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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Transfer of FeS-bound arsenic into pyrite during the transformation of amorphous FeS to pyrite
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Transfer of FeS-bound arsenic into pyrite during the transformation of amorphous FeS to pyrite

机译:在黄铁矿转化期间,在无定形FE的转化期间将FES-结合的砷转移到硫铁中

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The transformation of iron sulfide to pyrite is an important process in anoxic environments that strongly influences the mobility of metal(loid)s such as As. It is, therefore, important to understand the fate of As in this process. In this study, batch experiments were conducted at 150 degrees C and 80 degrees C and pH 7.5 and 6.0 to examine the transfer of As in the transformation of amorphous FeS to pyrite. The solid phase was characterized using XRD, SEM-EDS, and XPS. The transformation of FeS to pyrite can be promoted in the presence of As(III). During the transformation of FeS loaded with As(III), dissolution of FeS occurs prior to pyrite formation. As(III) is first released in the stage of FeS dissolution, and then is incorporated into the newly formed pyrite. Both high temperature and low pH can promote As uptake by pyrite. XPS analysis indicated sorption as a pathway of As incorporation into pyrite. The contribution from the pathway of lattice substitution is proposed to become significant at high temperature. The results of this study show that As lost or gain in solid phases can occur depending on the As uptake ability by pyrite under different conditions and the initial As loading.
机译:硫化铁对硫铁矿的转化是缺氧环境中的重要过程,其强烈影响金属的迁移率(LOID)如此。因此,了解在此过程中的命运很重要。在该研究中,分批实验在150℃和80℃和pH 7.5和6.0处进行,以检查如在无定形FE的转化到黄铁矿中的转移。使用XRD,SEM EDS和XPS表征固相。在AS(III)的存在下,可以促进FES对硫铁矿的转化。在用作(III)的FE的转化期间,在硫铁矿形成之前发生FE的溶解。如(iii)首先在FES溶解的阶段中释放,然后掺入新形成的黄铁矿中。高温和低pH都可以通过黄铁矿促进摄取。 XPS分析表明吸附作为作为掺入黄铁矿的途径。提出了晶格取代途径的贡献在高温下变得显着。该研究的结果表明,由于在不同条件下通过硫铁矿和初始作为装载,可以发生损失或固体相的增益。

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