Biochar amendment for improved and more sustainable peat stabilisation

Author:

Ritter Stefan1,Paniagua Priscilla23,Hansen Caroline Berge4,Cornelissen Gerard5

Affiliation:

1. Senior Engineer, Department of Geotechnical and Environmental Engineering, Norwegian Geotechnical Institute, Oslo, Norway (corresponding author: )

2. Senior Engineer, Department of Geotechnics and Natural Hazards, Norwegian Geotechnical Institute, Trondheim, Norway

3. Associate Professor, Department of Civil and Environmental Engineering, Norwegian University of Science and Technology (NTNU), Trondheim, Norway

4. Project Engineer, Department of Geotechnical and Environmental Engineering, Norwegian Geotechnical Institute, Oslo, Norway

5. Expert Advisor, Department of Geotechnical and Environmental Engineering, Norwegian Geotechnical Institute, Oslo, Norway; Professor, Faculty of Environmental Sciences and Natural Resources (MINA), Norwegian University of Life Sciences (NMBU), Ås, Norway

Abstract

Carbon-intensive binders such as cement are traditionally employed to stabilise peat. Few studies have investigated alternative materials such as biochar to improve peat stability while simultaneously sequestering carbon dioxide. This study explored biochar produced through pyrolysis of clean wood and leaves to stabilise peat from Tiller-Flotten, Norway. Unconfined compressive strength, water content and pH measurements on biochar, Portland composite cement and peat compositions and a sustainability assessment were conducted. It was found that biochar amendment increased strength and stiffness of peat and cement-stabilised peat. Biochar showed the potential to reduce the cement amount when stabilising peat while retaining geotechnical properties. Peat stabilised with 200 kg/m3 of biochar and 100 kg/m3 of cement exhibited comparable strength (63.3 ± 4.2 kPa, n = 3) as samples with 200 kg/m3 of cement (63.2 ± 1.3 kPa, n = 3), but with a negative carbon footprint. Adding biochar quantities greater than 27% of the cement quantities resulted in a climate-neutral stabilisation. At a carbon price of approximately €85/t, the biochar costs equalled the cement costs. The cement-only samples outperformed the ones with additional biochar in terms of shear strength/€, while future carbon prices increased the competitiveness of biochar amendments.

Publisher

Thomas Telford Ltd.

Subject

Mechanics of Materials,Soil Science,Geotechnical Engineering and Engineering Geology,Building and Construction

Reference38 articles.

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