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The effect of temperature (40 80 °C), pressure (10 50 MPa) and extraction time (30 150 min) on the oil yield was investigated using a central composite design method to determine the significance and interactions of these parameters.
The effect of different parameters, such as temperature, extraction time and liquid solid ratio, on the extraction yield was investigated using the Response Surface Method (RS M with the Box Behnken Design (BBD) method.
The effect of different parameters, such as particle size (40, 60, 80 mesh), temperature (°C) 10, 15, 20 and extraction time (3, 5, 8 h), on the extraction yield was investigated using three-level orthogonal array design.
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The effects of operating conditions for each activation method on the BET surface area of the product and reaction yield were investigated using central composite design (CCD).
The effects of the reaction conditions on the biodiesel yield were investigated using a combination of response surface methodology and three-level/three-factor Box Behnken design (BBD).
The effects of pressure, temperature and supercritical fluid's flow rate on the oil yield were investigated using Taguchi experimental design strategy.
The effect of varying the catalyst loading (wt.%), reaction time (h) and temperature (°C) and molar composition of MPMDS on the biodiesel yield were investigated using a 2k factorial design.
The effects of various extraction parameters including extraction temperature, static extraction time and cycle index on yield were investigated using a DIONEX ASE 300 system to select the optimal conditions by an orthogonal test design L9 (3)3.
The effects of pressure, temperature, flow rate of supercritical fluid and extraction time on the oil yield were investigated using a central composite experimental design strategy to determine the significant parameters and their interactions.
The effects of pressure (30 MPa, 40 MPa, 50 MPa), temperature (40 °C, 60 °C, 80 °C) and extraction time (60 min, 90 min and 120 min) on the oil yield were investigated using a three-level orthogonal array design.
The effect of extraction time (4 6 h) and extraction temperature (90 110 °C) on the mangiferin yield were investigated using Face Centered Central Composite Design (FCCCD) with five centre points under Response Surface Methodology (RS M.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com