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克拉维酸钾微晶纤维素混粉爆炸参数测定研究 被引量:10

The research on medicinal mix dust explosion characteristic of potassium Clavulanate and microcrystalline cellulose
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摘要 对引起克拉维酸钾微晶纤维素粉尘发生爆炸的相关条件进行了试验研究。取克拉维酸钾微晶纤维素1∶1混合粉尘,利用20 L球形粉尘爆炸测试装置。结果表明:①随着含湿量的增加,粉尘爆炸下限值也增加。②测试结果得出,粉尘最低着火温度为210℃;粉尘云的最低着火温度为370℃。③随着粉尘质量浓度的提高,最大爆炸压力也随着提高;纯克拉维酸钾粉尘的爆炸压力都要超过混合粉尘。④惰化试验结果表明,氧气体积分数低于14.6%时,粉尘不爆炸;为15.5%时爆炸特别猛烈。结论:可为药物粉尘爆炸事故防护措施提供参考。 The correlated conditions attracting mix dust explosion of potassium Clavulanate and microcrystatlline cellulose has been experimentally studied. Taking a mixture of potassium Clavulanate and microcrystalline cellulose in proportion of 1 : 1, and the 20 L spherical dust explosion plant was adopted. Results show that: (1)The lower explosion limit value of the dust raises as the moisture content increases. (2) The lowest ignition point of the dust is 210℃, which of the dust cloud is 370 ℃.(3)The largest explosive pressure raises as the mass concentration of the dust increases. The explosive pressure of pure potassium Clavulanate dust is bigger than that of mix dust. (4)When volume concentration of oxygen is lower than 14.6%, the dust doesn' t explode. When volume concentration of oxygen equals 15.5%, the explosion is especially violence. Conclusion: It may provide reference for prevention measures of medicinal dust explosion.
出处 《消防科学与技术》 CAS 北大核心 2009年第11期800-802,共3页 Fire Science and Technology
基金 上海市教育委员会重点学科资助(J51502)
关键词 粉尘 粉尘浓度 爆炸性粉尘混合物 dust dust concentration explosive dust mixture
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  • 1张景林,肖林,寇丽平,王晶禹.气体爆炸抑制技术研究[J].兵工学报,2000,21(3):261-263. 被引量:24
  • 2谭迎新,张景林,张小春.可燃气体(或蒸汽)爆炸特性参数测定[J].兵工学报,1995,16(2):56-60. 被引量:17
  • 3杨源林.瓦斯煤尘爆炸的超压计算与预防[J].煤炭工程师,1996(2):32-37. 被引量:13
  • 4MASRI A R, IBRAHIM S S, NEHZAT N, et al. Experimental study of premixed flame propagation over various solid obstructions [ J]. Experimental Thermal and Fluid Science,2000, 21(1): 109-116.
  • 5BAGABIR A, DRIKAKIS D. Shock-wave induced instability in internal explosion dynamics[J]. Aeronautical Journal, 2005, 109(1101): 537-553.
  • 6LIPANOV A M, ALIEV A V, BODNAR T A, et al. Flame propagation in a closed deformable channel. Combustion[J]. Explosion and Shock Waves, 1990, 26(3): 273-279.
  • 7WANG Cong-yin, HE Xue-qiu, YANG Yi. Experimental study of pressure generated by gas explosion [J]. Progress in Safety Science and Technology, 2004, 4(A) : 1618-1621.
  • 8JIAN Cong-guang, GAO Jian-kang, ZHANG Hui, et al. The experimental study on the influence of open/closed-end conduit on gas explosion transmission characteristic[J]. Progress in Safety Science and Technology, 2005(10):1090-1095.
  • 9W g Baker, P A Cox, P S Westine, et al. Explcsion hazards and evaluation . Elsevier, 1983.
  • 10李贵林 廖强 邓煦帆.几种粮食与纤维粉尘层最低着火温度及其测试装置研究.工业粉尘防爆与治理[C](北京:中国科学技术出版社),1990,:49-49.

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