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Thermally altered marine dissolved organic matter in hydrothermal fluids

机译:热改变的海洋溶解有机物在水热流体中

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Hydrothermal vent fluids contain thermally modified dissolved organic matter (DOM) originally entrained from sediments and seawater. We hypothesized that in hydrothermal systems DOM molecular composition is modulated by (i) fluid contribution, (ii) thermal decomposition and pH, and (iii) aspects particular to the vent system. Hence, solid phase extracted (SPE) DOM samples collected along the Mid-Atlantic Ridge (MAR) were molecularly characterized via 15 Tesla Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR-MS). The molecular character of an oceanic DOM sample was also determined before and after thermal (300 degrees C) decomposition at acidic and neutral pH. Multivariate statistical analysis indicated that DOM composition was strongly influenced by fluid contribution (Mg2+ concentration between 12 and 54 mM), which correlated positively with measured temperature (between 8 and 375 degrees C). In comparison, pH of the fluids (between 2.5 and 6.9) had a minor influence. Seafloor pressure, used as a theoretical maximum fluid temperature at the seafloor, separated the fluids collected at Menez Gwen from deeper locations, due to the higher abundance of peptide, carboxyl-rich alicyclic (CRAM) and aromatic molecular formulae at Menez Gwen. Compared with seawater DOM, thermally decomposed DOM had on average lower molecular mass, lower O/C ratios, fewer double bond equivalents, and fewer CRAM formulae but higher aromaticity - the same molecular features displayed by MAR hydrothermal fluids. The study provides evidence that thermal reworking plays a major role in shaping DOM mixtures from hydrothermal fluids along the MAR, which partly represent thermally reworked marine DOM that survived hydrothermal circulation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:水热通气流体含有最初夹带沉积物和海水的热改性的溶解有机物质(DOM)。我们假设在水热系统中,DOM分子组合物通过(i)流体贡献,(ii)热分解和pH,(iii)特定于通风系统的方面。因此,通过15特斯拉傅立叶变换离子回旋谐振质谱(FT-ICR-MS)分子表征沿着中域脊(MAR)收集的固相提取(SPE)DOM样品。海洋DOM样品的分子特征也在酸性和中性pH下热(300℃)分解之前和之后确定。多变量统计分析表明,DOM组合物受到流体贡献(Mg2 +浓度的12至54mm)的强烈影响,其用测量温度(在8至375℃之间)相关。相比之下,流体(2.5和6.9之间)的pH有轻微的影响。海底压力,用作海底的理论最大流体温度,将在Menez,富含羧基族脂肪环(CrAM)和Menez Gwen的芳族分子配方的丰富度较高,将在Menez Gwen收集的液体分开。与海水DOM相比,热分解的DOM平均低分子质量,下部O / C比,更少的双键等同物,较少的Cram公式,但芳香性更高 - MAR水热流体显示的相同分子特征。该研究提供了证据表明,热再加工在沿着MAR的热热流体中塑造DOM混合物中发挥着重要作用,这部分地代表了在水热循环中存活的热重工船用DOM。 (c)2017 Elsevier Ltd.保留所有权利。

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