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首页> 外文期刊>Chemical geology >Competitive binding of REE to humic acid and manganese oxide: Impact of reaction kinetics on development of cerium anomaly and REE adsorption
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Competitive binding of REE to humic acid and manganese oxide: Impact of reaction kinetics on development of cerium anomaly and REE adsorption

机译:REE与腐殖酸和氧化锰的竞争性结合:反应动力学对铈异常发展和REE吸附的影响

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The competitive binding of rare earth elements (REE) to purified humic acid (HA) and MnO2 was studied experimentally using various HA/MnO2 ratios over a range of pH (3 to 8). MnO2, humic acid and REE solutions were simultaneously mixed to investigate the kinetics of the competitive reactions. Aqueous REE-HA complex is the dominant species whatever the experiment time, pH and HA/MnO2 ratio. The value of the distribution coefficients between MnO2 and solution (log K-d(Reem/Mno2)) increases with the HA/MnO2 ratio, indicating that part of the REE-HA complexes are adsorbed onto MnO2. The development of a Ce anomaly appears strongly limited in comparison with inorganic experimental conditions. Throughout the experimental run time, for HA/MnO2 ratios of less than 0.4, MnO2 acts as a competitor leading to a partial dissociation of the REE-HA complex. The majority of the dissociated REE is readsorbed onto the MnO2 surface. The readsorption of REE is expressed by an increased Ce anomaly on the log K-d(Reem/Mno2) pattern as well as a change in shape of the coefficient distribution of REE between soluble HA and solution pattern (log K-d(Reem/HA) decrease for the heavy rare earth elements-HREE). Thus, REE are not only bound to MnO2 as a REE-HA complex, but also as REE(III). Moreover, the competition between HA and MnO2 for REE binding is shown to be higher at low pH (<6) and low DOC/Mn ratio. This study partially confirms previous work that demonstrated the control of REE adsorption by organic matter, while shedding more light on the impact of pH as well as complexation reaction competition on long-term REE partitioning between solid surface and organic solutions. The latter point is important as regards to REE speciation under conditions typical of rock and/or mineral alteration.
机译:在pH范围(3至8)范围内,使用各种HA / MnO2比,实验研究了稀土元素(REE)与纯化腐殖酸(HA)和MnO2的竞争结合。同时混合MnO2,腐殖酸和REE溶液以研究竞争反应的动力学。无论实验时间,pH值和HA / MnO2比如何,REE-HA水溶液都是主要的物质。 MnO2和溶液之间的分配系数的值(log K-d(Reem / Mno2))随HA / MnO2的比例而增加,表明部分REE-HA络合物被吸附到MnO2上。与无机实验条件相比,Ce异常的发展似乎受到严格限制。在整个实验运行期间,对于HA / MnO2比率小于0.4的情况,MnO2充当竞争剂,导致REE-HA复合物部分解离。大部分解离的REE被重新吸附到MnO2表面。 REE的重吸收通过对数Kd(Reem / Mno2)模式上Ce异常的增加以及可溶性HA和溶液模式之间REE系数分布形状的变化来表示(log Kd(Reem / HA)减小重稀土元素-HREE)。因此,REE不仅作为REE-HA络合物与MnO2结合,而且还作为REE(III)结合。此外,在低pH(<6)和低DOC / Mn比下,HA和MnO2之间对REE结合的竞争表现出更高的竞争性。这项研究部分证实了先前的工作,这些工作证明了有机物对REE的吸附控制,同时更多地关注了pH值的影响以及络合反应竞争对固体表面和有机溶液之间长期REE分配的影响。对于岩石和/或矿物蚀变的典型条件下的稀土元素形态而言,后一点很重要。

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