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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >Identification, distribution and geochemical significance of four rearranged hopane series in crude oil
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Identification, distribution and geochemical significance of four rearranged hopane series in crude oil

机译:原油中四种重排血鹿系列的鉴定,分布和地球化学意义

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Four rearranged hopane series were simultaneously detected in oils from the Muglad Basin, one of several rift basins on the Central African Shear Zone (CASZ). The series are identified as having the structure of 17 alpha(H)-diahopane (D series), 18 alpha(H)-neohopane (Ts series), early eluting rearranged hopane (E series) and 21-methyl-28-norhopanes (Nsp series). The four rearranged hopane series exhibit strong positive correlations. The slope and intercept of the linear equation in plots of C29D/C29H vs C30D/C30H are 1.10 and 0.003 respectively, possibly implying identical biological origins and formation mechanisms. The relatively low slope (<0.80) and intercept (<0.07) in both C30E/C30H vs C30D/C30H and C(29)Nsp/C29H vs C29D/C29H suggest that E and Nsp series have similar biological origins as D series, but form at a slower rate following different rearrangement mechanisms. Both the Nsp and E series require the shifting of two methyl groups from their precursors, whereas the D series have only one methyl migration from C-18 to C-17. The extremely high values of slope (1.42) and intercept (0.427) in a plot of C29Ts/C29H vs C29D/C29H probably indicates that the Ts series is more easily generated than other rearranged hopane series and possibly has multiple biological sources, such as contributions from diplopterol and/or diploptene. Furthermore, C30E, C30D, C(29)Nsp and Ts are enriched relative to regular hopanes in severely biodegraded oil samples owing to their greater resistance to microbial degradation, and/or additional sources of rearranged hopanes from bacterially reworked terrigenous organic matter. Based on relative Gibbs free energies (Delta G) calculated by density functional theory (DFT), the thermodynamic stabilities of C-30 isomers follow the order C30D > C30H > C30E. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在中非剪切区(CASZ)上的几个裂隙盆中,在Muglad盆地中的一个同时检测到四个重排血鹿系列。该系列被鉴定为具有17α(H) - 癸烷(D系列),18α(H)-NeOhopane(TS系列)的结构,早期洗脱重排血红蛋白(E系列)和21-甲基-28-诺诺坎( NSP系列)。四个重排血鹿系列表现出强烈的正相关性。 C29D / C29H VS C30D / C30H曲线图中的线性方程的斜率分别为1.10和0.003,可能意味着相同的生物起源和形成机制。 C30E / C30H VS C30D / C30H和C(29)NSP / C29H VS C29D / C29H中的相对低的斜率(<0.80)和截距(<0.07)表明E和NSP系列具有类似的生物起源,但是不同重排机制后速度较慢的形式。 NSP和E系列都需要从其前体的两种甲基移位,而D系列仅具有从C-18至C-17的一个甲基迁移。 C29TS / C29H VS C29D / C29H曲线图中的斜坡(1.42)和截止值(0.427)的极高值可能表明TS系列比其他重新排列的血鹿系列更容易产生,并且可能有多种生物来源,例如贡献来自Diplopterol和/或Diploptene。此外,由于它们对来自细菌劣化的土壤的微生物降解的耐受性造成较大的抗性,C30E,C30D,C(29)NSP和TS在严重的生物降解的油样中富集。基于密度函数理论(DFT)计算的相对gibbs自由能量(Delta g),C-30异构体的热力学稳定性遵循顺序C30D> C30H> C30E。 (c)2019年elestvier有限公司保留所有权利。

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