Rheological behavior of zein biopolymer and stiffness characteristic of biopolymer treated soil

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22
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24

초록

The modification of polymeric biomolecules to achieve improved cementation is important for their potential applications. This study presents the rheological behaviors of eco-friendly zein biopolymer and stiffness char-acteristics of biopolymer-treated soil under various solvent and curing conditions. The rheological and stiffness characteristics of zein biopolymer are evaluated in terms of shear stress, viscosity, and shear wave velocity. The time sensitivity, flow index, and microstructure of biopolymer gel are analyzed. The biopolymer gel generally exhibits a weakly non-Newtonian shear-thickening behavior, except for the specimen cured for 24 h under chamber condition. At a constant shear rate, the biopolymer gel shows a rheopexy behavior, which is charac-terized by an increase in viscosity over time. The shear wave velocity of biopolymer-treated soil increases with the curing period, up to 50 and 96 % under atmospheric and chamber conditions, respectively. The peak ab-sorption values for the hydroxyl functional group decrease significantly as the curing period and ethanol content increase. Furthermore, the microparticle sizes of the zein biopolymer gel decrease with increasing ethanol content. Therefore, understanding the stiffness characteristics of biopolymer-treated soil specimens for potential soil stabilization can be improved based on the rheological properties of zein biopolymer.

키워드

Biopolymer; Elastic wave; Rheology; Soil stabilization; Zein; XANTHAN GUM BIOPOLYMER; CHITOSAN
제목
Rheological behavior of zein biopolymer and stiffness characteristic of biopolymer treated soil
저자
Babatunde, Quadri Olakunle; Yoon, Hyung-Koo; Byun, Yong-Hoon
DOI
10.1016/j.conbuildmat.2023.131466
발행일
2023-06-27
유형
Article
저널명
Construction and Building Materials
권
384