COMPARATIVE STUDIES ON THE COMPRESSIVE STRENGTH OF PAVEMENT BLOCKS MADE FROM DIFFERENT GEOLOGICAL MATERIALS WITH PLASTIC WASTE ADDITIVES AND CEMENT PAVEMENTS FOR USE IN ROAD CONSTRUCTION
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FUDMA Journal of Sciences (FJS) Vol. 7 No. 6, pp 191 -199 DOI: https://doi.org/10.33003/fjs-2023-0706-2185
Abstract
Effective plastic waste management has been of immense concern to environmentalist especially due to its
non-biodegradable nature. The research was therefore aimed at using waste plastic materials as binding
groundmass in place of cement thereby reusing plastic waste for socio-economic benefit. This will proffer a
good solution to the environmental menace posed by indiscriminate disposal of plastic waste and the ecological
challenges posed by the ever-increasing use of plastics. Plastic wastes (LDPE type) and PETs were melted at
temperatures between 180˚C-250˚C and mixed in different proportions with granite dust, sand and clay to
produce sample paver blocks and cement paver blocks. Sample blocks’ specimens were subjected to
compressive, water absorption and oven tests. The sample blocks were also activated with H2SO4 acid of pH
value 6 to simulate the ruggedness posed by acidic soil condition. Compressive tests were carried out on the
paver blocks (activated with acid) at interval of 10 days up to 100 days respectively. Based on these tests,
comparison was drawn on the effect of acidic condition on the compressive strength of plastic derived paver
blocks against concrete paver blocks in terms of durability, sustainability and viability. Results showed higher
strength and durability from the compressive test, low water absorption rate and high resistance to corrosion
for plastic paver blocks over cement pavers in the order Plastic/Granite > Plastic/Sand > Plastic/Clay pavers.
It could therefore be concluded, that plastic paver blocks are a better and sustainable alternative to cement
blocks in the construction of more rigid roads.
Description
One of the most widely used material in recent times is plastic
owing to its moisture resistance, being light in weight,
inexpensiveness and flexibility. These qualities increase our
propensity towards plastic and hence making its use very
common (Huda and Anzar, 2016). The economic growth,
geometric population growth and changing pattern of
consumption are resulting in the rapid increase in the use of
plastics in the world. The use of plastic materials has
increased from 5 million tons in the 1950s to 100 million tons
in the 2000s (Tuffour, 2016). Although, there is little
research-based information on the amount of plastic waste
generated in Nigeria, a report in the Business Day Newspaper
of January 3, 2019 states that Lagos is estimated to generate
about 14 to 15 thousand tons of waste daily. Of that, roughly
30 percent is recyclable, and 50 percent of this is plastic. In
essence, about 2,250 tons of plastic waste is generated in
Lagos on a daily basis (Folorunsho and Amadi, 2020).
Citation
Folorunsho, O.W. & Amadi, A.N. (2020). Production of pavement blocks from plastic waste. The Percific Journal of Science and Technology. 21(2), 36-43 Gidigasu, M. D. (1980). Geotechnical evaluation of residual gravels in pavement construction. Bulletin of the International Association of Engineering Geology, 15(3/4), 173-194. Hudar, S & Anzar, H. (2016). Plastic Roads: A recent advancement in waste management. International Journal of Engineering Research & Technology, 5(9), 684-688.