数字农科院2.0

Thermal evolution of light hydrocarbon fingerprints in biodegraded oils from Ordovician reservoirs, Tabei Uplift, Tarim Basin

文献类型: 外文期刊

作者: Yuwei Yang;Yuhong Liao;Yueyi Huang;Yijun Zheng;Bin Cheng;Huanyu Lin;Yunpeng Wang;Ping’An Peng

作者机构:

关键词: Biodegradation;Burial-thermal maturation;Light hydrocarbons;Ordovician reservoirs;Tabei Uplift;Tarim Basin

期刊名称: Scientific Reports

ISSN:

年卷期: 2025 年 16 卷 1 期

页码:

收录情况: SCIE(2025版)

摘要: Within the Tabei Uplift of the Tarim Basin, Ordovician reservoirs in both the northern Halahatang (N-Halahatang) and western Lunnan (W-Lunnan) areas experienced extensive biodegradation during the Late Hercynian (Permian). Subsequent Himalayan (Neogene–Quaternary) tectonism induced divergent burial-thermal histories: the N-Halahatang reservoirs underwent intensive maturation (> 6,500 m depth; 1.02–1.22% Ro), while the W-Lunnan reservoirs experienced milder maturation (< 5,800 m depth; 0.70–0.85% Ro). Despite similar δ13Coil values indicating genetic affinity, the relatively deeply buried biodegraded oils from the N-Halahatang area contain abundant C6–C8 light hydrocarbons (LHs), while the biodegraded oils from the W-Lunnan area exhibit only trace amounts of C6–C8 LHs. To elucidate the evolution of LHs compositions and fingerprints in biodegraded oils under thermal maturation, and to determine whether the more enriched C6–C8 LHs in the N-Halahatang oils can be attributed to enhanced burial-thermal maturation, two relatively shallower-burial biodegraded oils (Well LG40: slight to moderate biodegradation‌; Well LG7: heavy to severe biodegradation) from the W-Lunnan area were artificially pyrolyzed to various maturities. Subsequently, LH parameters of the pyrolyzed oils were compared with those of the naturally matured, deeply buried oils (heavy to severe biodegradation) from the N-Halahatang area. The results indicated that both biodegraded oils generated C6–C8 LHs through thermal cracking, and the more severely biodegraded oil (Well LG7) exhibited a lower LH maximum yield than that from Well LG40. Certain parameters for organic matter type classification (n-C7–DMCP–MCH and 3RP–5RP–6RP diagrams) generally remained applicable during thermal maturation, whereas most parameters for secondary alteration identification and maturity assessment were significantly compromised. Additionally, LH parameters of the N-Halahatang oils (1.02–1.22% Ro) matched those of the LG7 pyrolyzed oils at EasyRo = 1.00–1.20%, confirming that the enriched C6–C8 LHs in the N-Halahatang oils can be attributed to cracking of biodegraded oils (with ‌biodegradation levels equivalent to Well LG7‌) under intense burial-thermal maturation. Furthermore, the potential C6–C13 LHs derived from biodegraded oil cracking constitute 11–16 wt% of N-Halahatang’s liquid hydrocarbon resources.

分类号:

  • 相关文献

[1]Genomic analysis provides insights into the westward expansion of domesticated peaches in China. Li, Wenqing,Li, Yong,Wang, Xinwei,Zhao, Guoqing,Zhu, Gengrui,Cao, Ke,Fang, Weichao,Wu, Jinlong,Ma, Kai,Chen, Changwen,Wang, Lirong. 2024

[2]Isolation and characterization of polycyclic aromatic hydrocarbons-degrading Sphingomonas sp strain ZL5. Liu, YS,Zhang, J,Zhang, ZZ.

[3]Physiological, Phylogenetic And Functional Identification O.f Crude Oil-Degrading Microbial P opulations. Li, Muwang,Liang, Yuting,Zhu, Zhibao,Liu, Yujia,Zhao, Yuan. 2018

[4]Imazamox microbial degradation by common clinical bacteria: Acinetobacter baumannii IB5 isolated from black soil in China shows high potency. Liu Chun-guang,Yang Xin,Lai Yang,Lu Hong-gang,Zeng Wei-min,Yang Feng-shan,Liu Chun-guang,Zeng Wei-min,Yang Feng-shan,Liu Chun-guang,Geng Gui,Geng Gui. 2016

[5]Isolation and characterization of a novel cinosulfuron degrading Kurthia sp from a methanogenic microbial consortium. Ruan, Zhiyong,Zhou, Shan,Zhao, Bin,Ruan, Zhiyong,Wang, Yanwei,Chen, Chao,Jiang, Shenghua,Sun, Lei,Zhai, Yi. 2013

[6]Biodegradation of phenanthrene by Rhizobium petrolearium SL-1. Huang, X.,Zhang, R.,Ma, X.,Zhang, X.,Huang, X.,Zhang, R.,Shi, J.,Cui, C.,Yin, H..

