Javascript must be enabled to continue!
Assessing the biogeochemical impacts of terrestrial enhanced rock weathering on soil fertility
View through CrossRef
Terrestrial enhanced rock weathering (ERW) is a promising carbon dioxide removal technology that consists in applying ground silicate rock on agricultural soils. ERW efficiency is based on the carbon dioxide sequestration associated with the chemical weathering of silicate minerals. On top of carbon sequestration, this chemical weathering can most notably raise the soil pH and release nutrients, thereby potentially improving soil fertility. Despite these possible cobenefits, potential drawbacks such as heavy metal pollution or soil structure damage have also been raised. Yet to our knowledge, these potential effects of ERW on soil fertility have not been simultaneously investigated.This field trial assessed the impact of ERW on biological, physical, and geochemical dimensions of soil fertility. Overall, basalt addition had a predominantly positive to neutral effect on soil fertility. The majority of soil properties showed no significant change either 1 month or 1 year post basalt application. Nevertheless, our study highlighted a significant increase in earthworm biomass, soil respiration and sodium concentration as early as 1 month post application. These changes, suggestive of rapid initial weathering processes, require further investigation before enhanced rock weathering can be considered a viable and secure carbon dioxide removal technology.
Copernicus GmbH
Title: Assessing the biogeochemical impacts of terrestrial enhanced rock weathering on soil fertility
Description:
Terrestrial enhanced rock weathering (ERW) is a promising carbon dioxide removal technology that consists in applying ground silicate rock on agricultural soils.
ERW efficiency is based on the carbon dioxide sequestration associated with the chemical weathering of silicate minerals.
On top of carbon sequestration, this chemical weathering can most notably raise the soil pH and release nutrients, thereby potentially improving soil fertility.
Despite these possible cobenefits, potential drawbacks such as heavy metal pollution or soil structure damage have also been raised.
Yet to our knowledge, these potential effects of ERW on soil fertility have not been simultaneously investigated.
This field trial assessed the impact of ERW on biological, physical, and geochemical dimensions of soil fertility.
Overall, basalt addition had a predominantly positive to neutral effect on soil fertility.
The majority of soil properties showed no significant change either 1 month or 1 year post basalt application.
Nevertheless, our study highlighted a significant increase in earthworm biomass, soil respiration and sodium concentration as early as 1 month post application.
These changes, suggestive of rapid initial weathering processes, require further investigation before enhanced rock weathering can be considered a viable and secure carbon dioxide removal technology.
Related Results
Climate change mitigation? Interactions between bio-weathering and soil organic carbon dynamics 
Climate change mitigation? Interactions between bio-weathering and soil organic carbon dynamics 
There are two main processes acting as carbon sinks for CO2 on land: Silicate weathering and photosynthesis. The former creates bicarbonates which can be stored in soils or leached...
Riverine water chemistry and rock weathering processes of Qingyi River basin, a subtropical basin in east China
Riverine water chemistry and rock weathering processes of Qingyi River basin, a subtropical basin in east China
To investigate the rock weathering processes in silicate-dominated subtropical basin in east China, we analyzed major ion compositions of rivers and precipitation samples in the Qi...
Ecological soil physics as section of ecological soil science
Ecological soil physics as section of ecological soil science
Nowadays, there is a general penetration of ecology in other related sciences. Soil science is not an exception. To the evidence of this, the works of soil scientists may serve, th...
Dual Laser Method for Experimentally Weathering Planetary Regoliths
Dual Laser Method for Experimentally Weathering Planetary Regoliths
<p>Experimental space weathering&#8212;whether laser, thermal reduction, impact, or ion based&#8212;is a critical endeavor to accurately interpret spa...
Does Plant Growth accelerate Rock Weathering?
Does Plant Growth accelerate Rock Weathering?
<p>A common paradigm holds that, to satisfy mineral nutrient demand, plants and associated soil microbiota accelerate rock weathering which in turn aids to regulate t...
Reliability-based design (RBD) of shallow foundations on rock masses
Reliability-based design (RBD) of shallow foundations on rock masses
[ACCESS RESTRICTED TO THE UNIVERSITY OF MISSOURI AT AUTHOR'S REQUEST.] The reliability-based design (RBD) approach that separately accounts for variability and uncertainty in load(...
Should we? Can we? apply experimental rock physics knowledge to reconsidering soil production functions?
Should we? Can we? apply experimental rock physics knowledge to reconsidering soil production functions?
Geomorphology context: Earth surface scientists have long posited what controls bedrock to soil conversion rates, which we can now test (assuming steady state) using cosmogenic nuc...
Granite Weathering
Granite Weathering
Weathering is a necessary precursor for landform development. However, in the context of granite it acquires a particular importance for various reasons. First, many granite terrai...

