Citation: | Xiaojing Li, Zengxue Li, Dongdong Wang, Guangzeng Song, Pingli Wang, Haiyan Liu. Genetic relationship between formation, accumulation and migration and dispersion of peat materials in Paleogene – Take the Qiongdongnan Basin as an example[J]. Acta Oceanologica Sinica, 2024, 43(4): 80-91. doi: 10.1007/s13131-024-2334-7 |
Dai Shifeng, Bechtel A, Eble C F, et al. 2020. Recognition of peat depositional environments in coal: a review. International Journal of Coal Geology, 219: 103383, doi: 10.1016/j.coal.2019.103383
|
Dai Shifeng, Hower J C, Ward C R, et al. 2015. Elements and phosphorus minerals in the middle Jurassic inertinite-rich coals of the Muli Coalfield on the Tibetan Plateau. International Journal of Coal Geology, 144–145: 23–47, doi: 10.1016/j.coal.2015.04.002
|
Dai Shifeng, Li Dan, Chou Chenlin, et al. 2008. Mineralogy and geochemistry of boehmite-rich coals: new insights from the Haerwusu Surface Mine, Jungar Coalfield, Inner Mongolia, China. International Journal of Coal Geology, 74(3–4): 185–202, doi: 10.1016/j.coal.2008.01.001
|
Dai Shifeng, Zhao Lei, Peng Suping, et al. 2010. Abundances and distribution of minerals and elements in high-alumina coal fly ash from the Jungar Power Plant, Inner Mongolia, China. International Journal of Coal Geology, 81(4): 320–332, doi: 10.1016/j.coal.2009.03.005
|
Diessel C, Boyd R, Wadsworth J, et al. 2000. On balanced and unbalanced accommodation/peat accumulation ratios in the Cretaceous coals from Gates Formation, Western Canada, and their sequence-stratigraphic significance. International Journal of Coal Geology, 43(1–4): 143–186, doi: 10.1016/S0166-5162(99)00058-0
|
Faure M, Marchadier Y, Rangin C. 1989. Pre-Eocene synmetamorphic structure in the Mindoro-Romblon-Palawan area, West Philippines, and implications for the history of Southeast Asia. Tectonics, 8(5): 963–979, doi: 10.1029/TC008i005p00963
|
He Jiaxiong, Shi Xiaobin, Yan Pin, et al. 2007. Petroleum Geology and Exploratory Targets in Marginal Basins, Northern South China Sea. Xinjiang Petroleum Geology (in Chinese), 28(2): 129–135
|
Lambiase J J, Crevello P D, Bait B, et al. 1997. Sedimentology, structure and petroleum systems of the Baram Delta Province, Brunei Darussalam and Sarawak: field trip summary. In: Proceedings of the International Conference on Petroleum Systems of SE Asia and Australasia. Indonesian Petroleum Association, 3: 1019–1020
|
Li Zengxue. 1994. Sequence stratigraphical analysis of epicontinental coal accumulating basin—research advances in epicontinental coal accumulating basin of North China. Advance in Earth Science (in Chinese), 9(6): 65–70, doi: 10.11867/j.issn.1001-8166.1994.06.0065
|
Li Sitian. 1999. Basin analysis and some new studies of coal geology. Earth Science Frontiers (in Chinese), 6(S): 133–138
|
Li Zengxue, He Yuping, Liu Haiyan, et al. 2010. Sedimentology characteristics and coal-forming models in Yacheng Formation of Qiongdongnan Basin. Acta Petrolei Sinica (in Chinese), 31(4): 542–547
|
Li Sitian, Li Zhen, Lin Changsong, et al. 1993. Some fundamental problems about sequence stratigraphic analysis of coal basin. Coal Geology & Exploration (in Chinese), 21(4): 1–9
|
Li Wenyong, Li Dongxu. 2006. Tectonic characteristics on the sedimentary basins with different plate margins in the South China Sea. Geoscience (in Chinese), 20(1): 19–29
