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The influence of natural mineral coatings on feldspar weathering

机译:天然矿物涂料对长石风化的影响

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Quantification of the rate of weathering of feldspar, the most abundant mineral in the Earth's crust, is required to estimate accurately carbon dioxide fluxes over geological timescales and to model groundwater chemistry. Laboratory dissolution rates, however, are consistently found to be up to four orders of magnitude higher than the 'natural' rates measured in the field. Although this discrepancy has been attributed to several factors, previous research has tended to suggest that the underlying mechanism of feldspar dissolution under acidic pH may differ between the field and the laboratory. Here we demonstrate that weathered albite surfaces, like laboratory-dissolved samples, are sodium- and aluminium-depleted, indicating that the dissolution mechanism in acidic soils is similar to that in acidic laboratory solutions. We find that microtopography images are consistent with dissolution occurring at specific surface sites— indicative of surface-controlled dissolution dominated by a non-stoichiometric layer. Elevated aluminium and silicon ratios reported previously, and used to suggest a mechanism for field weathering different from laboratory dissolution, can alternatively be explained by a thin, hydrous, patchy, natural coating of amorphous and crystalline aluminosilicate. This coating, which is largely undetected under scanning electron microscopy after cleaning, but visible under atomic force microscopy, alters surface chemistry measurements and may partially inhibit the field dissolution rate.
机译:需要量化长石(地壳中最丰富的矿物)的风化速率,以准确估算整个地质时间尺度上的二氧化碳通量,并为地下水化学建模。但是,实验室溶出率一直被发现比实地测得的“自然”率高出四个数量级。尽管这种差异是由几个因素引起的,但先前的研究倾向于表明在酸性pH下长石溶解的潜在机理可能在现场和实验室之间有所不同。在这里,我们证明风化的钠长石表面,像实验室溶解的样品一样,是钠和铝贫化的,这表明在酸性土壤中的溶解机理与在酸性实验室溶液中的相似。我们发现,微形貌图像与在特定表面位点发生的溶出相一致-表示由非化学计量层主导的表面控制溶出。先前报道的升高的铝和硅比例可以用来解释不同于实验室溶解的野外风化机理,也可以用无定形和结晶性铝硅酸盐的薄而湿的,片状的天然涂层来解释。该涂层在清洁后在扫描电子显微镜下基本上未被检测到,但在原子力显微镜下可见,该涂层改变了表面化学测量值,并且可能部分抑制了场溶解速率。

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