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首页> 外文期刊>Arabian journal of geosciences >Migration and transformation of manganese during the artificial recharging of a deep confined aquifer
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Migration and transformation of manganese during the artificial recharging of a deep confined aquifer

机译:深层承压含水层人工补给过程中锰的迁移和转化

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摘要

Field tests and laboratory experiments were performed, using an artificial groundwater recharging site in Southeast China as an example, to investigate the migration and transformation of manganese during the artificial recharging of a deep confined aquifer. The migration and transformation of total manganese and divalent manganese (Mn(II)) were influenced by mixing, oxidation reactions, and the dissolution of minerals containing manganese, and increasing the dissolved oxygen (DO) concentration was found to promote the dissolution of minerals containing manganese. The laboratory experiments showed that the retardation factors were higher upstream than downstream of the recharging hole. The amount of dissolution that occurred decreased, and the amount of mixing that occurred increased as the distance from the recharging hole increased. The DO concentration decreased as the amount of dissolution of minerals containing manganese that occurred decreased. A high temperature, a high DO concentration, and the presence of microorganisms were found to promote the dissolution of minerals containing manganese, which caused the total manganese and Mn(II) concentrations to increase.
机译:以中国东南部的一个人工地下水补给点为例,进行了现场测试和实验室实验,以研究深层承压含水层人工补给过程中锰的迁移和转化。总锰和二价锰(Mn(II))的迁移和转化受到混合,氧化反应和含锰矿物质溶解的影响,发现增加溶解氧(DO)浓度可促进含锰矿物质的溶解锰。实验室实验表明,延迟因子的上游位置高于充电孔的下游位置。随着距充电孔的距离增加,发生的溶解量减少,并且发生的混合量增加。随着所含锰矿物质溶解量的减少,溶解氧浓度降低。发现高温,高溶解氧浓度和微生物的存在促进了含锰矿物质的溶解,从而导致总锰和Mn(II)浓度增加。

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