|
Li Zengxue, Li Ying, Wang Dongdong, et al. 2021a. Source-to-sink system for peat accumulation in marginal basins of the South China Sea with the Qiongdongnan Basin as an example. Australian Journal of Earth Sciences, 68(3): 421–439, doi: 10.1080/08120099.2020.1811565
|
Li Zengxue, Wang Dongdong, Lv Dawei, et al. 2018. The geologic settings of Chinese coal deposits. International Geology Review, 60(5–6): 548–578, doi: 10.1080/00206814.2017.1324327
|
Li Baofang, Wen Xianduan, Li Guidong. 1999. High resolution sequence stratigraphy analysis on the Permo-carboniferous in North China Platform. Earth Science Frontiers (in Chinese), 6(S): 81–94
|
Li Zengxue, Zeng Qingbo, Xu Meng, et al. 2021b. Peat formation and accumulation mechanism in northern marginal basin of South China Sea. Acta Oceanologica Sinica, 40(2): 95–106, doi: 10.1007/s13131-021-1748-8
|
Li Wenhao, Zhang Zhihuan, Li Youchuan, et al. 2012a. New perspective of Miocene marine hydrocarbon source rocks in deep-water area in Qiongdongnan Basin of northern South China Sea. Acta Oceanologica Sinica, 31(5): 107–114, doi: 10.1007/s13131-012-0241-9
|
Li Zengxue, Zhang Gongcheng, Li Ying, et al. 2012b. The Paleogene coal-bearing basin and coal-measures distribution of China Sea area. Earth Science Frontiers (in Chinese), 19(4): 314–326
|
Lin Changsong. 1987. Coal accumulation model of the Baigang formation in Baise basin and its predicting significance. Acta Sedimentologica Sinica (in Chinese), 5(2): 113–123
|
Liu Ying, Li Zengxue, Wang Dongdong, et al. 2023. The genetic characteristics of intermittency and continuity in peat formation and accumulation processes. Ore Geology Reviews, 161: 105650, doi: 10.1016/j.oregeorev.2023.105650
|
Liu Bangjun, Spiekermann R, Zhao Cunliang, et al. 2022. Evidence for the repeated occurrence of wildfires in an upper Pliocene lignite deposit from Yunnan, SW China. International Journal of Coal Geology, 250: 103924, doi: 10.1016/j.coal.2021.103924
|
Mi Lijun, Wang Dongdong, Li Zengxue, et al. 2010. High-resolution sequence stratigraphic framework and coal-forming features in Yacheng Formation of Qiongdongnan Basin. Acta Petrolei Sinica (in Chinese), 31(4): 534–541, doi: 10.7623/syxb201004003
|
Shao Longyi, Dong Daxiao, Li Mingpei, et al. 2014. Sequence-paleogeography and coal accumulation of the Carboniferous-Permian in the North China Basin. Journal of China Coal Society (in Chinese), 39(8): 1725–1734
|
Shao Longyi, Dou Jianwei, Zhang Pengfei. 1998. The status and prospect of sedimentology and sequence stratigraphy research on the coal bearing strata. Coal Geology & Exploration (in Chinese), 26(1): 4–9
|
Shao Longyi, Lu Jing, Wang Hao, et al. 2009. Developments of coal measures sequence stratigraphy in China. Acta Sedimentologica Sinica (in Chinese), 27(5): 904–914
|
Shao Longyi, Wang Xuetian, Lu Jing, et al. 2017. A reappraisal on development and prospect of coal sedimentology in China. Acta Sedimentologica Sinica (in Chinese), 35(5): 1016–1031, doi: 10.14027/j.cnki.cjxb.2017.05.013
|
Shao Longyi, Xu Xiaotao, Wang Shuai, et al. 2021. Research progress of palaeogeography and palaeoenvironmental evolution of coal-bearing series in China. Journal of Palaeogeography (Chinese Edition) (in Chinese), 23(1): 19–38, doi: 10.7605/gdlxb.2021.01.002
|
