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Original Articles

Rheological and microrheological characterization of a novel amphoteric xanthan gum

, , , , , , & show all
Pages 1018-1024 | Received 15 Jul 2017, Accepted 12 Sep 2017, Published online: 20 Oct 2017
 

ABSTRACT

A novel amphoteric xanthan gum (AXG) containing anionic carboxyl groups and cationic quaternary ammonium substituents was prepared from xanthan gum (XG) and 3-chloro-2-hydroxypropyltriethanolammonium acetate. The rheological and microrheological properties of AXG and XG solutions were studied in this work. The rheological results showed that the apparent viscosity of the 0.4% AXG solution was 5.26 times that of the 0.4% XG solution, and the AXG solution exhibited more obvious thixotropy and much stronger viscoelasticity than the XG solution. Both experiment and numerical simulations were adopted to investigate the gel-breaking process of the AXG solution, and the rheokinetics equations can well describe the evolution of complex viscosity. Moreover, the optical microrheology method was also adopted to investigate the microrheological behavior of AXG and XG solutions. The microrheological results showed that the AXG solution exhibited higher viscosity index at zero shear and a more obvious solid-like behavior than the XG solution. Good agreement is found when comparing the results obtained from microrheology to classical rheology, which verifies the feasibility of the microrheology method for measuring the solution properties, especially some properties not well described by the current rheological approach.

GRAPHICAL ABSTRACT

Additional information

Funding

This project was granted financial support from the National Science and Technology Major Project of China (No. 2017ZX05023003) and the National High Technology Research and Development Program “863” Project of China (No. 2013AA064801).

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