Citation: | Li Huiwen, Dong Man, Tian Ning, Chen Lin, Kai Lulu, Luo Genming, Yang Hao, 2022. Paleoenvironmental Implications of the Middle Jurassic Phoenicopsis angustifolia Heer in Shaerhu, Xinjiang. Earth Science, 47(2): 532-543. doi: 10.3799/dqkx.2021.165 |
Arens, N.C., Jahren, A.H., Amundson, R., 2000. Can C3 Plants Faithfully Record the Carbon Isotopic Composition of Atmospheric Carbon Dioxide? Paleobiology, 26(1): 137-164. https://doi.org/10.1666/0094-8373(2000)026<0137:CCPFRT>2.0.CO;2 doi: 10.1666/0094-8373(2000)026<0137:CCPFRT>2.0.CO;2
|
Beerling, D.J., Royer, D.L., 2002a. Reading a CO2 Signal from Fossil Stomata. New Phytologist, 153(3): 387-397. https://doi.org/10.1046/J.0028-646X.2001.00335.X doi: 10.1046/j.0028-646X.2001.00335.x
|
Beerling, D. J., Royer, D. L., 2002b. Fossil Plants as Indicators of the Phanerozoic Global Carbon Cycle. Annual Review of Earth and Planetary Sciences, 30(1): 527-556. https://doi.org/10.1146/annurev.earth.30.091201.141413
|
Berner, R.A., 1994. GEOCARB Ⅱ: A Revised Model of Atmospheric CO2 over Phanerozoic Time. American Journal of Science, 294(2): 56-91. https://doi.org/10.2475/ajs.294.1.56
|
Berner, R.A., Kothavala, Z., 2001. GEOCARB Ⅲ: A Revised Model of Atmospheric CO2 over Phanerozoic Time. American Journal of Science, 301(2): 182-204. https://doi.org/10.2475/ajs.301.2.182
|
Chakraborty, S., Jana, B. N., Bhattacharya, S. K., et al., 2011. Carbon Isotopic Composition of Fossil Leaves from the Early Cretaceous Sediments of Western India. Journal of Earth System Science, 120(4): 703-711. https://doi.org/10.1007/s12040-011-0098-x
|
Chen, J.P., Huang, D.F., Li, J.C., et al., 1999. Main Source Rocks of Petroleum from Jurassic Coal-Bearing Strata in the Turpan-Hami Basin, Northest China. Acta Geologica Sinica, (2): 140-152(in Chinese with English abstract).
|
Chen, Y.Q., Ma, L.T., Peng, L., et al., 2017. The Paleoenvironmental Significance of Ginkgoites Aganzhenensis Yang from the Middle Jurassic in the Baojishan Basin, Gansu Province. Acta Sedimentologica Sinica, 35(1): 57-66(in Chinese with English abstract).
|
Ding, S.T., Sun, B.N., Wu, J.Y., et al., 2010. Cuticular Composition and Carbon Isotope Characteristics of Jurassic Phoenicopsis (Phoenicopsis) Angustifolia Heer from Huating in Gansu Province, China. Journal of Lanzhou University(Natural Sciences), 46(1): 14-21(in Chinese with English abstract).
|
Dong, M., 2012. Middle Jurassic Plants from Shaerhu Coal Field of Xinjiang, China (Dissertation). Jilin University, Changchun(in Chinese with English abstract).
