2023
DOI: 10.1016/j.ijbiomac.2022.10.198
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Multiphasic lignocellulose-based suspension for oil-water interfacial stabilization: Synergistic adsorption and phase behavior

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Cited by 7 publications
(1 citation statement)
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“…The presence of tangles and abundant hydrogen bonds in the network structure of micro-/nanofiber-long fibers can increase the viscosity of the LCNF/DES mixture . In addition, the aromatic rings in LCNFs would also restrict the movement of rubber chains before decomposition; therefore, LCNF30, LCNF60, and LCNF120 presented higher viscosity than that of raw DES, and the increase in viscosity and non-Newtonian behavior clearly indicate that the polymer chain dynamics changed with the introduction of LCNFs. Not surprisingly, the viscosity of the three LCNF/DES fluids declined with increasing shear rate at 0–100 s –1 , which is attributed to the flow behavior called pseudoplasticity or shear thinning .…”
Section: Results and Discussionmentioning
confidence: 99%
“…The presence of tangles and abundant hydrogen bonds in the network structure of micro-/nanofiber-long fibers can increase the viscosity of the LCNF/DES mixture . In addition, the aromatic rings in LCNFs would also restrict the movement of rubber chains before decomposition; therefore, LCNF30, LCNF60, and LCNF120 presented higher viscosity than that of raw DES, and the increase in viscosity and non-Newtonian behavior clearly indicate that the polymer chain dynamics changed with the introduction of LCNFs. Not surprisingly, the viscosity of the three LCNF/DES fluids declined with increasing shear rate at 0–100 s –1 , which is attributed to the flow behavior called pseudoplasticity or shear thinning .…”
Section: Results and Discussionmentioning
confidence: 99%