Evidence of Microbial Origin of Organic Matters of Niutitang
Shale Gas Reservoir
Zhang Tingshan1,2*, Wu Kunyu1,2, Yang Yang1,2, Luo Yuqiong1, Gong Qisen3
1. State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation,Southwest Petroleum University,Chengdu,Sichuan 610500,China
2. School of Geosciences and Technology,Southwest Petroleum University,Chengdu,Sichuan 610500,China
3. Shale Gas Investment Limited Company,Chongqing Energy Investment Group,Nan′ an,Chongqing 400060,China
Zhang Tingshan1,2*, Wu Kunyu1,2, Yang Yang1,2, Luo Yuqiong1, Gong Qisen3. Evidence of Microbial Origin of Organic Matters of Niutitang
Shale Gas Reservoir[J]. 西南石油大学学报(自然科学版), DOI: 10.11885/j.issn.1674-5086.2014.07.05.03.
[1] Madigan M T,Martinko J M,Bender K S,et al. Brock biology
of microorganisms[M]. 14th edition. Illinois:Pearson,
2014.
[2] Lowe D R. Stromatolites 3 400-Myr old from the Archean
of Western Australia[J]. Nature,1980,284(3):441 – 443.
[3] Walter M R,Buick R,Dunlop J S R. Stromatolites
3 400 – 3 500 Myr old from the North Pole area,Western
Australia[J]. Nature,1980,284(3):443 – 445.
[4] Schopf J W. Microfossils of the early Archean Apex
Chert:New evidence of the Antiquity of life[J]. Science,
1993,260(4):640 – 646.
[5] Mojzsis S J,Arrhenius G,McKeegan K D,et al. Evidence
for life on earth before 3 800 million years ago[J]. Nature,
1996,384:55 – 59.
[6] Rosing M T. 13C-depleted carbon microparticles
in>3 700 Ma sea-floor sedimentary rocks from west
Greenland[J]. Science,1999,283:674 – 676.
[7] D′Hondt S,Jørgensen B B,Miller D J,et al. Distributions
of microbial activities in deep subseafloor Sediments[J].
Science,2004,306:2216 – 2221.
[8] Ehrlich H L,Newman D K. Geomicrobiology[M]. 5th edition.
Boca Raton(Florida):Taylor & Francis,2009,589.
[9] 焦念志. 海洋固碳与储碳并论微型生物在其中
的重要作用[J]. 中国科学:地球科学,2012,42(10):
1473 – 1486.
Jiao Nianzhi. Carbon fixation and sequestration in the
ocean,with special reference to the microbial carbon
pump[J]. Science China:Earth Sciences,2012,42(10):
1473 – 1486.
[10] Tissot B P,Welte D H. Petroleum formation and occurrence:
Second revised and enlarged edition[M]. New
York:Springer-Verlag,1984:131 – 159.
[11] 傅家谟,秦匡宗. 干酪根地球化学[M]. 广州:广东科技
出版社,1995:1 – 50.
[12] 谢小敏,腾格尔,秦建中,等. 贵州遵义寒武系底部硅
质岩中细菌状化石的发现[J]. 地质学报,2013,87(1):
20 – 28.
Xie Xiaomin,Tenger,Qin Jianzhong,et al. Bacteria-like
fossil in the early Cambrian silliceous shale from Zunyi,
Guizhou,SW China[J]. Acta Geologica Sinica,2013,
87(1):20 – 28.
[13] 冯增昭,彭勇民,金振奎,等. 中国南方寒武纪岩相古
地理[J]. 古地理学报,2001,3(1):1 – 14.
Feng Zengzhao,Peng Yongmin,Jin Zhenkui,et al. Lithofacies
palaeogeography of the Cambrian in South China[
J]. Journal of Palaeogeography,2001,3(1):1 – 14.
[14] Wang Xinqiang,Shi Xiaoying,Jiang Ganqing,et al. New
U-Pb age from the basal Niutitang Formation in South
China:Implications for diachronous development and
condensation of stratigraphic units across the Yangtze platform
at the Ediacaran-Cambrian transition[J]. Journal of
Asia Earth Sciences,2012,48:1 – 8.