|
Du, Y.X., Karádi, V., Roghi G., et al, 2021a. Revision of the Conodont Mockina slovakensis and Its Paleogeographic Implications for the Upper Triassic Intraplatform Basins of the Alps. Journal of Earth Science, 32(3): 657-666. https://doi.org/10.1007/s12583-021-1411-5
|
Du, Y.X., Onoue, T., Karádi, V., et al., 2021b. Evolutionary Process from Mockina bidentata to Parvigondolella andrusovi: Evidence from the Pizzo Mondello Section, Sicily, Italy. Journal of Earth Science, 32(3): 667-676. https://doi.org/10.1007/s12583-020-1362-2
|
Farquhar, G., Richards, R., 1984. Isotopic Composition of Plant Carbon Correlates with Water-Use Efficiency of Wheat Genotypes. Functional Plant Biology, 11(6): 539. https://doi.org/10.1071/pp9840539 doi: 10.1071/PP9840539
|
Farquhar, G., O'Leary, M., Berry, J., 1982. On the Relationship between Carbon Isotope Discrimination and the Intercellular Carbon Dioxide Concentration in Leaves. Functional Plant Biology, 9(2): 121. https://doi.org/10.1071/pp9820121 doi: 10.1071/PP9820121
|
Florin, R., 1936. Die Fossilen Ginkgophyten von Franz-Joseph-Land nebst Errterung über Vermeintliche Cordaitales Mesozoischen Alters. I. Spezieller Teil. Palaeontographica, B. 81(3-6): 71-173.
|
Heer, O., 1876. Beitrage zur Jura-Flora Ostsibiriens und des Amurlandes. Mémoires de l'Académie Impériale des Sciences de St. Pétersbourg, 7(22): 1-122. doi: 10.1007/BF02261547
|
Huang, T.D., Wang, P., Li, H., et al., 2011. The Analysis of Heterotopic Formation about Extremely-Thick Coal Seam in Shaerhu Coalfield. Xinjiang Geology, 29(3): 324-326(in Chinese with English abstract).
|
Jiao, Y.Q., Wu, L.Q., Rong, H., et al., 2021. Review of Basin Uranium Resources in China. Earth Science, 46(8): 2675-2696(in Chinese with English abstract).
|
Li, J., Yang, Q., Chen, H., et al., 2019. The Middle Jurassic Ginkgophyte Fossils from Huating, Gansu and Their Stomatal Parameters Responding to Paleoatmosphere CO2. Journal of Lanzhou University(Natural Sciences), 55(5): 561-570(in Chinese with English abstract).
|
Li, J.L., Zhang, S.Q., Pu, Z.C., et al., 2013. Spatial-Temporal Variation and Annual Air Temperature in Xinjiang during 1961-2010. Arid Land Geography, 36(2): 228-237(in Chinese with English abstract).
|
Li, R.Y., 2014. Fossil Liverworts form the Jurassic-Cretaceous of Xinjiang and Inner Mongolia and Paleoenvironment Reconstruction (Dissertation). Lanzhou University, Lanzhou(in Chinese with English abstract).
|
McElwain, J. C., Beerling, D. J., Woodward, F. I., 1999. Fossil Plants and Global Warming at the Triassic-Jurassic Boundary. Science, 285(5432): 1386-1390. https://doi.org/10.1126/science.285.5432.1386
|
McElwain, J. C., 1998. Do Fossil Plants Signal Palaeoatmospheric Carbon Dioxide Concentration in the Geological Past?. Philosophical Transactions of the Royal Society of London Series B: Biological Sciences, 353(1365): 83-96. https://doi.org/10.1098/rstb.1998.0193
|
McElwain, J.C., Chaloner, W.G., 1995. Stomatal Density and Index of Fossil Plants Track Atmospheric Carbon Dioxide in the Palaeozoic. Annals of Botany, 76(4): 389-395. https://doi.org/10.1006/anbo.1995.1112
|
Nie, F.J., Zhang, C.Y., Jiang, M.Z., et al., 2018. Relationship of Depositional Facies and Microfacies to Uranium Mineralization in Sandstone along the Southern Margin of Turpan-Hami Basin. Earth Science 43(10): 3584-3602(in Chinese with English abstract).
