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The hydrogen production by natural gas reforming and lignocellulosic biomass gasification are systematically analyzed by developing thermo-economic models.
The air-side heat transfer and flow characteristics of the integrated fin and micro-channel heat exchanger are systematically analyzed by a 3D numerical simulation.
In addition, the effects of ZnO and gold loading on gas sensing properties of P3HT sensing films are systematically analyzed by comparing the performances of P3HT with and without unloaded and 1.00 mol% Au-loaded ZnO NPs.
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The microstructure evolution during ECAP was systematically analyzed by EBSD.
This critical problem is systematically analyzed by using an equivalent thermal circuit and 2-D simulations.
Urea electro-oxidation reaction in alkaline medium is systematically analyzed by electrochemical impedance spectroscopy (EIS).
The heat transfer and fluid flow characteristics of the vortex-generator channel were systematically analyzed by 3D-CFD simulations.
This evolution has been systematically analyzed by identifying some functional damage parameters, involving strain, energy, transformation stress, Young's modulus and phase transition temperatures.
The structural, mechanical and corrosion resistance properties of TiN and Ti/TiN multilayer coatings were systematically analyzed by a variety of characterization techniques.
Based on this, a new type of BLVL double-beam members was developed and their bending properties including ultimate load, static bending strength and strain distribution were systematically analyzed by comparing with other double beams with different members.
The thermochemical production of hydrogen from lignocellulosic biomass is systematically analyzed by developing thermo-environomic models combining thermodynamics with economic analysis, process integration techniques and optimization strategies for the conceptual process design.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com