Song Guangzeng, Li Zengxue, Yang Haizhang, et al. 2021. Control effects of the synsedimentary faults on the basin-marginal fans in the central part of the deep-water area of early Oligocene Qiongdongnan Basin, South China Sea. Acta Oceanologica Sinica, 40(2): 54–64, doi: 10.1007/s13131-021-1749-7
|
Sun Yuzhuang, Horsfield B. 2005. Comparison of the Geochemical Characteristics of “Barkinite” and Other Macerals from the Dahe Mine, South China. Energy Exploration and Exploitation, 23(6): 475–494, doi: 10.1260/014459805776986885
|
Sun Yuzhuang, Püttmann W, Kalkreuth W, et al. 2002. Petrologic and geochemical characteristics of seam 9-3 and seam 2, Xingtai Coalfield, northern China. International Journal of Coal Geology, 49(4): 251–262, doi: 10.1016/S0166-5162(01)00067-2
|
Sun Yuzhuang, Qin Shenjun, Zhao Cunliang, et al. 2013. Organic geochemistry of semianthracite from the Gequan Mine, Xingtai Coalfield, China. International Journal of Coal Geology, 116–117: 281–292,doi: 10.1016/j.coal.2013.05.003
|
Sun Yuzhuang, Wang Bingshan, Lin Mingyue. 1998. Maceral and geochemical characteristics of coal seam 1 and oil shale 1 in fault-controlled Huangxian Basin, China. Organic Geochemistry, 29(1–3): 583–591, doi: 10.1016/S0146-6380(98)00159-4
|
Sun Yuzhuang, Zhao Cunliang, Püttmann W, et al. 2017. Evidence of widespread wildfires in a coal seam from the middle Permian of the North China Basin. Lithosphere, 9(4): 595–608, doi: 10.1130/L638.1
|
Van Wagoner J C. 1998. Sequence stratigraphy and marine to nonmarine facies architecture of foreland basin strata, Book Cliffs, Utah, U. S. A. : reply. AAPG Bulletin, 82(8): 1607–1618
|
Wang Zhenfeng, Jiang Tao, Zhang Daojun, et al. 2015. Evolution of deepwater sedimentary environments and its implication for hydrocarbon exploration in Qiongdongnan Basin, northwestern South China Sea. Acta Oceanologica Sinica, 34(4): 1–10, doi: 10.1007/s13131-015-0645-4
|
Wang Zhenfeng, Shi Xiaobin, Yang Jun, et al. 2014. Analyses on the tectonic thermal evolution and influence factors in the deep-water Qiongdongnan Basin. Acta Oceanologica Sinica, 33(12): 107–117, doi: 10.1007/s13131-014-0580-9
|
Wang Dongdong, Zhang Gongcheng, Li Zengxue, et al. 2021. The development characteristics and distribution predictions of the paleogene coal-measure source rock in the Qiongdongnan Basin, northern South China Sea. Acta Geologica Sinica - English Edition, 95(1): 105–120, doi: 10.1111/1755-6724.14625
|
Wolfart R, Čepek P, Gramann F, et al. 1986. Stratigraphy of Palawan island, Philippines. Newsletters on Stratigraphy, 16(1): 19–48, doi: 10.1127/nos/16/1986/19
|
Yao Bochu, Wan Ling, Liu Zhenhu. 2004. Tectonic dynamics of Cenozoic sedimentary basins and hydrocarbon resources in the South China Sea. Earth Science-Journal of China University of Geosciences (in Chinese), 29(5): 543–549
|
Zhang Gongcheng. 2010. Tectonic evolution of deepwater area of northern continental margin in South China Sea. Acta Petrolei Sinica (in Chinese), 31(4): 528–533,541, doi: 10.7623/syxb 201004002
|
Zhang Gongcheng, Chen Ying, Li Zengxue, et al. 2022. Theory on genesis of coaliferous petroleum in the China Sea. Oil & Gas Geology (in Chinese), 43(3): 553–565, doi: 10.11743/ogg 20220306
|
Zhang Gongcheng, Deng Yunhua, Wu Jingfu, et al. 2013a. Coal measure source-rock characteristics and gas exploration directions in Cenozoic superimposed faulted depressions, offshore China. China Offshore Oil and Gas (in Chinese), 25(6): 15–25
