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Updated: Sep 28, 2026

Sediment Core Extrusion Method at Millimeter Resolution Using a Calibrated, Threaded-rod
Published on: August 17, 2016
How Deep Is Your Mud? Pinpointing Hidden Transitions in Restored Saltmarsh Sediments to Support Robust Assessment of
Robert B Sparkes1, Saule Akhmetkaliyeva1,2, Stuart A Rae1
1Department of Natural Sciences, Manchester Metropolitan University, Chester Street, Manchester, M1 5GD UK.
Abstract:
Tidal inundation of saltmarshes can mitigate anthropogenic carbon dioxide emissions by rapidly accumulating carbon-rich sediment, with the potential to sequester this "blue carbon" for thousands of years. The desire to remove atmospheric carbon, alongside increased flood risk from sea-level rise, is driving scientific and financial interest in restoring low-lying land into saltmarshes. Saltmarsh restoration buries agricultural fields with marine or estuarine sediment, yet the transition from agricultural soil to saltmarsh sediment is often difficult to observe in sediment cores. Quantifying sediment accumulation is critical for calculating the carbon benefits of saltmarsh restoration, and a pre-requisite for generating financial returns. At Bleadon Levels, a restored saltmarsh in Somerset, UK, we tested several methods to determine the transition between agricultural soils and saltmarsh sediments. Calcium (Ca) and inorganic carbon (IC) were significantly more concentrated in the upper parts of cores, interpreted as marine carbonates within saltmarsh sediment deposits. The biomarker-based Rsoil index agreed with Ca and IC data. Organic carbon (OC) measurements did not show matching changes, demonstrating that OC variations with depth do not reliably identify transitions from saltmarsh to agricultural layers. Thus, saltmarsh sediment depth can be determined using relatively simple, cost-effective Ca and IC concentration measurements, and restoration schemes should consider these techniques in their monitoring, reporting and verification procedures.
Supplementary Information:
The online version contains supplementary material available at https://doi.org/10.1007/s12237-026-01812-4.

