ABSTRACT

This paper aims to investigate the mechanical behaviour of peat stabilised with glacial rock flour for foundation construction. Peat, a natural organic soil, presents challenges for construction due to its high compressibility and low bearing capacity. This is an especially acute problem in Scotland (UK) where 25% of the territory is covered by peat. Glacial rock flour, a fine-grained powder produced by the crushing of stone in the construction industry, has been identified as a potential stabiliser for peat. This study evaluates the effect of varying percentages of glacial rock flour on the mechanical properties of peat, considering the unconfined compression strength (UCS). The findings indicate a significant improvement in UCS28 of the mixture with the addition of up to 15% rock flour. Hence, it is concluded that peat stabilisation with glacial rock flour can be an alternative, cost-effective, and sustainable solution to the typically used excavate-and-replace technique in peatlands in the UK.

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REFERENCES

Bell, F. G. (1993). Engineering Treatment of Soil. Chapman and Hall, London.
Bernal-Sanchez, J., and Gaspari, A. (2023). “Carbon impact & mitigation of housing developments on peatlands in the UK – A case study”. In: 9th International Congress on Environmental Geotechnics.
Bernal-Sanchez, J., McDougall, J., Medero, G., and Barreto, D. (2021). “Housing Construction on Peatland: Opening up Opportunities and Minimising Disruption through Innovation – Phase 1 Feasibility of Proposed Solutions”. From: https://www.napier.ac.uk/research-and-innovation/research-search/projects/construction-on-peat, (May. 5, 2023).
Borthakur, N., and Singh, S. (2014). “Stabilisation of Peat Soil Using Locally Available Admixture”. In: Conf. on Advances in Civil and Structural Engineering.
British Standards Institution. (2022). BS 1377-1:2022 - Methods of test for soils for civil engineering purposes. Classification tests. London: British Standards Institution.
British Standards Institution. (2021). BS EN 12390-1:2019 - Testing hardened concrete. Part 1: Shape, dimensions and other requirements for specimens and moulds. London: British Standards Institution.
British Standards Institution. (2020). BS 5930:2015+A1:2020 - Code of practice for site investigations. London: British Standards Institution.
British Standards Institution. (1990). BS 1377-7: Methods of test for soils for civil engineering purposes - Part 7: Shear strength tests (total stress), London: British Standards Institution.
Ene, E., and Okagbue, C. (2009). “Some basic geotechnical properties of expansive soil modified using pyroclastic dust”. Engineering Geology, 107(1-2):61–65. Available: https://vdocuments.mx/some-basic-geotechnical-properties-of-expansive-soil-modified-using-pyroclastic.html, (May. 5, 2023).
EuroSoilStab. (2010). “Design guide soft soil stabilisation”. Development of design and construction methods to stabilise soft organic soils.
Evans, C., Artz, R., and Moxley, J. (2017). “Implementation of an emissions inventory for UK peatlands”.
Hobbs, N. B. (1986). “Mire morphology and the properties and behaviour of some British and foreign peats”. Quarterly Journal of Engineering Geology, 19(1): 7–80.
Huat, B. B. K., Prasad, A., Asadi, A., and Kazemian, S. (2014). Geotechnics of organic soils and peat.
Joraf, E., Kreiter, S., and Morz, T. (2013). “Strength and compressibility characteristics of peat stabilized with sand columns”, available: https://www.researchgate.net/publication/259190982_Strength_and_compressibility_characteristics_of_peat_stabilized_with_sand_columns, (May. 5, 2023).
Juha, F., Leena, K. T., and Pyry, P. (2018). “Mass stabilisation as a ground improvement method for soft peaty”. Chapter 7. From: https://www.intechopen.com/books/peat/mass-stabilization-as-a-ground-improvement-method-for-soft-peaty, (May. 5, 2023).
Lindsay, R., Birnie, R., and Clough, J. (2014). IUCN UK Committee Peatland Programme. Briefing Note Complete set 1-10. From: https://www.iucn-uk-peatlandprogramme.org/sites/default/files/2019-07/1%20Definitions%20final%20-%205th%20November%202014.pdf, (May. 5, 2023).
Munro, R. (2004). “Dealing with bearing capacity problems on low volume roads constructed on peat”. Including case histories from roads projects within the roadex partner districts. The Highland Council. From: https://www.roadex.org/wp-content/uploads/2014/01/2_5-Roads-on-Peat_l.pdf, (May. 5, 2023).
SEPA. (2017). Developments on peat and off-site uses of waste peat. From: https://www.sepa.org.uk/regulations/waste/guidance/, (May. 5, 2023).
Sivakumer, V., McKelvey, D., and Graham, J. (2011). “Triaxial tests on model sand columns in clay”, available: https://www.researchgate.net/publication/237371922_Triaxial_tests_on_model_sand_columns_in_clay, (May. 5, 2023).
Timoney, M. J., McCabe, B. A., and Bell, A. L. (2012). “Experiences of dry soil mixing in organic soils”. Proceedings of ICE Ground Improvement, 165 (GI1):3–14.

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Go to Geo-Congress 2024
Geo-Congress 2024
Pages: 450 - 460

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Published online: Feb 22, 2024

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Juan Bernal-Sanchez [email protected]
1Lecturer, Dept. of Civil and Structural Engineering, Built Environment, Edinburgh Napier Univ., UK. Email: [email protected]
2Student, Dept. of Civil Engineering, Built Environment, Edinburgh Napier Univ., UK. Email: [email protected]
3Associate Lecturer, Dept. of Civil Engineering, Built Environment, Edinburgh Napier Univ., UK. Email: [email protected]
Daniel Barreto [email protected]
4Lecturer, Dept. of Geotechnical Engineering, Built Environment, Edinburgh Napier Univ., UK. Email: [email protected]

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