|
Zhang Gongcheng, Jia Qingjun, Wang Wanyin, et al. 2018. On tectonic framework and evolution of the South China Sea. Chinese Journal of Geophysics (in Chinese), 61(10): 4194–4215, doi: 10.6038/cjg2018L0698
|
Zhang Gongcheng, Li Zengxue, Lan Lei, et al. 2021. Natural gas in large gas fields in the South China Sea is mainly coal-type gas. Natural Gas Industry (in Chinese), 41(11): 12–23, doi: 10.3787/j.issn.1000-0976.2021.11.002
|
Zhang Gongcheng, Mi Lijun, Wu Shiguo, et al. 2007. Deepwater area-the new prospecting targets of northern continental margin of South China Sea. Acta Petrolei Sinica (in Chinese), 28(2): 15–21
|
Zhang Gongcheng, Qu Hongjun, Liu Shixiang, et al. 2015a. Tectonic cycle of marginal sea controlled the hydrocarbon accumulation in deep-water areas of South China Sea. Acta Petrolei Sinica (in Chinese), 36(5): 533–545, doi: 10.7623/syxb201505002
|
Zhang Gongcheng, Wang Pujun, Wu Jingfu, et al. 2015b. Tectonic cycle of marginal oceanic basin: a new evolution model of the South China Sea. Earth Science Frontiers (in Chinese), 22(3): 27–37, doi: 10.13745/j.esf.2015.03.002
|
Zhang Gongcheng, Wang Dongdong, Zeng Qingbo, et al. 2019. Characteristics of coal-measure source rock and gas accumulation belts in marine-continental transitional facies fault basins: a case study of the Oligocene deposits in the Qiongdongnan Basin located in the northern region of the South China Sea. Energy Exploration & Exploitation, 37(6): 1752–1778, doi: 10.1177/0144598719867478
|
Zhang Gongcheng, Xie Xiaojun, Wang Wanyin, et al. 2013b. Tectonic types of petroliferous basins and its exploration potential in the South China Sea. Acta Petrolei Sinica (in Chinese), 34(4): 611–627, doi: 10.7623/syxb201304001
|
Zhang Gongcheng, Yang Haizhang, Chen Ying, et al. 2014. The Baiyun Sag: a giant rich gas-generation sag in the deepwater area of the Pearl River Mouth Basin. Natural Gas Industry (in Chinese), 34(11): 11–25, doi: 10.3787/j.issn.1000-0976.2014.11.002
|
Zhang Gongcheng, Zeng Qingbo, Su Long, et al. 2016. Accumulation mechanism of LS 17-2 deep water giant gas field in Qiongdongnan Basin. Acta Petrolei Sinica (in Chinese), 37(S1): 34–46, doi: 10.7623/syxb2016S1004
|
Zhang Gongcheng, Zhu Weilin, Mi Lijun, et al. 2010. The theory of hydrocarbon Genernation controlled by source rock and heat from circle distribution of outside-oil fields and inside-gas fields in South China Sea. Acta Sedimentologica Sinica (in Chinese), 28(5): 987–1005, doi: 10.14027/j.cnki.cjxb.2010.05.017
|
Zhao Qiaojing, Qin Shenjun, Shen Wenchao, et al. 2023. Significant influence of different sulfur forms on Sulfur-containing polycyclic aromatic compound formation in high-sulfur coals. Fuel, 332: 125999, doi: 10.1016/j.fuel.2022.125999
|
Zhao Qiaojing, Qin Shenjun, Zhao Cunliang, et al. 2021. Origin and geological implications of super high sulfur-containing polycyclic aromatic compounds in high-sulfur coal. Gondwana Research, 96: 219–231, doi: 10.1016/j.gr.2021.04.012
|
Zhu Weilin, Zhang Gongcheng, Gao Le. 2008. Geological characteristics and exploration objectives of hydrocarbons in the northern continental margin basin of South China Sea. Acta Petrolei Sinica (in Chinese), 29(1): 1–9, doi: 10.7623/syxb200801001
|