[15] Zhu M,Zhang J,Steiner M,et al. Sinian-Cambrian
stratigraphic framework for shallow to deep-water environments
of the Yangtze Platform:An integrated approach[
J]. Progress in Natural Science,2003,13(12):
951 – 960.
[16] Sawaki Y,Nishizawa M,Suo T,et al. Internal structures
and U-Pb ages of zircons from a tuff layer in the Meishucunian
formation,Yunnan Province,South China[J]. Gondwana
Research,2008,14(1):148 – 158.
[17] Folk R L. SEM images of bacteria and nanobacteria in
carbonate sediments and rocks[J]. Journal of Sedimentary
Petrology,1993,63(5):990 – 999.
[18] Edwards D,Axe L,Parkes J,et al. Provenance and age
of bacteria-like structures on mid-Palaeozoic plant fossils[
J]. International Journal of Astrobiology,2006,5(2):
109 – 142.
[19] Montejano G, Leon-Tejera H. Reproduction and
baeocyte formation in two species of Dermocarpella(
Cyanophyceae)[J]. European Journal of Phycology,
2002,37(3):323 – 327.
[20] Copeland A,Zeytun A,Yassawong M,et al. Complete
genome sequence of the orange-red pigmented,radioresistant
Deinococcus proteolyticus type strain(MRP(T))[J].
Standards in Genomic Sciences,2012,6(2):240 – 250.
[21] Jouenne F,Eikrem W,Gallb F L,et al. Prasinoderma singularis
sp. nov.(Prasinophyceae,Chlorophyta),a Solitary
Coccoid Prasinophyte from the south-east Pacific Ocean[
J]. Protist,2011,162(1):70 – 84.
[22] Lee R E. Phycology[M]. 4th Edition. Cambridge:Cambridge
University Press,2008:1 – 80.
[23] Cody G D,Gupta1 N S,Briggs D E G,et al. Molecular
signature of chitin-protein complex in Paleozoic arthropods[
J]. Geology,2011,39(3):255 – 258.
[24] Marzi R,Torkelson B E,Olson R K. A revised carbon
preference index[J]. Organic Geochemistry,1993,
20(8):1303 – 1306.
[25] 盛国英,范善发,刘德汉,等. 正烷烃的偶碳优势特
征[J]. 石油与天然气地质,1981,2(1):57 – 65.
Sheng Guoying,Fan Shanfa,Liu Dehan,et al. Characteristics
of the nalkanes with even – odd predominance[J].
Oil and Gas Geology,1981,2(1):57 – 65.
[26] 李超,彭平安,盛国英,等. 蓟县剖面元古宙沉积
物(1.80∼0.85 Ga)中的生物标志化合物特征[J]. 地学
前缘,2001,8(4):453 – 462.
Li Chao, Peng Ping′an, Sheng Guoying, et al.
A biomarkers study of Paleo to Neo-Proterozoic
(1.80∼0.85 Ga)sediments from the Jixian strata section,
North China[J]. Earth Science Frontiers,2001,8(4):
453 – 462.
[27] Peters K E,Walters C C,Moldowan J M. The biomarker
guide:Volume. 2,Biomarker and isotopes in petroleum
exploration and earth history[M]. Cambridge:Cambridge
University Press,2005:9 – 100.
[28] Didyk B M,Simoneit B R. T,Brassell S C,et al. Organic
geochemical indicators of palaeoenvironmental conditions
of sedimentation[J]. Nature,1978,272:216 – 22.
[29] 杨平,汪正江,谢渊,等. 黔北下寒武统牛蹄塘组烃源
岩的生物标志物特征和沉积环境[J]. 地质通报,2012,
31(11):1910 – 1921.
Yang Ping,Wang Zhengjiang,Xie Yuan,et al. The
biomarker characteristics and sedimentary environment
of lower Cambrian Niutitang Formation source rock in
northern Guizhou[J]. Geological Bulletin of China,2012,
31(11):1910 – 1921.