Subsurface Biomining Simulation

Subsurface biomining simulation is the use of computational models to represent mineral extraction by microorganisms within underground rock formations, helping engineers evaluate this low-impact recovery strategy before field deployment. These simulations integrate fluid flow, solute transport, mineral dissolution, and microbial activity to predict how injected fluids and microbes interact with ore-bearing geological materials under subsurface conditions. By testing variables such as permeability, temperature, reaction rates, and nutrient delivery, engineers can estimate metal recovery, identify operational limits, and assess environmental risks. The approach supports process design, site evaluation, and optimization of in situ biomining while reducing reliance on costly and disruptive trial-and-error experiments.

Subsurface Biomining Simulation - Related Videos

Research

JoVE Journal - Engineering
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Using Flexible Gold-Titanium Reaction Cells to Simulate Pressure-Dependent Microbial Activity in the Context of Subsurface Biomining

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Cited by 3 •

2019

This protocol describes microbial experiments under elevated pressures to study in situ biomining processes. The experimental approach employs a rocking high-pressure reactor equipped with a gold-titanium reaction cell containing a microbial culture in an acidic, iron-rich medium.

Research

JoVE Journal - Biology

A High Throughput Screen for Biomining Cellulase Activity from Metagenomic Libraries

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Cited by 24 •

2011

This protocol describes a high throughput screen for cellulolytic activity from a metagenomic library expressed in Escherichia coli. The screen is solution based and highly automated, and uses one-pot chemistry in 384 well microplates with the final readout as an absorbance measurement.

Data Processing Methods for 3D Seismic Imaging of Subsurface Volcanoes: Applications to the Tarim Flood Basalt

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Cited by 3 •

2017

Three-dimensional (3D) reflection seismology is a powerful method for imaging subsurface volcanoes. By using industrial 3D seismological data from the Tarim Basin, we illustrate how to extract the sills and the conduits of subsurface volcanoes from seismic data cubes.

Subsurface Defect Localization by Structured Heating Using Laser Projected Photothermal Thermography

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Cited by 7 •

2017

This method aims at locating vertical subsurface defects. Here, we couple a laser with a spatial light modulator and trigger its video input to heat a sample surface deterministically with two anti-phased modulated lines while acquiring highly resolved thermal images. The defect position is retrieved from evaluating thermal wave interference minima.

Visualizing Hyporheic Flow Through Bedforms Using Dye Experiments and Simulation

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Cited by 4 •

2015

This manuscript describes how to create regular bedforms in a flume, visualize flow through the bedforms, and use computer simulations to simulate the hyporheic flow. The computer simulations compare well with the experimental observations. This coupled simulation and experiment is well-suited for both research and educational purposes.

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