Petrography, Diagenetic Evolution and Reservoir Quality Implications of the Bima Formation Sandstones in the Yola Sub-basin, Northern Benue Trough, Northeastern Nigeria
Keywords:
Bima Formation; Diagenesis; Reservoir Quality; Petrography; SEM Analysis; Yola Sub-basinAbstract
The Lower Cretaceous Bima Formation constitutes the basal siliciclastic succession of the
Upper Benue Trough and represents one of the most significant continental sandstone
reservoirs and reservoir analogues in northeastern Nigeria. This study integrates field
sedimentology, grain-size analysis, petrographic examination, and scanning electron
microscopy (SEM) to investigate the depositional characteristics, diagenetic evolution, and
reservoir quality of selected Bima Formation sandstones exposed within the Yola Sub-basin.
Field observations reveal thick-bedded to massive sandstone bodies characterized by planar
stratification, erosional bounding surfaces, and vertically stacked channel architectures
indicative of deposition within high-energy braided fluvial systems. Grain-size analyses
demonstrate predominantly fine- to coarse-grained sediments exhibiting moderate to good
sorting, reflecting variable hydraulic conditions and fluctuating sediment transport regimes
during deposition. Petrographic observations indicate that the sandstones are composed
predominantly of monocrystalline and polycrystalline quartz with subordinate feldspar and
lithic fragments, suggesting moderate to high compositional maturity resulting from
prolonged transport and sediment recycling. SEM investigations reveal a complex diagenetic
history involving mechanical compaction, grain rearrangement, quartz overgrowth
development, authigenic clay mineral precipitation, carbonate cementation, and localized
dissolution. Mechanical compaction and cementation constitute the principal porosity
reducing processes through progressive pore-throat occlusion and destruction of primary
intergranular pore networks. Conversely, dissolution of unstable framework grains and
cements has generated localized secondary porosity, partially enhancing pore connectivity and
storage capacity. The integrated sedimentological and petrographic evidence indicates that
reservoir quality evolution in the Bima Formation is controlled by the combined influence of
depositional texture and subsequent diagenetic modification. Reservoir quality varies from
moderately good intervals characterized by preserved intergranular porosity to tight
sandstone zones dominated by intense compaction and cementation. The study establishes a
diagenetic framework for understanding pore system evolution and reservoir heterogeneity
within the Bima Formation and provides valuable insights for the exploration and
characterization of fluvial sandstone reservoirs in the Northern Benue Trough and analogous
continental rift basins.
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