|
Royer, D. L., Berner, R. A., Park, J., 2007. Climate Sensitivity Constrained by CO2 Concentrations over the Past 420 million Years. Nature, 446(7135): 530-532. https://doi.org/10.1038/nature05699
|
Royer, D. L., 2001. Stomatal Density and Stomatal Index as Indicators of Paleoatmospheric CO2 Concentration. Review of Palaeobotany and Palynology, 114(1/2): 1-28. https://doi.org/10.1016/s0034-6667(0)00074-9
|
Royer, D. L., Wing, S. L., Beerling, D. J., et al., 2001. Paleobotanical Evidence for near Present-Day Levels of Atmospheric CO2 during Part of the Tertiary. Science, 292(5525): 2310-2313. https://doi.org/10.1126/science.292.5525.2310
|
Sun, B., Dilcher, D. L., Beerling, D. J., et al., 2003. Variation in Ginkgo Biloba L. Leaf Characters Across a Climatic Gradient in China. Proceedings of the National Academy of Sciences, 100(12): 7141-7146. https://doi.org/10.1073/pnas.1232419100
|
Sun, G., 1987. Cuticles of Phoenicopsis from NE China with Discussion on Its Taxonomy. Acta Palaeontologica Sinica, 1987(6): 662-681+688+767-770.
|
Wang, G.C., Xu, X.H., Chen, C., et al., 2020. Basin-Range Coupling and Tectonic Topography Analysis during Geological Mapping on Covered Area: A Case Study of Turpan-Hami Basin, Eastern Tianshan. Earth Science, 45(12): 4313-4331(in Chinese with English abstract).
|
Wang, Q.J., Xu, X.H., Jin, P.H., et al., 2013. Quantitative Reconstruction of Mesozoic Paleoatmosphere CO2 Based on Stomatal Parameters of Fossil Baiera furcata of Ginkgophytes. Geological Review, 59(6): 1035-1045(in Chinese with English abstract).
|
Wang, Y. D., Huang, C. M., Sun, B. N., et al., 2014. Paleo-CO2 Variation Trends and the Cretaceous Greenhouse Climate. Earth-Science Reviews, 129(3): 136-147. https://doi.org/10.1016/j.earscirev.2013.11.001
|
Woodward, F. I., 1986. Ecophysiological Studies on the Shrub Vaccinium Myrtillus L. Taken from a Wide Altitudinal Range. Oecologia, 70(4): 580-586. https://doi.org/10.1007/bf00379908 doi: 10.1007/BF00379908
|
Woodward, F. I., 1987. Stomatal Numbers are Sensitive to Increases in CO2 from Pre-Industrial Levels. Nature, 327(6123): 617-618. https://doi.org/10.1038/327617a0
|
Xiao, L., Li, Y., Zhou, J. R., et al., 2014. Paleoatmospheric CO2 Level of the Middle Jurassic in Turpan-Hami Basin, Xinjiang. Journal of Lanzhou University(Natural Sciences), 50(2): 154-160(in Chinese with English abstract).
|
Xiao, L., Qi, Y.L., Ma, W.Z., et al., 2017. Stable Carbon Isotope of Middle Jurassic Plant Fossils in the North Edge of Turpan-Hami Basin, Xinjiang and Their Palaeoenvironmental Implications. Acta Sedimentologica Sinica, 35(3): 489-498(in Chinese with English abstract).
|
Xie, S.P., Yan, D.F., Wei, L.J., et al., 2005. A Stomatal Approach for Accurate Reconstruction of Palaeoatmosphere CO2 Concentration. Acta Palaeontologica Sinica, 44(3): 464-471(in Chinese with English abstract).
|
Yan, D.F., Sun, B.N., 2004. The Discovery of Solenites Murrayana L. et H. in Yaojie Coal Field, Gansu and its Geological Significance. Journal of Lanzhou University(Natural Sciences), 4(3): 84-88(in Chinese with English abstract).
