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Design and Construction of an Experimental Setup to Enhance Mineral Weathering Through the Activity of Soil Organisms

Journal of visualized experiments JoVE(2023)

Wageningen Univ & Res

Cited 2|Views13
Abstract
Enhanced weathering (EW) is an emerging carbon dioxide (CO2) removal technology that can contribute to climate change mitigation. This technology relies on accelerating the natural process of mineral weathering in soils by manipulating the abiotic variables that govern this process, in particular mineral grain size and exposure to acids dissolved in water. EW mainly aims at reducing atmospheric CO2 concentrations by enhancing inorganic carbon sequestration. Until now, knowledge of EW has been mainly gained through experiments that focused on the abiotic variables known for stimulating mineral weathering, thereby neglecting the potential influence of biotic components. While bacteria, fungi, and earthworms are known to increase mineral weathering rates, the use of soil organisms in the context of EW remains underexplored. This protocol describes the design and construction of an experimental setup developed to enhance mineral weathering rates through soil organisms while concurrently controlling abiotic conditions. The setup is designed to maximize weathering rates while maintaining soil organisms' activity. It consists of a large number of columns filled with rock powder and organic material, located in a climate chamber and with water applied via a downflow irrigation system. Columns are placed above a fridge containing jerrycans to collect the leachate. Representative results demonstrate that this setup is suitable to ensure the activity of soil organisms and quantify their effect on inorganic carbon sequestration. Challenges remain in minimizing leachate losses, ensuring homogeneous ventilation through the climate chamber, and avoiding flooding of the columns. With this setup, an innovative and promising approach is proposed to enhance mineral weathering rates through the activity of soil biota and disentangle the effect of biotic and abiotic factors as drivers of EW.
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Key words
Mineral Carbonation,Weathering Rates,CO2 Sequestration,Carbon Capture
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要点】:本文提出了一种通过土壤生物活性增强矿物风化作用的实验装置设计,旨在探索一种创新的二氧化碳去除技术以缓解气候变化。

方法】:通过设计一种能同时控制生物和非生物因素的实验装置,以促进矿物风化作用的提升。

实验】:实验采用多个装有岩石粉末和有机物的柱状容器,置于气候室中,并通过下流灌溉系统供水,使用冰箱中的容器收集渗滤液。实验结果表明该装置能有效保持土壤生物活性并量化其对无机碳封存的影响。