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Thermal stability of ladderane lipids as determined by hydrous pyrolysis

机译:含水热解法测定梯丹脂质的热稳定性

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Anaerobic ammonium oxidation (anammox) has been recognized as a major process resulting in loss of fixed inorganic nitrogen in the marine environment. Ladderane lipids, membrane lipids unique to anammox bacteria, have been used as markers for the detection of anammox in marine settings. However, the fate of ladderane lipids after sediment burial and maturation is unknown. In this study, anammox bacterial cell material was artificially matured by hydrous pyrolysis at constant temperatures ranging from 120 to 365 degrees C for 72 h to study the stability of ladderane lipids during progressive dia- and catagenesis. HPLC-MS/MS analysis revealed that structural alterations of ladderane lipids already occurred at 120 degrees C. At temperatures >140 degrees C, ladderane lipids were absent and only more thermally stable products could be detected, i.e., ladderane derivatives in which some of the cyclobutane rings were opened. These diagenetic products of ladderane lipids were still detectable up to temperatures of 260 degrees C using GC-MS. Thus, ladderane lipids are unlikely to occur in ancient sediments and sedimentary rocks, but specific diagenetic products of ladderane lipids will likely be present in sediments and sedimentary rocks of relatively low maturity (i.e., C-31 hopane 22S/(22S+22R) ratio <0.2 or beta beta/(alpha beta + beta alpha + beta beta) ratio of >0.5). (C) 2008 Elsevier Ltd. All rights reserved,
机译:厌氧铵氧化(厌氧氨)被认为是导致海洋环境中固定的无机氮损失的主要过程。 Ladderane脂质是厌氧细菌唯一的膜脂质,已被用作海洋环境中厌氧菌检测的标记物。然而,未知的沉积物埋藏和成熟后的梯丹脂质的命运。在这项研究中,厌氧菌细菌细胞材料通过在120至365摄氏度的恒定温度下进行72小时的水热解而人工成熟,以研究梯形烷烃脂质在进行性渗析和催化过程中的稳定性。 HPLC-MS / MS分析表明,在120℃下已经发生了梯烷脂质的结构变化。在> 140℃的温度下,不存在梯烷脂质,只能检测到更多的热稳定产物,即其中一些打开环丁烷环。使用GC-MS仍可检测到高达260摄氏度的温度的梯形脂质的这些成岩产物。因此,在古老的沉积物和沉积岩中不太可能出现梯形脂质,但是成熟度相对较低(即C-31 ane烷22S /(22S + 22R)比)的沉积物和沉积岩中可能存在梯形脂质的特定成岩产物。 <0.2或beta beta /(alpha beta + beta alpha + beta beta)比率> 0.5)。 (C)2008 Elsevier Ltd.保留所有权利,

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