CIESC Journal ›› 2019, Vol. 70 ›› Issue (3): 1236-1242.DOI: 10.11949/j.issn.0438-1157.20180654
• Process safety • Previous Articles
Tianshui LIANG1(),Zongying WANG1,Kun GAO1,Runwan LI1,Zheng WANG2,Wei ZHONG1(),Jun ZHAO1
Received:
2018-06-14
Revised:
2018-11-24
Online:
2019-03-05
Published:
2019-03-05
Contact:
Wei ZHONG
梁天水1(),王宗莹1,高坤1,李润婉1,王铮2,钟委1(),赵军1
通讯作者:
钟委
作者简介:
<named-content content-type="corresp-name">梁天水</named-content>(1981—),男,博士,副教授,<email>liangtsh@zzu.edu.cn</email>|钟委(1978—),男,博士,副教授,<email>zhongwei@zzu.edu.cn</email>
基金资助:
CLC Number:
Tianshui LIANG, Zongying WANG, Kun GAO, Runwan LI, Zheng WANG, Wei ZHONG, Jun ZHAO. Analysis of fire suppression effectiveness of ultra-fine water mist containing iron compounds additives in cup burner[J]. CIESC Journal, 2019, 70(3): 1236-1242.
梁天水, 王宗莹, 高坤, 李润婉, 王铮, 钟委, 赵军. 基于cup burner的含铁基添加剂超细水雾灭火有效性分析[J]. 化工学报, 2019, 70(3): 1236-1242.
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URL: https://hgxb.cip.com.cn/EN/10.11949/j.issn.0438-1157.20180654
二茂铁分散液浓度/%(mass) | 二茂铁质量/g | surfynol 465体积/ml |
---|---|---|
0 | 0 | 40 |
0.0040 | 0.8 | 40 |
0.0055 | 1.1 | 40 |
0.0065 | 1.3 | 40 |
0.0075 | 1.5 | 40 |
0.0080 | 1.6 | 40 |
0.0100 | 2.0 | 40 |
0.0150 | 3.0 | 40 |
Table 1 Preparation parameter of ferrocene dispersions
二茂铁分散液浓度/%(mass) | 二茂铁质量/g | surfynol 465体积/ml |
---|---|---|
0 | 0 | 40 |
0.0040 | 0.8 | 40 |
0.0055 | 1.1 | 40 |
0.0065 | 1.3 | 40 |
0.0075 | 1.5 | 40 |
0.0080 | 1.6 | 40 |
0.0100 | 2.0 | 40 |
0.0150 | 3.0 | 40 |
1 | Adiga K C , Hatcher Jr R F , Sheinson R S , et al . A computational and experimental study of ultra fine water mist as a total flooding agent[J]. Fire Safety Journal, 2007, 42(2): 150-160. |
2 | 裴蓓, 余明高, 陈立伟, 等 . CO2-双流体细水雾抑制管道甲烷爆炸实验[J]. 化工学报, 2016, 67(7): 3101-3108. |
Pei B , Yu M G , Chen L W , et al . Suppression effect of CO2-twin fluid water mist on methane/air explosion invented duct[J]. CIESC Journal, 2016, 67(7): 3101-3108. | |
3 | 纪虹, 杨克, 黄维秋, 等 . 超细水雾协同甲烷氧化菌降解与抑制甲烷爆炸的实验研究[J]. 化工学报, 2017, 68(11): 4461-4468. |
Ji H , Yang K , Huang W Q , et al . Methane degradation and explosion inhibition by using ultrafine water mist containing methane oxidative bacteria-inorganic salt[J]. CIESC Journal, 2017, 68(11): 4461-4468. | |
4 | Adiga K C . Ultrafine water mist fire suppression technology[J]. Fire Engineering, 2005, 158(1): 197-200. |
5 | Ramagopal A , Richard C . Ultra-fine water mist extinction dynamics of a co-flow diffusion flame[J]. Combustion Science & Technology, 2008, 180(9): 1659-1692. |
6 | Iii G G B , Beyler C L , Hansen R . The capabilities and limitations of total flooding, water mist fire suppression systems in machinery space applications[J]. Fire Technology, 2000, 36(1): 8-23. |
7 | 余明高, 吴丽洁, 万少杰, 等 . 含NaCl荷电细水雾对甲烷爆炸火焰传播的抑制特性[J]. 化工学报, 2017, 68(11): 4445-4452. |
Yu M G , Wu L J , Wan S J , et al . Inhibition characteristics on methane explosion flame propagation affected by charged water mist containing sodium chloride additive[J]. CIESC Journal, 2017, 68(11): 4445-4452. | |
8 | Korobeinichev O P , Shmakov A G , Shvartsberg V M , et al . Fire suppression by low-volatile chemically active fire suppressants using aerosol technology[J]. Fire Safety Journal, 2012, 51(4): 102-109. |
9 | 梁天水, 李润婉, 张单单, 等 . 含添加剂细水雾熄灭醇类火焰的有效性实验研究[J]. 郑州大学学报(工学版), 2018, 39(3): 5-9. |
Liang T S , Li R W , Zhang D D , et al . Experimental study on the effectiveness of water mist containing additives to extinguish alcohol flame[J]. Zhengzhou University Journal (Engineering Science), 2018, 39(3): 5-9. | |
10 | 廖光煊, 丛北华, 况凯骞 . 铁基添加剂增强细水雾灭火性能的实验研究[J]. 工程热物理学报, 2005, 26(S1): 273-276. |
Liao G X , Cong B H , Kuang K Q . Experimental study on the fire suppression effectiveness of water mist with iron compounds additives[J]. Journal of Engineering Thermophysics, 2005, 26(S1): 273-276. | |
11 | 余明高, 郝强, 段玉龙, 等 . 二茂铁灭火实验平台研制与灭火有效性研究[J]. 火灾科学, 2007, 16(2): 86-90. |
Yu M G , Hao Q , Duan Y L , et al . Study on experimental platform and fire suppression effectiveness of ferrocene[J]. Fire Safety Science, 2017, 16(2): 86-90. | |
