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2021 | OriginalPaper | Chapter

Geotechnical Properties of β-Glucan-Treated Clayey Sand

Authors : M. Vishweshwaran, Evangelin Ramani Sujatha, Nadendla Harshith, Cheni Umesh

Published in: Sustainable Practices and Innovations in Civil Engineering

Publisher: Springer Singapore

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Abstract

Various techniques are used to improve and stabilize soil, most common are the mechanical and chemical methods. The materials used for soil stabilization pose challenges such as possible contamination of soil and groundwater, and emission of carbon dioxide during manufacturing. β-glucan, a biopolymer offers an attractive alternative and has greater potential for application in soil stabilization, yet only limited research is available. Monomers of D-glucose (C6H12O6) connected by β-glycosidic bonds lead to the formation of β-glucan. The structure of β-glucan can be varying. β-1,3/1,6-glucan possesses ramiform and helical shapes. They exhibit hydrogen bonding with external ions. β-glucans which possess good tensile strength have potential applications in controlling the cracking and tensile failure of many earth structures. They also exhibit better adsorption features. In this work, it was added in quantities of 0.5, 1, 1.5, 2, 2.5 and 3% to clayey sand. Select geotechnical properties such as liquid and plastic limits, optimum moisture content (OMC), maximum dry density, shear strength and permeability were determined. Durability tests, tests on biopolymers such as gel matrix formation and its degradation were conducted.

