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1.
J Colloid Interface Sci ; 487: 418-425, 2017 Feb 01.
Article in English | MEDLINE | ID: mdl-27810510

ABSTRACT

Glycerol carbonate is one of the most potentially multifunction glycerol-derived compounds. Glycerol is an important by-product of the oleochemical industry. The oligomerization of glycerol carbonate, assisted by the glycerol, results in the production of polyhydroxylated oligomers rich in linear carbonate groups. The polar moieties of these oligomers (Mw<1000Da) were supplied by glycerol and glycerol carbonate rather than ethylene oxide as in most commercial surfactants. The insertion of linear carbonate groups into the glycerol-based skeleton rendered the oligomers amphiphilic, resulting in a decrease in air/water surface tension to 57mN/m. We improved the physical and chemical properties of the oligomers, by altering the type of acylation reaction and the nature of the acyl donor. The polar head is constituted of homo-oligomers and hetero-oligomers. Homo-oligomers are oligoglycerol and/or oligocarbonate, hetero-oligomers are oligo(glycerol-glycerol carbonate). Coprah oligoesters had the best surfactant properties (CMC<1mg/mL, πcmc<30mN/m), outperforming molecules of fossil origin, such as ethylene glycol monododecyl ether, glycol ethers and fatty acid esters of sorbitan polyethoxylates. The self-assembling properties of oligocarbonate esters were highlighted by their ability to stabilize inverse and multiple emulsions. The oligo-(glycerol carbonate-glycerol ether) with relatively low molecular weights showed properties of relatively high-molecular weight molecules, and constitute a viable "green" alternative to ethoxylated surfactants.


Subject(s)
Carbonates/chemistry , Esters/chemistry , Glycerol/chemistry , Surface-Active Agents/chemistry , Acylation , Air/analysis , Emulsions , Ethers/chemistry , Ethylene Glycols/chemistry , Molecular Weight , Polymerization , Polysorbates/chemistry , Surface Tension , Water/chemistry
2.
Bioresour Technol ; 101(23): 9348-54, 2010 Dec.
Article in English | MEDLINE | ID: mdl-20659798

ABSTRACT

A twin-screw extruder was used for the extraction of wheat bran hemicelluloses by the co-extrusion of wheat straw and bran. As compared with a stirred reactor extraction, a twin-screw extruder resulted in a lower extraction rate (only about 24% of hemicelluloses in the wheat bran), but it has the advantages of a shorter residence time for the vegetable matter and a lower chemical and water consumption. Hemicellulose powder production is usually effected via an expensive alcoholic precipitation step after concentration. Ultrafiltration was investigated as a means to reduce the alcohol consumption. Trials were made with hollow fiber polyethersulfone membranes with a molecular weight cut-off of 30 kDa. Ultrafiltration mainly concentrated the extract and removed small molecules such as monosaccharides and minerals. The combination of the anion-exchange chromatography and ultrafiltration allowed for the removal of colored compounds.


Subject(s)
Biotechnology/methods , Polysaccharides/isolation & purification , Arabinose/analysis , Chromatography , Color , Dietary Fiber/metabolism , Powders , Recycling , Resins, Synthetic/chemistry , Sodium Hydroxide/chemistry , Time Factors , Ultrafiltration , Xylose/analysis
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