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Interactions in Ternary Mixtures of MnO2 Al2O3 and Natural Organic Matter (NOM) and the Impact on MnO2 Oxidative Reactivity

机译:MnO2Al2O3和天然有机物(NOM)三元混合物中的相互作用及其对MnO2氧化反应性的影响

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摘要

Our previous work reported that Al2O3 inhibited the oxidative reactivity of MnO2 through heteroaggregation between oxide particles and surface complexation of the dissolved Al ions with MnO2 (S. Taujale and H. Zhang, “Impact of interactions between metal oxides to oxidative reactivity of manganese dioxide” Environ. Sci. Technol. 2012, 46, 2764–2771). The aim of the current work was to investigate interactions in ternary mixtures of MnO2, Al2O3, and NOM and how the interactions affect MnO2 oxidative reactivity. For the effect of Al ions, we examined ternary mixtures of MnO2, Al ions, and NOM. Our results indicated that an increase in the amount of humic acids (HAs) increasingly inhibited Al adsorption by forming soluble Al–HA complexes. As a consequence, there was less inhibition on MnO2 reactivity than by the sum of two binary mixtures (MnO2+Al ions and MnO2+HA). Alginate or pyromellitic acid (PA)—two model NOM compounds—did not affect Al adsorption, but Al ions increased alginate/PA adsorption by MnO2. The latter effect led to more inhibition on MnO2 reactivity than the sum of the two binary mixtures. In ternary mixtures of MnO2, Al2O3, and NOM, NOM inhibited dissolution of Al2O3. Zeta potential measurements, sedimentation experiments, TEM images, and modified DLVO calculations all indicated that HAs of up to 4 mg-C/L increased heteroaggregation between Al2O3 and MnO2, whereas higher amounts of HAs completely inhibited heteroaggregation. The effect of alginate is similar to that of HAs, although not as significant, while PA had negligible effects on heteroaggregation. Different from the effects of Al ions and NOMs on MnO2 reactivity, the MnO2 reactivity in ternary mixtures of Al2O3, MnO2, and NOM was mostly enhanced. This suggests MnO2 reactivity was mainly affected through heteroaggregation in the ternary mixtures because of the limited availability of Al ions.
机译:我们以前的工作报告说,Al2O3通过氧化物颗粒之间的异质聚集以及溶解的Al离子与MnO2的表面络合抑制了MnO2的氧化反应性(S. Taujale和H. Zhang,“金属氧化物之间的相互作用对二氧化锰的氧化反应性的影响”)环境科学与技术.2012,46,2764–2771)。当前工作的目的是研究MnO2,Al2O3和NOM三元混合物中的相互作用以及该相互作用如何影响MnO2的氧化反应性。对于Al离子的影响,我们检查了MnO2,Al离子和NOM的三元混合物。我们的结果表明,腐殖酸(HAs)数量的增加通过形成可溶性Al–HA复合物而逐渐抑制了Al的吸附。结果,与两种二元混合物(MnO2 + Al离子和MnO2 + HA)的总和相比,对MnO2反应性的抑制作用较小。藻酸盐或均苯四酸(PA)(两种典型的NOM化合物)不会影响Al的吸附,但是Al离子会增加MnO2对藻酸盐/ PA的吸附。与两种二元混合物的总和相​​比,后一种效应对MnO2反应性的抑制作用更大。在MnO2,Al2O 3 和NOM的三元混合物中,NOM抑制Al 2 O 3 的溶解。 Zeta电位测量,沉降实验,TEM图像和改进的DLVO计算均表明,高达4 mg-C / L的HA会增加Al 2 O 3 和MnO之间的杂聚 2 ,而更高数量的HA则完全抑制了杂聚。海藻酸盐的作用与HAs相似,尽管作用不那么显着,而PA对杂聚的作用却可以忽略不计。与Al离子和NOMs对MnO 2 反应性的影响不同,Al 2 O 3三元混合物中的MnO 2 反应性,MnO 2 和NOM大部分得到增强。这表明MnO 2 反应性主要受三元混合物中异质聚集的影响,因为铝离子的可用性有限。

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