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FAN AiPing, YANG RenChao, HAN ZuoZhen, CUI MingMing, CAI Na. Carbonate Diagenetic System of Zhangxia Formation in West Shandong Province[J]. Acta Sedimentologica Sinica, 2015, 33(1): 67-78. doi: 10.14027/j.cnki.cjxb.2015.01.007
Citation: FAN AiPing, YANG RenChao, HAN ZuoZhen, CUI MingMing, CAI Na. Carbonate Diagenetic System of Zhangxia Formation in West Shandong Province[J]. Acta Sedimentologica Sinica, 2015, 33(1): 67-78. doi: 10.14027/j.cnki.cjxb.2015.01.007

Carbonate Diagenetic System of Zhangxia Formation in West Shandong Province

doi: 10.14027/j.cnki.cjxb.2015.01.007
  • Received Date: 2013-12-23
  • Rev Recd Date: 2014-06-09
  • Publish Date: 2015-02-10
  • Carbonate rock is widely developed in the Cambrian system in the west Shandong province but rare studies have been conducted on the diagenesis of the carbonate rock there. It can be inferred from microscopic observation of this study that there exist compaction and cementation as distructive diagenesis and dissolution, pressolution and dolomitization as constructive diagenesis in the studied area. Degrading neomorphism and aggrading neomorphism affect the physical properties of the rock differently, the former one makes little sense to improve the physical properties, while the latter one is conducive to the formation of inter-crystalline pores. Combined with the analysis of fluid inclusions, the Zhangxia Formation comprises four continuously evolved diagenetic systems, including seawater, freshwater, connate water and thermobaric water diagenetic systems where different diagenetic fluid systems and diagenesis types are developed. The seawater diagenetic system is characterized by low diagenetic temperature and single-phase fluid inclusion in the environment of the shallow seabed. Diagenesis in this system mainly involves compaction, micritization/cementation (to form fibriform, coaxial fibriform, coaxial proliferative cements), and dolomitization occurred to the oolite at the seawater-freshwater transition zone. In the freshwater diagenetic system, the early stage witnesses the presence of CaCl2-H2O, NaCl-H2O, MgCl2-H2O and NaCl-MgCl2-H2O low salinity water systems under the actions of isometric calcite cementation and freshwater dissolution; the ancient epidiagenetic stage and the epidiagenetic stage are manifested with the dissolution action. In the connate water diagenetic system, the diagenetic fluid systems are prevailed by NaCl-MgCl2-MgSO4 and KCl-CaCl2-H2O under the actions of cementation and presolution. And the diagenetic fluid systems for thermobaric water diagenetic system are dominated by CaCl2-H2O, NaCl-CaCl2-6H2O, NaCl-MgCl2-MgSO4, MgCl2-H2O and FeCl2-H2O under the modification of cementation, burial dissolution, presolution (in the form of coarse stylolite) and aggrading neomorphism. Both freshwater diagenetic system and thermobaric water diagenetic system are suitable for the development of dissolution. Most dissolved pores caused by selective dissolution in freshwater diagenetic system are merely filled with the cements produced in the later stage. But dissolution in thermobaric water diagenetic system can proliferate by 1%~5% of secondary pores. Both the incompletely filled coarse stylolites that are produced from presolution and the inter-crystalline pores developed under aggrading neomorphism are helpful to improve the physical properties of the carbonate rocks.
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  • Received:  2013-12-23
  • Revised:  2014-06-09
  • Published:  2015-02-10

Carbonate Diagenetic System of Zhangxia Formation in West Shandong Province

doi: 10.14027/j.cnki.cjxb.2015.01.007

Abstract: Carbonate rock is widely developed in the Cambrian system in the west Shandong province but rare studies have been conducted on the diagenesis of the carbonate rock there. It can be inferred from microscopic observation of this study that there exist compaction and cementation as distructive diagenesis and dissolution, pressolution and dolomitization as constructive diagenesis in the studied area. Degrading neomorphism and aggrading neomorphism affect the physical properties of the rock differently, the former one makes little sense to improve the physical properties, while the latter one is conducive to the formation of inter-crystalline pores. Combined with the analysis of fluid inclusions, the Zhangxia Formation comprises four continuously evolved diagenetic systems, including seawater, freshwater, connate water and thermobaric water diagenetic systems where different diagenetic fluid systems and diagenesis types are developed. The seawater diagenetic system is characterized by low diagenetic temperature and single-phase fluid inclusion in the environment of the shallow seabed. Diagenesis in this system mainly involves compaction, micritization/cementation (to form fibriform, coaxial fibriform, coaxial proliferative cements), and dolomitization occurred to the oolite at the seawater-freshwater transition zone. In the freshwater diagenetic system, the early stage witnesses the presence of CaCl2-H2O, NaCl-H2O, MgCl2-H2O and NaCl-MgCl2-H2O low salinity water systems under the actions of isometric calcite cementation and freshwater dissolution; the ancient epidiagenetic stage and the epidiagenetic stage are manifested with the dissolution action. In the connate water diagenetic system, the diagenetic fluid systems are prevailed by NaCl-MgCl2-MgSO4 and KCl-CaCl2-H2O under the actions of cementation and presolution. And the diagenetic fluid systems for thermobaric water diagenetic system are dominated by CaCl2-H2O, NaCl-CaCl2-6H2O, NaCl-MgCl2-MgSO4, MgCl2-H2O and FeCl2-H2O under the modification of cementation, burial dissolution, presolution (in the form of coarse stylolite) and aggrading neomorphism. Both freshwater diagenetic system and thermobaric water diagenetic system are suitable for the development of dissolution. Most dissolved pores caused by selective dissolution in freshwater diagenetic system are merely filled with the cements produced in the later stage. But dissolution in thermobaric water diagenetic system can proliferate by 1%~5% of secondary pores. Both the incompletely filled coarse stylolites that are produced from presolution and the inter-crystalline pores developed under aggrading neomorphism are helpful to improve the physical properties of the carbonate rocks.

FAN AiPing, YANG RenChao, HAN ZuoZhen, CUI MingMing, CAI Na. Carbonate Diagenetic System of Zhangxia Formation in West Shandong Province[J]. Acta Sedimentologica Sinica, 2015, 33(1): 67-78. doi: 10.14027/j.cnki.cjxb.2015.01.007
Citation: FAN AiPing, YANG RenChao, HAN ZuoZhen, CUI MingMing, CAI Na. Carbonate Diagenetic System of Zhangxia Formation in West Shandong Province[J]. Acta Sedimentologica Sinica, 2015, 33(1): 67-78. doi: 10.14027/j.cnki.cjxb.2015.01.007
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