preventive measures for red oil explosion were established in this report, and these measures provided good practice experience and reference for other countries, and the temperature condition (^130°C)and nitric acid concentration 10M)for preventing red oil explosion are employed in some countries which has built the reprocessing plant. Nevertheless, research conclusions and knowledge of red oil vary from country to country. Especially, Kumar and Smitha etc. conducted several experiments in adiabatic condition in recent years, and investigation on stability of TBP - nitric system was made, the results indicated that the red oil runway reaction will happen even in lower temperature and lower nitric acid concentration in contrast with the reported value, and they thought it would need a further study to assess the validity of present preventive measures, and to rebuild the safety limits for preventing red oil explosion in the operation of nuclear fuel reprocessing plants. In this paper, related research results of red oil explosion accidents were combed, and the characters of study work of different periods were summarized, and definition, formation conditions of red oil, pathway of runaway reaction , control and preventive measures for preventing red oil explosion of different countries were analyzed and compared, as well as the new viewpoints of recent literatures. And some research ideas for future investigation based on present work were also proposed.
机译:自美国西屋萨凡纳河公司(WSRC)于1954年首次应用PUREX工艺以来,PUREX工艺始终是核燃料后处理厂的头等大事。并且此过程基于以TBP为萃取剂的液对液萃取。 TBP在核燃料后处理的PUREX工艺开发中是不可替代的,其优势已广为人知。然而,TBP确实有一些缺点,例如形成红油,这会在高硝酸浓度和重金属硝酸盐的体系中出现,一旦形成红油,它就会在合理的条件下导致放热失控分解,例如超过某些温度(通常为130°C)或高酸浓度。如果分解反应释放出的气体产物和能量不能及时输出,将导致容器超压并引起剧烈的爆炸事故。到现在为止,它已在全球范围内发生了六次所谓的红油爆炸事故,造成了不同程度的设备和建筑损坏以及环境污染。从1953年到现在,与红油有关的研究从未停止过。 WSRC,汉福德公司,橡树岭国家实验室和美国洛斯阿拉莫斯国家实验室进行了许多研究,此外还进行了来自俄罗斯,英国,法国和印度的一些研究机构的研究。美国国防部核设施安全委员会于2003年发布了一份技术报告,该报告中确定了红油爆炸的预防措施,这些措施为其他国家/地区以及温度条件(^ 130°C)和在建立了后处理工厂的某些国家/地区采用了硝酸浓度10M)来防止红油爆炸。尽管如此,各国对红油的研究结论和知识也各不相同。特别是近年来,库马尔和史密莎等人在绝热条件下进行了多次实验,并对TBP-硝酸系统的稳定性进行了研究,结果表明即使在较低的温度和较低的硝酸浓度下,红油的跑道反应也会发生。与报告的值形成对比,他们认为需要进一步研究以评估当前预防措施的有效性,并重新建立防止核燃料后处理厂运行中发生红油爆炸的安全极限。本文对红油爆炸事故的相关研究成果进行了梳理,总结了不同时期研究工作的特点,并界定了红油爆炸的定义,形成条件,失控反应途径,防止红油爆炸的控制措施及预防措施。分析和比较了不同国家/地区,以及最近文献的新观点。并在此基础上提出了今后研究的一些研究思路。

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