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Literature
1.
go back to reference Aminpour M, O’Kelly BC (2015) Applications of biopolymers in dam construction and operation activities. In: Proceedings of the 2nd International Dam World Conference, Lisbon, Portugal, vol. 1, pp 937–946 Aminpour M, O’Kelly BC (2015) Applications of biopolymers in dam construction and operation activities. In: Proceedings of the 2nd International Dam World Conference, Lisbon, Portugal, vol. 1, pp 937–946
2.
go back to reference Rashid ASA, Latifi N, Meehan CL (2017) Sustainable improvement of tropical residual soil using an environmentally friendly additive. Geotech Geol Eng 35(6):2613–2623 Rashid ASA, Latifi N, Meehan CL (2017) Sustainable improvement of tropical residual soil using an environmentally friendly additive. Geotech Geol Eng 35(6):2613–2623
3.
go back to reference Latifi N, Horpibulsuk S, Meehan CL (2016) Improvement of problematic soils with biopolymer—an environmentally friendly soil stabilizer. J Mater Civil Eng 29(2):04016204 Latifi N, Horpibulsuk S, Meehan CL (2016) Improvement of problematic soils with biopolymer—an environmentally friendly soil stabilizer. J Mater Civil Eng 29(2):04016204
4.
go back to reference Kasapis S, Norton IT, Johan B (2009) Modern biopolymer science: bridging the divide between fundamental treatise and industrial application. Academic Press Kasapis S, Norton IT, Johan B (2009) Modern biopolymer science: bridging the divide between fundamental treatise and industrial application. Academic Press
5.
go back to reference Cui X, Shin H, Song C, Laosinchai W, Amano Y (2001) A putative plant homolog of the yeast β-1, 3-glucan synthase subunit FKS1 from cotton (Gossypiumhirsutum L.) fibers. Planta 213(2):223–230CrossRef Cui X, Shin H, Song C, Laosinchai W, Amano Y (2001) A putative plant homolog of the yeast β-1, 3-glucan synthase subunit FKS1 from cotton (Gossypiumhirsutum L.) fibers. Planta 213(2):223–230CrossRef
6.
go back to reference Kiho T, Sakushima M, Wang S (1991) Polysaccharides in Fungi. XXVI. Two branched (1 → 3)-β-D-Glucans from hot water extract of Yu ĕr. Chem Pharm Bull 39(3):798–800 Kiho T, Sakushima M, Wang S (1991) Polysaccharides in Fungi. XXVI. Two branched (1 → 3)-β-D-Glucans from hot water extract of Yu ĕr. Chem Pharm Bull 39(3):798–800
7.
go back to reference Nugent RA, Zhang G, Gambrell RP (2010) The effects of exopolymers on the erosional resistance of cohesive sediments. Scour and Erosion:162–171 Nugent RA, Zhang G, Gambrell RP (2010) The effects of exopolymers on the erosional resistance of cohesive sediments. Scour and Erosion:162–171
8.
go back to reference Qureshi MU, Chang I, Al-Sadarani K (2017) Strength and durability characteristics of biopolymer-treated desert sand. Geomech Eng 12(5):785–801 Qureshi MU, Chang I, Al-Sadarani K (2017) Strength and durability characteristics of biopolymer-treated desert sand. Geomech Eng 12(5):785–801
9.
go back to reference Chang I, Im J, Prasidhi AK, Cho GC (2015) Effects of Xanthan gum biopolymer on soil strengthening. Constr Build Mater 74:65–72CrossRef Chang I, Im J, Prasidhi AK, Cho GC (2015) Effects of Xanthan gum biopolymer on soil strengthening. Constr Build Mater 74:65–72CrossRef
10.
go back to reference Rezaeimalek S, Nasouri A, Huang J (2017) Comparison of short-term and long-term performances for polymer-stabilized sand and clay. J Traffic Transp Engineering (English ed.) 4(2):145–155CrossRef Rezaeimalek S, Nasouri A, Huang J (2017) Comparison of short-term and long-term performances for polymer-stabilized sand and clay. J Traffic Transp Engineering (English ed.) 4(2):145–155CrossRef
11.
go back to reference BIS, I. 2720, Methods of test for soils: Part 4 grain size analysis, 1985 BIS, I. 2720, Methods of test for soils: Part 4 grain size analysis, 1985
12.
go back to reference BIS, I. 2720, Methods of test for soils: Part 5: Determination of liquid and plastic limit, 1985 BIS, I. 2720, Methods of test for soils: Part 5: Determination of liquid and plastic limit, 1985
13.
go back to reference BIS, I. 2720, Methods of Test for Soils: Part 7: Determination of water content-dry density relation using light compaction, 1980 BIS, I. 2720, Methods of Test for Soils: Part 7: Determination of water content-dry density relation using light compaction, 1980
14.
go back to reference BIS, I. 2720, Method of test for soils: Part 13 Direct shear test, 1986 BIS, I. 2720, Method of test for soils: Part 13 Direct shear test, 1986
15.
go back to reference BIS, I. 2720, Methods of test for soils, Part 40: Determination of free swell index of soils, 1977 BIS, I. 2720, Methods of test for soils, Part 40: Determination of free swell index of soils, 1977
16.
go back to reference BIS, I. 4332.Methods of test for stabilized soils, Part 4: Wetting and drying, and freezing and thawing tests for compacted soil-cement mixtures, 1968 BIS, I. 4332.Methods of test for stabilized soils, Part 4: Wetting and drying, and freezing and thawing tests for compacted soil-cement mixtures, 1968
17.
go back to reference Chang I, Im J, Cho GC (2016) Introduction of microbial biopolymers in soil treatment for future environmentally-friendly and sustainable geotechnical engineering. Sustainability 8(3):251CrossRef Chang I, Im J, Cho GC (2016) Introduction of microbial biopolymers in soil treatment for future environmentally-friendly and sustainable geotechnical engineering. Sustainability 8(3):251CrossRef
18.
go back to reference Chang I, Cho GC (2012) Strengthening of Korean residual soil with β-1, 3/1, 6-glucan biopolymer. Constr Build Mater 30:30–35CrossRef Chang I, Cho GC (2012) Strengthening of Korean residual soil with β-1, 3/1, 6-glucan biopolymer. Constr Build Mater 30:30–35CrossRef
Metadata
Title
Geotechnical Properties of β-Glucan-Treated Clayey Sand
Authors
M. Vishweshwaran
Evangelin Ramani Sujatha
Nadendla Harshith
Cheni Umesh
Copyright Year
2021
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-5101-7_6