12 | Reinelt D , Linteris G T . Experimental study of the inhibition of premixed and diffusion flames by iron pentacarbonyl[J]. Symposium on Combustion, 1996, 26(1): 1421-1428. |
13 | Guo H , Liu H . Ferrocene-based fire extinguishing composition: US8778213[P]. 2014. |
14 | Koshiba Y , Iida K , Ohtani H . Fire extinguishing properties of novel ferrocene/surfynol 465 dispersions[J]. Fire Safety Journal, 2015, 72: 1-6. |
15 | Koshiba Y , Ohtani H . Extinguishing pool fires with aqueous ferrocene dispersions containing gemini surfactants[J]. Journal of Loss Prevention in the Process Industries, 2016, 40: 10-16. |
16 | Koshiba Y , Okazaki S , Ohtani H . Experimental investigation of the fire extinguishing capability of ferrocene-containing water mist[J]. Fire Safety Journal, 2016, 83: 90-98. |
17 | 李志峰, 左秋玲 . 二茂铁对正庚烷池火抑制特性的实验研究[J]. 消防科学与技术, 2010, 29(9): 752-754. |
Li Z F , Zuo Q L . Study on suppression characteristic of heptane fire and ferrocene[J]. Fire Science and Technology, 2010, 29(9): 752-754. | |
18 | Vnapee M , Shirodkar P P . A study of flame inhibition by metal compounds[J]. Symposium on Combustion, 1979, 17(1): 787-795. |
19 | Rumminger M D , Reinelt D , Babushok V , et al . Numerical study of the inhibition of premixed and diffusion flames by iron pentacarbonyl[J]. Combustion & Flame, 1999, 128(1/2): 145-164. |
20 | Rumminger M D , Linteris G T . Numerical modeling of counter flow diffusion flames inhibited by iron pentacarbonyl[J]. Fire Safety Science, 2000, 6: 289-300. |
21 | Linteris G T . Final Report: Effective Non-Toxic Metallic Fire Suppressants [R]. USA: NIST, 2002. |
22 | Underwriters Laboratories Inc . Standard for halocarbon clean agent extinguishing system units: UL-2166[S]. USA: Northbrook, 1999. |
23 | National Fire Protection Association . Standard for clean agent fire extinguishing systems: NFPA 2001[S]. USA: Quincy, 2004. |
24 | Liang T S , Li R W , Li J , et al . Extinguishment of hydrocarbon pool fires by ultrafine water mist with ammonium/amidogen compound in an improved cup burner[J]. Fire & Materials, 2018, (3): 1-8. |
25 | Zhang T W , Han Z Y , Du Z M , et al . Application of thermal mechanism to evaluate the effectiveness of the extinguishment of CH4 /air cup-burner flame by water mist with additives[J]. International Journal of Hydrogen Energy, 2016, 41(33): 15078-15088. |
26 | Kresse G , Furthmuller J . Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set[J]. Computational Materials Science, 1996, 6(1): 15-50. |
27 | Kresse G , Furthmuller J . Efficient iterative schemes for ab initio total-energy calculations using a plane-wave basis set[J]. Phys. Rev. B Condens. Matter, 1996, 54(16): 11169-11186. |
28 | Perdew J P , Burke K , Ernzerhof M . Generalized gradient approximation made simple[J]. Physical Review Letters, 1996, 77(18): 3865-3868. |
29 | Blöchl P E . Projector augmented-wave method[J]. Phys. Rev. B Condens. Matter, 1994, 50(24): 17953-17979. |
30 | Wang Z Y , Liang T S , Yang, Y P, et al . High chemisorption abilities of hydrogen and oxygen on ultrasmall iron clusters: a first-principles study[J]. Chemical Physics Letters, 2018, 705: 59-64. |
31 | 杨晓丽, 苏雄, 杨小峰, 等 . 负载型金属催化剂的热稳定机制[J]. 化工学报, 2016, 67(1): 73-82. |
Yang X L , Su X , Yang X F , et al . Stabilization mechanism of supported metal catalyst[J]. CIESC Journal, 2016, 67(1): 73-82. | |
32 | Yang X F , Wang A , Qiao B , et al . Single-atom catalysts: a new frontier in heterogeneous catalysis[J]. Accounts of Chemical Research, 2013, 46(8): 1740. |
33 | 唐华浩, 孙俊, 李格升, 等 . 乙醇预混层流火焰结构的模拟研究[J]. 武汉理工大学学报, 2009, 31(2): 66-69. |
Tang H H , Sun J , Li G S , et al . Simulation research of 1D laminar premix flame[J]. Journal of Wuhan University of Technology, 2009, 31(2): 66-69. | |
34 | 秦先锋, 袁银男, 李仁春, 等 . 正庚烷低压预混燃烧火焰中间产物生成特性分析[J]. 机械设计与制造, 2014, (3): 262-264. |
Qin X F , Yuan Y N , Li R C , et al . Combustion intermediate radical characteristics of n-heptane in a low-pressure premixed laminar flame[J]. Machinery Design & Manufacture, 2014, (3): 262-264. |
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