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Migration and transformation characteristics of DOM in fine sand and marl rock

机译:DOM在细砂和泥灰岩中的迁移转化特征

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This paper mainly studied migration and transformation characteristics of dissolved organic matter (DOM) in underground aquifers. To achieve the research purpose, we carried out the dynamic column experiments of the DOM at different conditions indoors. In the experiment, the water of Wujiang River from Pingdingshan Coal-field is used as water sample, meanwhile, fine sand and marl rock are used as testing rock sample. A comparative study on migration and transformation characteristics of the DOM in different rock samples is done. The results show that, in the fine sand, the main effects are convection and dispersion, while the adsorption and biological effects are very weak. However, in the marl rock, besides existing convection and dispersion, the adsorption and biological effect are quite significant. And in the marl rock, convection and dispersion plays a major role in the early experiment, while adsorption is the main effect in the medium term, then the biodegradation dominates the final stage. With the increasing of temperature and seepage velocity in the fine sand, the impact of the convection effect becomes gradually weak, the dispersion effect gradually enhances, and, however, convection effect is still playing a dominant role. With the temperature rising in the marl rock, the adsorption effect becomes weak, but biodegradation is enhanced. As the seepage velocity increases in the marl rock, the adsorption and biodegradation both decrease.
机译:本文主要研究地下含水层中溶解有机质(DOM)的迁移转化特征。为达到研究目的,我们在室内不同条件下进行了DOM的动态柱实验。实验以平顶山煤田乌江水为水样,同时以细砂岩和泥灰岩为试验岩样。对不同岩石样品中DOM的迁移和转化特征进行了比较研究。结果表明,在细砂中,主要作用是对流和分散,而吸附和生物学作用却很弱。然而,在泥灰岩中,除了现有的对流和分散外,吸附和生物学效应也很显着。在泥灰岩中,对流和弥散在早期实验中起主要作用,而吸附是中期的主要作用,然后生物降解作用占主导地位。随着细砂中温度和渗流速度的增加,对流作用的影响逐渐减弱,分散作用逐渐增强,但是对流作用仍起主要作用。随着泥灰岩中温度的升高,吸附作用减弱,但生物降解作用增强。随着泥岩中渗流速度的增加,吸附和生物降解作用均降低。

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