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Ignitability assessment of shredder dusts of refrigerator and the prevention of the dust explosion

机译:冰箱切碎粉尘的可燃性评估及粉尘爆炸的预防

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摘要

Explosibility of polyurethane dusts produced in the recycling process of refrigerator and the ways to prevent the dust explosion were studied. In recent years, cyclopentane is often used as the foaming agent and this produces explosive atmosphere in the shredding process. The minimum explosive concentration of polyurethane dust, influence of coexisting cyclopentane gas on the explosibility, effect of relative humidity on the minimum explosive concentration of polyurethane dusts, the minimum ignition energy, influence of cyclopentane mixture on the explosion severity, etc. were investigated. The minimum explosive dust concentration decreased with the increase of cyclopentane concentration and increased with the increase of relative humidity. The minimum ignition energy was about 11 mJ. The ignition energy decreased with the increase of the cyclopentane gas concentration. The cyclopentane gas concentration up to about 5300 ppm did not influence too much on the explosion index (K{sub}(st)) and maximum explosion pressure. From these, it would be a good way to increase the relative humidity and to regulate the cyclopentane concentration in the shredding process to prevent the dust explosion hazard.
机译:研究了冰箱回收过程中产生的聚氨酯粉尘的爆炸性及防止粉尘爆炸的方法。近年来,环戊烷经常被用作发泡剂,这在切碎过程中产生爆炸性气氛。研究了聚氨酯粉尘的最低爆炸浓度,并存的环戊烷气体对爆炸性的影响,相对湿度对聚氨酯粉尘的最低爆炸浓度的影响,最小着火能量,环戊烷混合物对爆炸强度的影响等。最小爆炸粉尘浓度随环戊烷浓度的增加而降低,随相对湿度的增加而增加。最小点火能量约为11 mJ。点火能量随环戊烷气体浓度的增加而降低。高达约5300 ppm的环戊烷气体浓度对爆炸指数(K {sub}(st))和最大爆炸压力没有太大影响。由此,在切碎过程中增加相对湿度和调节环戊烷浓度是一个很好的方法,可以防止扬尘爆炸的危险。

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