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Rosehip seed oil has been extracted using supercritical CO2 at various operating conditions to optimize extraction process.
Response Surface Methodology (RS M with a Box-Behnken Design (BBD) was used to optimize extraction conditions.
The response surface methodology based on Box-Behnken Design was employed to further optimize extraction conditions.
The present study was designed to optimize extraction process of tylophorine from T. asthmatica leaves.
Now, the RSM coupled with DF has been employed to optimize extraction process [20] and prepare nanoparticles [21].
A Box Behnken design combined with response surface methodology has been employed to optimize extraction parameters of DMAE.
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Optimized extraction parameters (30 MPa and 60 °C) allow to obtain higher yield and extracts enriched with bioactive phenolics.
After optimizing extraction conditions, the percentage efficiency of xylanase recovery was studied under un-optimized and optimized extraction conditions.
Optimized extraction conditions were extractant/ solid ratio 12: 1 (v w), 150 rpm agitation speed and 40°C.
Its aqueous solubility is a key parameter for designing and optimizing extraction processes used to obtain phenolic bioactive compounds from plant material.
Optimized extraction conditions were: NPOE as SLM, stirring rate of 1200 rpm, 54 V potential difference, 24 min as extraction time, acceptor phase (500 mM HCl) and donor phase (10 mM HCl).
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