Assessment of the Engineering Properties and Aggregate Suitability of Fusa Riebeckite Granite, Jos, North-Central Nigeria
Keywords:
Pyncometre; Specific Gravity; Aggregates; Construction; Comminution Energy, Riebeckite Granite.Abstract
The suitability of Riebeckite Granite from Fusa, Plateau State, North-Central Nigeria, as a
potential construction aggregate was evaluated through detailed laboratory investigations of
its physical properties. The study was undertaken to determine whether the granite meets
standard engineering requirements for use as aggregate material in civil construction projects
within Jos and its environs. A total of ten (10) representative rock samples were
systematically collected from different locations within the study area to ensure adequate
spatial coverage and reliability of results. Laboratory analyses focused primarily on the
determination of specific gravity using the pycnometer method, a standard procedure for
assessing the density characteristics of rock aggregates. The measured specific gravity
values ranged from 2.597 to 2.654, with an average value falling within the accepted standard
range (2.50–2.70) for most crystalline igneous rocks used in construction. These values
indicate that the Fusa Riebeckite Granite possesses sufficient density and strength
characteristics required for durable aggregate materials. The relatively low percentage
passing values obtained during aggregate assessment suggest that higher comminution energy
is required to dislodge or fragment the rock particles. This implies strong interlocking mineral
grains and resistance to mechanical disintegration, which are desirable properties for
construction aggregates subjected to load-bearing and abrasive conditions. The comminution
energy requirement further reflects the competence and mechanical stability of the granite
compared to weaker rock or soil-derived aggregates. Petrographic evidence from existing
literature indicates that Riebeckite Granite is predominantly composed of quartz, orthoclase
feldspar, hornblende, and biotite. The presence of these hard, crystalline mineral phases
contributes to its relatively high specific gravity (greater than 2.50) and enhances its
durability and structural integrity. Based on the laboratory results and comparison with
established engineering standards, the Fusa Riebeckite Granite satisfies the fundamental
physical requirements for use as construction aggregate. Therefore, it is considered suitable
for application in concrete production, road construction, and other civil engineering works
within Jos and surrounding areas.
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