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镧系元素吸附到氧化石墨烯的线性自由能关系。

Linear Free Energy Relationship for Actinide Sorption to Graphene Oxide.

出版信息

ACS Appl Mater Interfaces. 2018 Sep 26;10(38):32086-32092. doi: 10.1021/acsami.8b08478. Epub 2018 Sep 13.

Abstract

Th(IV) and Np(V) sorption to graphene oxide (GO) was studied as a function of pH from 0-7.5 and analyte concentrations (0.01-1 mg/L for Th(IV) at pH 3 and 0.005-10 mg/L for Np(V) at pH 7). Starting at pH 1, greater than 90% Th(IV) sorption to GO occurred while significant Np(V) sorption to GO started at pH 5. Surface complexation modeling (SCM) using an electrostatic double layer model simultaneously modeled Th(IV) and Np(V) sorption to GO over the pH and the analyte concentration ranges. The SCM indicated that Th(IV) complexation to sulfonate sites dominated at a low pH 0-3 and its complexation to carboxylate sites dominated at a higher pH 3-7.5. In contrast, Np(V) showed a stronger affinity for sulfonate sites than carboxylate sites over the pH and concentration ranges examined in this work. Combining the results from a previous study on Eu(III) and U(VI) sorption to GO, the affinities of actinide/lanthanide sorption to GO was found to follow the trend in actinide/lanthanide ion effective charges (e.g., Th (+4) > UO (+3.2) > Eu (+3) > NpO (+2.2)), which is similar to actinide sorption to iron oxides and clay minerals. Moreover, a linear free energy relationship was observed between the stability constants for actinides and Eu(III) (with the oxidation state from III to VI) complexation to carboxylate sites on GO and the stability constants for their complexation to carbonate.

摘要

研究了四价钍(Th(IV))和五价镎(Np(V))在氧化石墨烯(GO)上的吸附,pH 值范围为 0-7.5,分析物浓度范围为 0.01-1mg/L(Th(IV),pH 值为 3)和 0.005-10mg/L(Np(V),pH 值为 7)。从 pH 值为 1 开始,超过 90%的 Th(IV)被 GO 吸附,而大量的 Np(V)被 GO 吸附则始于 pH 值为 5。利用静电双层模型的表面络合模型(SCM)同时对 Th(IV)和 Np(V)在 pH 值和分析物浓度范围内吸附到 GO 进行了模拟。SCM 表明,在低 pH 值 0-3 下,Th(IV)与磺酸盐位点的络合占主导地位,而在较高 pH 值 3-7.5 下,其与羧酸盐位点的络合占主导地位。相比之下,在本工作研究的 pH 值和浓度范围内,Np(V)显示出对磺酸盐位点比对羧酸盐位点更强的亲和力。结合先前关于 Eu(III)和 U(VI)吸附到 GO 的研究结果,发现 GO 上的锕系元素/镧系元素的吸附亲和力遵循锕系元素/镧系元素离子有效电荷的趋势(例如,Th(+4) > UO(+3.2) > Eu(+3) > NpO(+2.2)),这与氧化物和粘土矿物上的锕系元素吸附相似。此外,观察到在 GO 上羧酸盐位点与锕系元素和 Eu(III)(氧化态从 III 到 VI)络合的稳定常数与它们与碳酸盐络合的稳定常数之间存在线性自由能关系。

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