31 research outputs found

    Regular Solution Theory Model Used To Predict Supercritical CO2 Extraction Of p-chlorophenol Contaminate From Water Stream.

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    The objective of this paper is the assessments of the feasibility of the extraction process utilizing a near critical carbon dioxide solvent with p-chlorophenol contaminate solute, which would be speeded up if it were possible to predict mutual solubility data

    Phase Equilibrium Data Study With Carbon Dioxide Solvent For 80.52:19.48 Of Ethanoloctane Mixture At Elevated Pressure.

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    Solubility data of a mixture containing 80.52 % ethanol and 19.48 % octane was measured in carbon dioxide solvent using a high-pressure type phase equilibrium apparatus at pressures up to 100 bar and at temperature of 75 °C. The experimental results showed that considerable separation was not achieved in this ethanol and octane ratio using carbon dioxide

    Membranes based on non-synthetic (natural) polymers for wastewater treatment

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    During the last decades, rising environmental concerns about the widespread usage of petroleum-based synthetic polymers has caused naturally occurring polymers to gain momentous. As a biocompatible and environmentally friendly alternative, bio-based polymers are continuously gaining new domains of application in drug delivery systems, tissue engineering, membrane technology, bio-sensor devices, etc. There is an increasing number of scientists who have applied various kinds of biopolymers, such as cellulose, chitin, starch, and alginate to fabricate fully or semi-biodegradable membranes for wastewater treatment. Beside biocompatibility, biopolymers combine many attractive features such as hydrophilicity and functionalizability that makes them great candidates to enhance the performance of composite membranes to effectively purify water from hazardous pollutants. On the other hand, elevating thermo-mechanical and chemical stability of these bio-based materials by introducing new organic and inorganic additives is another main focus area. This review is concerned with 1) introducing the promising feature of biopolymers that can be used as a raw material to synthesize membranes for water treatment, 2) proposing a comprehensive categorization of these membranes based on their structure, and 3) discussing the performance of these membranes in eliminating various kinds of contaminants from effluents and their strength and weakness points
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