Improving the Efficiency of Water Fire Extinguishing Systems Operation by Using Guanidine Polymers

T. Maglyovana, T. Nyzhnyk, S. Stas, D. Kolesnikov, T. Strikalenko
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引用次数: 2

Abstract

This study has established the possibility of obtaining water extinguishing agents, which can reduce hydraulic resistance (with the Toms effect) by using guanidine derivatives. A cationic polyhexamethylene guanidine hydrochloride surfactant with a molecular weight of 10,000–11,000 u was used for experimental study. It has been shown that the addition of insignificant concentrations (0.03–0.290 %) of polyhexamethylene guanidine hydrochloride, which belongs to class IV of toxicity and is an effective inhibitor of biocorrosion, increases a flow rate of water fire extinguishing agent by 1.20–1.78 times when using the RSK-50 fire barrel. We have established experimentally an increase in the flow rate of a polymer solution from drencher nozzles by 1.86–7.69 % in the concentration range (0.3–1.4 %) along the examined pipeline (1 m and 13 m). An increase in pressure by 2–6 % has been observed compared with the initial values under such conditions. The used polymer has properties of a "biologically soft" surfactant and meets high environmental requirements of the environmental protection and rational use of natural resources. One can use it to develop formulations for environmentally acceptable water extinguishing agents and their application in firefighting practice. The above allows us to argue that the directed use of salts of polyhexamethylene guanidine hydrochloride is possible to reduce hydraulic losses in water extinguishing systems. One can apply them to improve engineering and technical measures for preventing and responding to emergencies
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利用胍类聚合物提高水灭火系统的运行效率
本研究建立了利用胍类衍生物获得水灭火剂的可能性,这种灭火剂可以降低水力阻力(具有汤姆斯效应)。采用分子量为10000 ~ 11000 μ u的阳离子聚六亚甲基胍盐酸盐表面活性剂进行了实验研究。结果表明,在使用RSK-50型灭火筒时,加入浓度不显著(0.03 - 0.290%)的聚六亚甲基胍可使水灭火剂的流量增加1.20-1.78倍。聚六亚甲基胍属于IV类毒性,是一种有效的生物腐蚀抑制剂。我们已经通过实验确定,在检测管道(1米和13米)的浓度范围内(0.3 - 1.4%),从淋雨喷嘴流出的聚合物溶液的流速增加了1.86 - 7.69%。与此条件下的初始值相比,压力增加了2 - 6%。该聚合物具有“生物软”表面活性剂的特性,符合环境保护和合理利用自然资源的高环境要求。人们可以用它来开发环境可接受的水灭火剂配方及其在消防实践中的应用。综上所述,我们认为直接使用聚六亚甲基胍盐酸盐可以减少水灭火系统中的水力损失。我们可以应用它们来改进预防和应对突发事件的工程和技术措施
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