Combustion profiles: A means to characterize the Cretaceous-Cenozoic coals in the Benue Trough, Nigeria: An insight for Electricity Power Generation.
Keywords:
Coal Combustion; Mamu Formation; Awgu Macerals; Proximate Analysis.Abstract
This study presents an integrated geochemical, petrographic, and thermogravimetric
assessment of Cretaceous–Cenozoic coal deposits from the Benue Trough, Nigeria, with
the objective of characterizing their combustion behavior and evaluating their suitability
for thermal power generation. The Benue Trough is a major NE–SW trending
intracontinental rift basin extending from the Gulf of Guinea to the Chad Basin and hosts
significant coal-bearing successions of economic importance. Despite the global
transition toward low-carbon energy systems, coal remains a strategic component of the
global energy mix, particularly in developing economies where energy demand continues
to increase and infrastructure for renewables remains limited. Twenty-nine
representative coal samples collected from multiple sub-basins within the trough were
subjected to proximate analysis, total sulfur determination, bomb calorimetry,
reflected-light petrography (maceral quantification), and thermogravimetric analysis
(TGA). Proximate data indicate generally high volatile matter contents and low ash yields,
consistent with sub-bituminous to high-volatile bituminous rank. The average gross
calorific value is 24.82 MJ/kg, suggesting moderate-to-high energy potential. Total
sulfur contents are generally low to moderate, supporting their potential for relatively
cleaner combustion compared to high-sulfur coals. Petrographic examination reveals that
the organic fraction is dominated by vitrinite (mean 59.3 vol.% on a mineral-matter-free
basis), indicating significant contribution from woody precursor material deposited
under predominantly reducing conditions. Inertinite contents show marked variability
across the Upper, Middle, and Lower Benue sub-regions, reflecting spatial differences
in paleofire intensity, oxidation conditions, and depositional regimes. Liptinite macerals
are sparse and notably absent in samples from the Middle Benue Trough, suggesting
limited preservation of hydrogen-rich algal or resinous components. Thermogravimetric
profiles demonstrate characteristic devolatilization and combustion stages consistent
with vitrinite-rich coals. Except for samples 01 and 17, which exhibit anomalously high
ash yields (73.03 wt.% and 81.57 wt.%, respectively) and are thus unsuitable for efficient
combustion, the majority of the samples meet fundamental criteria for coal-fired power
applications. Overall, the results establish that most Benue Trough coals possess
favorable combustion characteristics and calorific properties, supporting their strategic
potential for domestic power generation and energy security in Nigeria.
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