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Chemical and Biochemical Characteristics of Acid Sedimentary Soft Rock in the Process of Weathering

机译:风化过程中酸性沉积软岩的理化特性

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摘要

Recently, the acid sedimentary soft rock that caused a collapse of the cutting ground has appeared in the surface with the road construction and the estate development. The acid soil at construction, however, must be effectively utilized as the land reclamation. The purposes of this study are to verify the importance of the biochemical oxidation of pyrite in the weathering process and to investigate the optimum pH condition for faster oxidation than in nature. First, pH, sulfate content and pyrite remaining in the acid soil that collected in the field were measured. When the ratio of pyrite remaining in the soil was less than 70 percents, pH was also lowered with the decrease in the pyrite remaining. Then, samples that added the commercial pyrite or sulfur powder were sterilized by the autoclave in order to clarify the biochemical characteristics of the acid sedimentary soft rock in the weathering. The result showed that sulfate ion was detected only in non-sterilized samples at pH below 3.5. On the other hand, sulfur powder was hardly converted at pH above 2.5. Therefore, it was confirmed that ferrous iron oxidation, given as Fe~(2+) +1/4O_2 + H~+ -> Fe~(3+) + 1/2H_2O was the most important process in the biochemical oxidation of pyrite and its optimum pH was 2.5-3.5.
机译:近来,随着道路建设和房地产开发,在地面上出现了引起切割地塌陷的酸性沉积软岩。但是,建设中的酸性土壤必须有效地用作土地开垦。这项研究的目的是验证黄铁矿在风化过程中生物化学氧化的重要性,并研究比自然界更快氧化的最佳pH条件。首先,测量田间收集的酸性土壤中残留的pH,硫酸盐含量和黄铁矿。当残留在土壤中的黄铁矿比例低于70%时,pH值也会随着残留黄铁矿的减少而降低。然后,通过高压釜对添加了商品黄铁矿或硫磺粉的样品进行灭菌,以阐明风化过程中酸性沉积软岩的生化特性。结果表明,仅在pH值低于3.5的未灭菌样品中检测到硫酸根离子。另一方面,在高于2.5的pH下几乎不转化硫粉。因此,可以确定,以Fe〜(2+)+ 1 / 4O_2 + H〜+-> Fe〜(3+)+ 1 / 2H_2O表示的亚铁氧化是黄铁矿和黄铁矿生化氧化中最重要的过程。最适pH为2.5-3.5。

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