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Experimental study on foaming properties of anion-cation compound foaming agent to prevent coal spontaneous combustion

机译:阴离子阳离子复合发泡剂发泡性能试验研究,以防止煤自燃

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摘要

In this study, an anion-cation compound foaming agent (ACFA) was proposed based on the synergistic mechanism, so as to realize efficient production of low-concentration foam for preventing coal spontaneous combustion. The foaming and coal spontaneous combustion prevention properties of ACFA and anion compound foaming agent (AFA) were investigated by using Foamscan and the coal spontaneous combustion testing system, respectively. The results show that foaming speeds of the two agents both increase with the rise of concentration. The critical micelle concentrations of ACFA and AFA are 1 parts per thousand and 4 parts per thousand, respectively. Compared with AFA, ACFA can reach the required foam volume faster. Besides, the foam produced by ACFA can stabilize 115% longer and maintain its effect longer, because ACFA contains more liquid than AFA at the critical micelle concentration. Moreover, the densely and uniformly distributed foam produced by ACFA can more effectively prevent oxygen from feeding the coal. Since coal samples treated with ACFA and AFA both boast high inhibition rates, they can serve as foam fire-extinguishing agents to prevent coal spontaneous combustion in underground mines, but ACFA is more efficient and economical.
机译:在该研究中,提出了基于协同机制的阴离子化合物发泡剂(ACFA),以实现有效生产低浓度泡沫以防止煤自燃。通过使用泡沫和煤自燃试验系统,研究了ACFA和阴离子复合发泡剂(AFA)的发泡和煤自燃性能预防性能。结果表明,两种剂的发泡速度随着浓度的升高而增加。 ACFA和AFA的临界胶束浓度分别为每千和4份每千份。与AFA相比,ACFA可以更快地达到所需的泡沫体积。此外,ACFA产生的泡沫可以稳定115%,因为ACFA在临界胶束浓度下含有比AFA更多的液体。此外,通过ACFA产生的密集和均匀分布的泡沫可以更有效地防止氧气进料煤。由于用ACFA和AFA处理的煤样品均具有高抑制率,因此它们可以作为泡沫灭火剂,以防止地下矿山的煤炭自燃,但ACFA更有效和经济。

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