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In coal seam gas production, interventions to increase well productivity from poorly performing wells need to be matched to the nature of the coal, which may include: fracture stimulation if the permeability is low; and matrix stimulation if gas flow is restricted by the matrix diffusion. Increasing the coal bed temperature will assist in matrix stimulation by increasing the diffusion flux and in-turn...
We investigate the effect of fluorine-functionalisation of nanoporous silicon carbide-derived carbon (SiCDC), on its structural as well as adsorption properties, with the aim of assessing its suitability for CO2 capture. The morphology and structure of samples fluorinated to three different F/C ratios are characterized by several analysis techniques, as well as gas adsorption. Fluorination is seen...
We investigate the adsorption equilibrium and uptake kinetics of CO 2 in nanoporous silicon carbide-derived carbon (SiC-DC) experimentally, as well as by simulation through grand canonical Monte Carlo (GCMC) and equilibrium molecular dynamics (EMD) simulations using a hybrid reverse Monte Carlo (HRMC) simulation-based atomistic structural model of the carbon. The kinetics is best explained...
Foot ulcers are major sources of morbidity in individuals with diabetes mellitus. As royal jelly (RJ, a worker honey bee product) contains enzymatic, antibacterial and vasodilative properties, it can potentially help in healing of diabetic foot ulcers (DFUs). This study aimed to evaluate the efficacy of topical RJ on healing of DFUs. Diabetic patients with foot ulcers who were referred to us at Khorshid...
We investigate macroscopic uptake kinetics of CH4 in silicon carbide-derived carbon (SiC-DC). Ultra-microprosity in SiC-DC is found based on CO2 adsorption at 273K, but which has poor accessibility to Ar at 87K. The adsorption kinetics of CH4 is found to follow a bidisperse pore structure model, considering relatively rapid particle scale diffusion in large micropores, and a much slower local grain...
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