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Salinity and pH affect Na~+-montmorillonite dissolution and amino acid adsorption:a prebiotic chemistry study

机译:盐度和pH影响Na〜+-蒙脱土的溶解和氨基酸吸附:益生元的化学研究

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The adsorption of amino acids onto minerals in prebiotic seas may have played an important role for their protection against hydrolysis and formation of polymers. In this study, we show that the adsorption of the prebiotic amino acids, glycine (Gly), α-alanine (α-Ala) and β-alanine (β-Ala), onto Na~+-montmorillonite was dependent on salinity and pH. Specifically, adsorption decreased from 58.3-88.8 to 0-48.9% when salinity was increased from 10 to 100-150% of modern seawater. This result suggests reduced amino acid adsorption onto minerals in prebiotic seas, which may have been even more saline than the tested conditions. Amino acids also formed complexes with metals in seawater, affecting metal adsorption onto Na~+-montmorillonite, and amino acid adsorption was enhanced when added before Na~+-montmorillonite was exposed to high saline solutions. Also, the dissolution of Na~+-montmorillonite was reduced in the presence of amino acids, with β-Ala being the most effective. Thus, prebiotic chemistry experiments should also consider the integrity of minerals in addition to their adsorption capacity.
机译:氨基酸在益生元海洋中的矿物质上的吸附可能对防止水解和形成聚合物起了重要作用。在这项研究中,我们表明,益生元氨基酸甘氨酸(Gly),α-丙氨酸(α-Ala)和β-丙氨酸(β-Ala)在Na〜+-蒙脱石上的吸附取决于盐度和pH 。具体而言,当盐度从现代海水的10%增加到100-150%时,吸附量将从58.3-88.8降低到0-48.9%。该结果表明,氨基酸减少了对益生元海洋中矿物质的吸附,这可能比测试条件的盐分还要多。氨基酸还与海水中的金属形成络合物,影响金属在Na〜+-蒙脱石上的吸附,而在Na〜+-蒙脱石暴露于高盐溶液之前添加,氨基酸的吸附作用增强。同样,在氨基酸存在下,Na〜+-蒙脱土的溶解减少,其中β-丙氨酸是最有效的。因此,益生元化学实验还应考虑矿物质的完整性以及吸附能力。

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