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These selected factors were optimized by the central composite design (CCD) to maximize extraction of SLC.
The present study optimized ultrasound-assisted extraction conditions to maximize extraction yields of glycyrrhizic acid from licorice.
Suitable designs for polymer-based LLE platforms that maximize extraction efficiencies within the constraints of the fabrication methods and feasible operational conditions were obtained using analytical modeling.
Therefore, extraction conditions are important to maximize extraction yields and enrich the phenolic components.
The second phase, likely lasting until 2020, would then involve a more gradual drawdown designed to maximize extraction.
Runoff was generally recaptured and repeatedly reprocessed to maximize extraction of the mercury and silver.
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and solvent (ethanol, 50%; 0.5 ml HCL + 99.5 ml methanol) were tested for maximizing extraction process.
The results exhibited that the optimum conditions for maximizing extraction of SLC were 6.0 pH, 300 μL eluent (acetonitrile) volume, 10 mg of adsorbent and 6 min sonication time.
Utilizing both a high and low pH extraction buffer, we maximized extraction efficiency to the extent possible given the complex matrix of feed yard derived PM.
The extraction conditions that maximize both extraction yield of β-glucan (64.9 ± 0.8%) and led to the highest content in β-glucans in the final product (61.7 ± 1.0%) are 158 °C, 1.3 mL/min and 60 mL/g.
This study compares maceration (ME) and microwave assisted (MAE) extractions aiming to maximize the extraction of valuable compounds from Juglans regia L. leaves.
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