|
陈建平, 黄第藩, 李晋超, 等, 1999. 吐哈盆地侏罗纪煤系油气主力源岩探讨. 地质学报, (2): 140-152. https://www.cnki.com.cn/Article/CJFDTOTAL-DZXE199902004.htm
|
陈应权, 马利涛, 彭琳, 等, 2017. 甘肃宝积山盆地中侏罗世阿干镇似银杏(Ginkgoites aganzhenensis Yang)的古环境意义. 沉积学报, 35(1): 57-66. https://www.cnki.com.cn/Article/CJFDTOTAL-CJXB201701006.htm
|
丁素婷, 孙柏年, 吴靖宇, 等, 2010. 甘肃华亭侏罗系Phoenicopsis(Phoenicopsis) angustifolia Heer的表皮构造与碳同位素特征. 兰州大学学报(自然科学版), 46(1): 14-21. https://www.cnki.com.cn/Article/CJFDTOTAL-LDZK201001005.htm
|
董曼, 2012. 新疆沙尔湖煤田中侏罗世植物化石(博士学位论文). 长春: 吉林大学.
|
黄铁栋, 王平, 李慧, 等, 2011. 沙尔湖煤田巨厚煤层异地成煤分析. 新疆地质, 29(3): 324-326. doi: 10.3969/j.issn.1000-8845.2011.03.015
|
焦养泉, 吴立群, 荣辉, 等. 2021. 中国盆地铀资源概述. 地球科学, 46(8): 2675-2696. https://www.cnki.com.cn/Article/CJFDTOTAL-DQKX202108001.htm
|
李景林, 张山清, 普宗朝, 等. 2013. 近50a新疆气温精细化时空变化分析. 干旱区地理, 36(2): 228-237. https://www.cnki.com.cn/Article/CJFDTOTAL-GHDL201302005.htm
|
李军, 杨倩, 陈慧, 等, 2019. 甘肃华亭中侏罗世银杏类化石及其气孔参数对古大气CO2的响应. 兰州大学学报(自然科学版), 55(5): 561-570. https://www.cnki.com.cn/Article/CJFDTOTAL-LDZK201905003.htm
|
李瑞云, 2014. 新疆内蒙古侏罗-白垩纪苔类植物及古环境重建(博士学位论文). 兰州: 兰州大学.
|
聂逢君, 张成勇, 姜美珠, 等, 2018. 吐哈盆地西南缘地区砂岩型铀矿含矿目的层沉积相与铀矿化. 地球科学, 43(10): 3584-3602. https://www.cnki.com.cn/Article/CJFDTOTAL-DQKX201810020.htm
|
孙革, 1987. 东北、内蒙古几种拟刺葵(Phoenicopsis)及其分类. 古生物学报, (6): 662-681+688+767-770. https://www.cnki.com.cn/Article/CJFDTOTAL-GSWX198706002.htm
|
王国灿, 申添毅, 陈超, 等, 2020. 覆盖区地质调查中的盆山构造地貌关系研究: 以东天山-吐哈盆地为例. 地球科学, 45(12): 4313-4331. https://www.cnki.com.cn/Article/CJFDTOTAL-DQKX202012004.htm
|
王秋军, 徐小慧, 金培红, 等, 2013. 基于银杏类化石Baiera furcata气孔参数定量重建中生代古大气CO2浓度变化. 地质论评, 59(6): 1035-1045. https://www.cnki.com.cn/Article/CJFDTOTAL-DZLP201306004.htm
|
肖良, 李勇, 周建仁, 等, 2014. 新疆吐哈盆地中侏罗世古大气CO2重建. 兰州大学学报(自然科学版), 50(2): 154-160. https://www.cnki.com.cn/Article/CJFDTOTAL-LDZK201402003.htm
|
肖良, 漆亚玲, 马文忠, 等, 2017. 吐哈盆地北缘中侏罗世植物化石稳定碳同位素的古环境意义. 沉积学报, 35(3): 489-498. https://www.cnki.com.cn/Article/CJFDTOTAL-CJXB201703007.htm
|
解三平, 阎德飞, 韦利杰, 等, 2005. 精确重建古大气CO2浓度的气孔方法. 古生物学报, 44(3): 464-471 doi: 10.3969/j.issn.0001-6616.2005.03.010
|
阎德飞, 孙柏年, 2004. Solenites murrayana L. et H. 在甘肃窑街煤田的发现及其地质意义. 兰州大学学报, 4(3): 84-88. https://www.cnki.com.cn/Article/CJFDTOTAL-LDZK200403018.htm
|