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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >R&D of colloid components of composite material for fire prevention and extinguishing and an investigation of its performance
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R&D of colloid components of composite material for fire prevention and extinguishing and an investigation of its performance

机译:复合材料胶体组分的胶体组分,用于防火和灭火及其性能调查

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Because the existing fire prevention and extinguishing materials for coal mining cannot adhere to coal for long periods of time, this study investigated their colloid components. A colloid recipe of sodium silicate as the base material, sodium bicarbonate as the coagulation accelerator and sodium polyactylate as the polymer additive was determined. An optimum proportion was obtained by orthogonal tests, whereby the ratio of water to solid was 4:1, sodium silicate accounted for 4%, sodium bicarbonate accounted for 5% and sodium polyacrylate accounted for 0.75 parts per thousand. Comparing the performance of four other typical materials of fire prevention and extinguishing through contrast experiments, we observed that the new material has advantages of dropping the temperature, lowering the concentration of oxygen and carbon monoxide and increasing the concentration of carbon dioxide. In addition, a field test was conducted with the new material. After injection, three zones of spontaneous combustion showed clear changes: the oxidation temperature rise zone was ahead by 8 m, its length was shortened by 20 m and the choking zone moved up by 28 m. These changes indicated the improvement of colloid could significantly increase the effect of fire prevention and extinguishing materials. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:由于现有的防火和煤炭灭火材料长时间不能粘附于煤炭,这项研究调查了它们的胶体成分。确定硅酸钠作为基础材料的胶体配方,作为聚合物添加剂作为凝固促进剂的碳酸氢钠和聚酰胺酸钠。通过正交试验获得最佳比例,由此水与固体的比例为4:1,硅酸钠占4%,碳酸氢钠占5%,聚丙烯酸钠占0.75份每千份。比较通过对比实验的四种其他典型材料的防火和灭火的性能,观察到新材料具有降低温度的优点,降低氧气和一氧化碳浓度并增加二氧化碳的浓度。此外,用新材料进行现场测试。注射后,三个区域的自发燃烧显示出明显的变化:氧化温度上升区域提前8米,其长度缩短20米,窒息区向上移动28米。这些变化表明胶体的改善可以显着提高防火和灭火材料的效果。 (c)2017年化学工程师机构。 elsevier b.v出版。保留所有权利。

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