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The Computing Method of Desulfurization Degree and the Effect of Inhibiting the Spontaneous Combustion of Sulfide Ores by Bacteria Desulfurization

机译:细菌脱硫脱硫度的计算方法及抑制硫化物矿物自燃燃烧的影响

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Acidophilus bacteria desulfurization column leaching was used to explore the effect of the desulfurization of metal sulfide ore and the feasibility of inhibiting the spontaneous combustion.The calculation method of desulfurization rate was discussed moreover.Uniform design was used in the experiment whose factors include initial pH value, the liquid arrangement intensity and average particle size of ore.The regression analysis of desulfurization rates by liquid shows that the liquid arrangement intensity influences the desulfurization rate most, ore particle size followed, and pH the least.Liquid arrangement intensity and pH are positively correlated with the desulfurization rate, while ore particle size negatively.The result of SEM shows that the sulfur content of the ore surface isreduced from about43% to 15% or less.The ore flammability is lower than before and the surface desulfurization rate is65%.Comparing with the traditional calculation method of desulfurization rate, the surface desulfurization rate is more suitable for bacteria desulfurization of massive ore.
机译:用于探讨金属硫化物矿石的脱硫的抗脱硫和抑制自发燃烧的可行性的抗酸性。讨论了脱硫率的​​计算方法。此外,在实验中使用了均匀的设计,其因子包括初始pH值的实验,矿石的液体布置强度和平均粒径。液体的脱硫率的回归分析表明,液体排列强度影响最多,矿石粒径,术后,pH最少.Liquid布置强度和pH是正相关的具有脱硫率,而矿石粒度是负面的。SEM的结果表明,矿石表面的硫含量为约43%至15%或更低。矿石易燃性低于之前,表面脱硫率为65%.COMPLING随着传统计算方法的脱硫率,Surfa Ce脱硫率更适合大规模矿石的细菌脱硫。

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