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Potential explosion hazard of carbonaceous nanoparticles: Explosion parameters of selected materials

机译:碳质纳米颗粒的潜在爆炸危险:所选材料的爆炸参数

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Following a previous explosion screening study, we have conducted concentration and ignition energy scans on several carbonaceous nanopowders: fullerene, SWCNT, carbon black, MWCNT, graphene, CNF, and graphite. We have measured minimum explosive concentration (MEC), minimum ignition energy (MIE), and minimum ignition temperature (MITcloud) for these materials. The nanocarbons exhibit MEC 10(1)-10(2) g/m(3), comparable to the MEC for coals and for fine particle carbon blacks and graphites. The nanocarbons are confirmed mainly to be in the St-1 explosion class, with fullerene, at K-St 200 bar-m/s, borderline St-1/St-2. We estimate MIE 10(2)-10(3) J, an order of magnitude higher than the MIE for coals but an order of magnitude lower than the MIE for fine particle graphites. While the explosion severity of the nanocarbons is comparable to that of the coals, their explosion susceptibility (ease of ignition) is significantly less (i.e., the nanocarbons have higher MIEs than do the coals); by contrast, the nanocarbons exhibit similar explosion severity to the graphites but enhanced explosion susceptibility (i.e., the nanocarbons have lower MIEs than do the graphites). MITcloud > 550 degrees C, comparable to that of the coals and carbon blacks. Published by Elsevier B.V.
机译:经过先前的爆炸筛查研究,我们对几种碳质纳米粉进行了浓度和点火能量扫描:富勒烯,SWCNT,炭黑,MWCNT,石墨烯,CNF和石墨。我们已经测量了这些材料的最低爆炸物浓度(MEC),最低点燃能量(MIE)和最低点燃温度(MITcloud)。纳米碳的MEC为10(1)-10(2)g / m(3),与煤炭,细颗粒炭黑和石墨的MEC相当。纳米碳主要被确认为具有富勒烯的St-1爆炸级别,具有K-St 200 bar-m / s,边界为St-1 / St-2。我们估计MIE 10(2)-10(3)J,比煤的MIE高一个数量级,但比细颗粒石墨的MIE低一个数量级。尽管纳米碳的爆炸强度与煤相当,但其爆炸敏感性(易燃性)却要低得多(即,纳米碳的MIE比煤高)。相比之下,纳米碳的爆炸强度与石墨相似,但爆炸敏感性更高(即,纳米碳的MIE比石墨低)。 MITcloud> 550摄氏度,与煤炭和炭黑相当。由Elsevier B.V.发布

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