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March 25, 2026Processes1 citationsOpen Access

Biochar-Enhanced Inorganic Gel for Water Plugging in High-Temperature and High-Salinity Fracture-Vuggy Reservoirs

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SHShiwei HeTWTengfei Wang

Key Points

  • The aim is to develop a biochar-enhanced inorganic composite gel for effective water plugging in challenging reservoir conditions.
  • Developed a biochar-enhanced inorganic gel system using biochar from agricultural waste.
  • Conducted rheological testing and high-temperature mechanical experiments.
  • Evaluated long-term thermal stability and dynamic sealing on fractured rock cores.
  • Analyzed the effect of biochar content on matrix strength and hydration kinetics.
  • 0.5 wt% biochar significantly enhanced the micro pore structure of the matrix.
  • Increased compressive strength to over 2 MPa with no significant strength decline after aging at 130 °C for 30 days.
  • Extended solidification time to 15 hours due to the adsorption slow-release mechanism of biochar.

Abstract

With the expansion of global oil and gas resource exploration and development into deep and ultra deep layers, the efficient development of deep carbonate rock fracture cave reservoirs has become the key to ensuring energy security. However, this type of reservoir commonly faces high temperatures, high salinity, and extremely strong heterogeneity, leading to increasingly severe water content spikes caused by dominant water flow channels. Although the existing traditional inorganic plugging agent has good temperature resistance, it has the defects of great brittleness and easy cracking, while the organic polymer gel is prone to degradation failure under high temperature and high salt environments. In order to solve the above problems, a new biochar-enhanced inorganic composite gel system was constructed by using biochar prepared from agricultural and forestry waste pyrolysis as a functional enhancement component. Through rheological testing, high-temperature and high-pressure mechanical experiments, long-term thermal stability evaluation, and dynamic sealing experiments of fractured rock cores, the reinforcement and toughening laws and rheological control mechanisms of biochar on inorganic matrices were systematically studied. Research has found that a biochar content of 0.5 wt% can significantly improve the micro pore structure of the matrix. By utilizing its micro aggregate filling effect and interfacial chemical bonding, the compressive strength of the solidified body can be increased to over 2 MPa, and there is no significant decline in strength after aging at 130 °C for 30 days. More importantly, the unique “adsorption slow-release” mechanism of biochar effectively stabilizes the hydration reaction kinetics at high temperatures, extending the solidification time of the system to 15 h and solving the problem of flash condensation in deep well pumping. This system exhibits excellent shear thinning characteristics and crack sealing ability, and presents a unique “yield reconstruction” toughness sealing feature. This study elucidates the multidimensional strengthening mechanism of biochar in inorganic cementitious materials, providing technical reference for stable oil and water control in deep fractured reservoirs.

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Cite This Study

He et al. (2026) studied this question.

synapsesocial.com/papers/69c37afeb34aaaeb1a67d0f2https://doi.org/10.3390/pr14061014
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