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Acid-base properties of dissolved organic matter extracted from the marine environment

机译:从海洋环境中提取的溶解有机物的酸碱性质

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Marine dissolved organic matter (DOM) plays a key role in the current and future global carbon cycle, which supports life on Earth. Trace metals such as iron, an essential micronutrient, compete with protons and major ions for the binding to DOM. These competitive effects and the DOM binding capacity are related to the DOM acid-base properties, which also influence DOM transport and reactivity in marine waters. Here we present the results of a complete set of acid-base titration experiments of a pre-concentrated marine DOM sample in the range 0.01 ≤ I ≤ 0.7 M and 3 ≤ pH ≤ 10. We characterize the obtained proton binding curves using a combination of the non-ideal competitive adsorption (NICA) isotherm and Donnan electrostatic model. Within the main chemical groups of marine DOM, the carboxylic distribution was accurately characterized from the obtained data (Q_(maxH, 1)=2.52 mol·kg~(-1), logk_(H, 1) = 3.26, m_1 = 0.69 and b = 0.70). This carboxylic mode was found to be less acidic and more homogeneous than a generic fulvic acid, but the differences are consistent with the reported variability of fulvic acids of freshwater and terrestrial origin. We find that changes in temperature (down to 5.5 °C), and the presence of calcium or magnesium (at 0.01 M) resulted in no significant modification of the proton ion binding curves obtained at 25 °C and 0.7 or 0.1 M ionic strength, respectively. We demonstrate the relevance of proton binding parameters for the modelling of the system iron/marine DOM throughout a wide range of salinity and acidity conditions in the context of different future ocean scenarios.
机译:海洋溶解有机物(DOM)在当前和未来的全球碳循环中起着关键作用,这支持地球上的生命。痕量金属如铁,必需的微量营养素,与质子和主离子竞争,用于与DOM的结合。这些竞争效应和DOM结合能力与DOM酸碱性质有关,这也影响了海水中的DOM运输和反应性。在这里,我们介绍了0.01≤i≤0.7m和3≤pH≤10的预浓船舶滴定滴定实验的一组完整的酸碱滴定实验结果。我们使用组合表征所获得的质子结合曲线非理想竞争吸附(NICA)等温线和龙南静电模型。在海洋DOM的主要化学组中,羧酸分布从获得的数据(Q_(MAXH,1)= 2.52mol·kg〜(-1),logk_(h,1)= 3.26,m_1 = 0.69和b = 0.70)。发现这种羧基模式较少酸性和比通用富钙酸更均匀,但差异与淡水和陆地源的富含富酸的富含变异一致。我们发现温度(低至5.5°C)的变化,以及钙或镁(0.01μm)的存在导致在25℃和0.7或0.1m离子强度下获得的质子离子结合曲线没有明显的修饰,分别。我们展示了质子结合参数在不同未来海洋情景的背景下整个盐度和酸度条件的整个盐度和酸度条件的建模的相关性。

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