[7]Genome-wide investigation of the genes involved in nicotine metabolism in Pseudomonas putida J5 by Tn5 transposon mutagenesis. Xia, Zhenyuan,Lei, Liping,Zhang, Wei,Liu, Xingzhong,Wei, Hai-Lei.

[8]Application and comparison in biosynthesis and biodegradation by Fusarium solani and Aspergillus fumigatus cutinases. Ping, Li-Feng,Yuan, Xiao-Li,Zhang, Min,Chai, Yan-Jun,Shan, Sheng-Dao,Chen, Xiao-Yang.

[9]Molecular cloning, purification and biochemical characterization of a novel pyrethroid-hydrolyzing carboxylesterase gene from Ochrobactrum anthropi YZ-1. Zhai, Yi,Li, Kang,Song, Jinlong,Shi, Yanhua,Yan, Yanchun.

[10]Biodegradation of insecticide carbofuran by Paracoccus sp YM3. Yan, Yan C.,Peng, Xiang,Zhang, Jing S.,Li, Ying Y.,Li, Wen,Peng, Xiang,Zhang, Jing S.,Li, Ying Y.,Li, Wen,Xu, Gang M.,Xu, Gang M..

[11]Adsorption and degradation of triazophos, chlorpyrifos and their main hydrolytic metabolites in paddy soil from Chaohu Lake, China. Liang, Bin,Yang, Chengli,Zhao, Yanfu,Zhang, Jun,Jiang, Jiandong,Li, Shunpeng,Gong, Mingbo,Zhu, Changxiong. 2011

[12]Functional identification of gene cluster for the aniline metabolic pathway mediated by transposable element. Liang, QF,Chen, M,Xu, YQ,Zhang, W,Ping, SZ,Lu, W,Song, XL,Wang, WW,Geng, LZ,Masahiro, T,Lin, M.

[13]Biodegradation of neonicotinoid insecticide, imidacloprid by restriction enzyme mediated integration (REMI) generated Trichoderma mutants. He, Xiangfeng,Wubie, Abebe Jenberie,Diao, Qingyun,Li, Wei,Xue, Fei,Guo, Zhanbo,Zhou, Ting,Xu, Shufa,Wubie, Abebe Jenberie.

[14]Phytodegradation of organophosphorus compounds by transgenic plants expressing a bacterial organophosphorus hydrolase. Wang, Xiaoxue,Wu, Ningfeng,Guo, Jun,Chu, Xiaoyu,Tian, Jian,Fan, Yunliu,Yao, Bin.

[15]Biotransformations of bisphenols mediated by a novel Arthrobacter sp strain YC-RL1. Ren, Lei,Jia, Yang,Ruth, Nahurira,Wang, Junhuan,Qiao, Cheng,Yan, Yanchun,Shi, Yanhua.

[16]Efficient decolorization and detoxification of the sulfonated azo dye Reactive Orange 16 and simulated textile wastewater containing Reactive Orange 16 by the white-rot fungus Ganoderma sp En3 isolated from the forest of Tzu-chin Mountain in China. Ma, Li,Zhuo, Rui,Liu, Huahua,Yu, Dong,Zhang, Xiaoyu,Yang, Yang,Jiang, Mulan. 2014

[17]Physical and Degradable Properties of Mulching Films Prepared from Natural Fibers and Biodegradable Polymers. Tan, Zhijian,Yi, Yongjian,Wang, Hongying,Zhou, Wanlai,Yang, Yuanru,Wang, Chaoyun. 2016

[18]Biodegradation and detoxification of endosulfan in aqueous medium and soil by Achromobacter xylosoxidans strain CS5. Yan, Yanchun,Li, Wen,Peng, Xiang,Li, Wen,Peng, Xiang,Dai, Yun,Xue, Beibei,Li, Yingying,Zhang, Jingshun.

[19]Characterization of a novel oxyfluorfen-degrading bacterial strain Chryseobacterium aquifrigidense and its biochemical degradation pathway. Xu, Jun,Dong, Fengshou,Liu, Xingang,Wu, Xiaohu,Zheng, Yongquan,Wu, Yanbing.

[20]Biodegradation of nicosulfuron by a Talaromyces flavus LZM1. Song, Jinlong,Wu, Wei,Wang, Haisheng,Shi, Yanhua,Yan, Yanchun,Gu, Jingang,Ruan, Zhiyong,Zhai, Yi.

作者其他论文 更多>>