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Application of microbially induced calcite precipitation in erosion mitigation and stabilization of sandy soil foreshore slopes : a preliminary investigation
- Publication Year :
- 2016
-
Abstract
- Eroding foreshores endanger the floodplains of many estuaries, as such, effective and environmentally friendly interventions are sought to stabilise slopes and mitigate erosion. As a step in forestalling these losses, we developed laboratory microcosms to simulate tidal cycles and examined the mechanisms of erosion and failure on sandy foreshore slopes. As an experimental aim, we applied microbially induced calcite precipitation (MICP) to selected slopes and compared the effectiveness of this microbial geo-technological strategy to mitigate erosion and stabilise slopes. To assess shoreline stability, thirty cycles of slowly simulated tidal currents were applied to a sandy slope. Significant sediment detachment occurred as tides moved up the slope surface. For steeper slopes, one tidal event was sufficient to cause collapse of the slopes to the soil's angle of repose (similar to 35 degrees). Subsequent tidal cycles gradually eroded surface sediments further reducing slope angle (on an average 0.2 degrees per tidal event). These mechanisms were similar for all slopes irrespective of initial slope inclination. MICP was evaluated as a remedial measure by treating a steep slope of 53 degrees and an erosion-prone slope angle of 35 degrees with Sporosarcina pasteurii and cementation solution (0.7 M CaCl2 and urea) before tidal simulations. MICP produced 120 kg calcite per m(3) of soil, filling 9.9% of pore space. Cemented sand withstood up to 470 kPa unconfined compressive stress and showed significantly improved slope stability; both slopes showed negligible sediment erosion. With efforts towards optimisation for upscaling and further environmental considerations (including effect of slope saturation on MICP treatment, saline water and estuarine/coastal ecology amongst others), the MICP process demonstrates promise to protect foreshore slope sites. (C) 2015 Elsevier B.V. All rights reserved.
- Subjects :
- Micp
0211 other engineering and technologies
Intertidal zone
02 engineering and technology
Pasteurii
010501 environmental sciences
01 natural sciences
Humber Estuary
chemistry.chemical_compound
Slope stability
Erosion Mitigation
Improvement
Rip Current
QE
Geotechnical engineering
Foreshore
Slope Stabilisation
Ureolysis
021101 geological & geomatics engineering
0105 earth and related environmental sciences
Calcite
Carbonate Precipitation
biology
Beach
Sediment
Geology
Geotechnical Engineering and Engineering Geology
Cementation (geology)
biology.organism_classification
Suspended-Sediment Transport
Angle of repose
Sporosarcina pasteurii
Turbulence
chemistry
TA
Saturation (chemistry)
Swash Zone
Subjects
Details
- Language :
- English
- ISSN :
- 00137952
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....e7239229b03047f797b18ceb5d0fabc5