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Cause analysis of the fire and explosion of asphalt-salt mixture in a nuclear wastes processing plant

机译:核废料加工厂沥青盐混合物着火和爆炸的原因分析

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摘要

In order to explain the detailed cause of the fire and explosion of asphalt-salt mixture (ASM) that happened at a nuclear wastes processing plant in Japan on March 11, 1997, a special experiment device was designed to prepare the ASM samples under different feeding rate of the waste and in different concentration of phosphate in the waste. The structure and diameter distribution of salt particles in the ASMs were examined by using a scanning electron microscope, the specific surface area of the salt particles was measured by the BET method, and the reactivity of ASMs was measured by using a heat flux calorimeter (C80). It was found that both the concentration of phosphate in the waste and the feeding rate of the waste have great influences on the structure of salt particles and the reactivity of the ASM. Most of the salt particles in the ASM are porous and have larger specific surface area when prepared at low feeding rate of the waste containing phosphate, which causes the ASM has lower onset temperature and self-accelerating decomposition temperature (SADT).
机译:为了解释1997年3月11日在日本一家核废料加工厂发生的沥青-盐混合物(ASM)着火和爆炸的详细原因,设计了一种特殊的实验装置,以不同的进料量制备ASM样品。废物的比率以及废物中磷酸盐的不同浓度。通过使用扫描电子显微镜检查ASM中盐颗粒的结构和直径分布,通过BET方法测量盐颗粒的比表面积,并使用热通量热仪(C80)测量ASM的反应性)。发现废物中磷酸盐的浓度和废物的进料速率都对盐颗粒的结构和ASM的反应性有很大影响。在低进料速率的含磷酸盐废物中制备时,ASM中的大多数盐颗粒都是多孔的,具有较大的比表面积,这导致ASM的起始温度和自加速分解温度(SADT)较低。

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