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Recycled Materials in Geotechnical and Pavement Applications

Recycled Materials in Geotechnical and Pavement Applications
Author: Amin Chegenizadeh
Publisher: Springer Nature
Total Pages: 114
Release: 2022-02-28
Genre: Science
ISBN: 3030942341

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This book considers the application of recycled materials both in pavement and geotechnical engineering. Currently, Australia has faced the fundamental concern of recycling waste plastic. On 1 January 2018, China enforced a prohibition on the importation of waste plastic. China's ban is followed by other countries like India, Indonesia, and Malaysia. The ban caused many corporations to abandon waste collection agreements, and the stockpiling of waste, as there is nowhere to safely deposit this waste. This issue seems, to a great extent, to have placed Australia's recycling industry in a crisis. As a result, local councils will have to find strategic ways of recycling accumulated waste that will become a more significant issue in the coming years. In Australia, apart from economic growth, the road pavement has weakened rapidly as the current pavement unable to withstand this urgent traffic load demand. The adding of polymers to the mixtures improves the stiffness, rutting resistance, and fatigue cracking [1]. However, the application of virgin polymer is costly. Thus, using waste polymer such as waste plastic polymer is an inexpensive substitute. The potential for recycled plastic to improve the performance properties of asphalt mixtures has been demonstrated in many countries the UK, Canada, The Netherlands, and India [2]. Similarly, another application of recycled materials can be in geotechnical infrastructure. This book considers the application of recycled materials both in pavement and geotechnical engineering. References [1] Airey, G.D., Singleton, T.M., & Collop, A.C.(2002). Properties of polymer modified bitumen after rubber- bitumen interaction. Journal of Materials in Civil Engineering .14(4), 344- 354. [2] K. O'Farrell. Australian Plastics Recycling Survey- National Report. Australian Government, Department of Environment and Energy, Australia. Project reference,2018 A21502.


Recycled Materials in Geotechnics

Recycled Materials in Geotechnics
Author: Ahmet H. Aydilek
Publisher:
Total Pages: 256
Release: 2005
Genre: Architecture
ISBN:

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GSP 127 contains 15 papers highlighting the use of recycled materials in geotechnics presented in sessions of the ASCE Civil Engineering Conference and Exposition, held in Baltimore, Maryland, October 19-21, 2004.


Recycled Materials in Geotechnical Applications

Recycled Materials in Geotechnical Applications
Author: Cumaraswamy Vipulanandan
Publisher:
Total Pages: 248
Release: 1998
Genre: Nature
ISBN:

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The 15 papers describe field applications and laboratory testing. The topics include the geotechnics of industrial by-products; paper mill sludge for landfill cover; tire shreds as lightweight fill for embankments and retaining walls; the performance of a highway embankment and hydraulic barriers co


Recycled Materials in Geotechnics

Recycled Materials in Geotechnics
Author:
Publisher:
Total Pages: 229
Release: 2004
Genre: Construction and demolition debris
ISBN:

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Sustainability in Geotechnics

Sustainability in Geotechnics
Author: Castorina Silva Vieira
Publisher: Mdpi AG
Total Pages: 448
Release: 2022-03-30
Genre: Technology & Engineering
ISBN: 9783036534190

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Implementing environmentally friendly and cost-effective solutions is a pressing need to fulfill the United Nations Sustainable Development Goals (SDGs) set to be achieved by 2030. Thus, the requirement to execute the design, construction and maintenance of civil engineering structures and infrastructures as sustainably as possible are big challenges currently faced by civil and geotechnical engineers. This book, compiling the papers published during the 2020-2021 biennium in the Topical Collection, "Sustainability in Geotechnics: The Use of Environmentally Friendly Materials", is intended help tackle those challenges. Several topics are covered by the 23 papers published herein, including: sustainable ground improvement techniques; replacement of raw materials such as soils and aggregates by recycled materials; soil reinforcement with alternative materials; sustainable solutions using geosynthetics; low-carbon solutions for stabilization of contaminated soils; and bioengineering techniques to prevent soil erosion. The Guest Editor expects that this book can be very useful towards the achievement of more environmentally friendly solutions, in particular in the field of geotechnical engineering.


Sustainable Environmental Geotechnics

Sustainable Environmental Geotechnics
Author: Krishna R. Reddy
Publisher: Springer Nature
Total Pages: 393
Release: 2020-09-07
Genre: Science
ISBN: 3030513505

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This volume contains selects papers presented during the Second International Conference on Environmental Geotechnology, Recycled Waste Materials and Sustainable Engineering, held in the University of Illinois at Chicago. It covers the recent innovations, trends, and concerns, practical challenges encountered, and the solutions adopted in geoenvironmental engineering, waste management, and sustainable engineering. This book will be useful for academics, educators, policy makers and professionals working in the field of civil engineering, chemical engineering, environmental sciences and public policy.


Geomechanics and Geotechnics of Particulate Media

Geomechanics and Geotechnics of Particulate Media
Author: Masayuki Hyodo
Publisher: CRC Press
Total Pages: 550
Release: 2006-08-17
Genre: Science
ISBN: 9780415410977

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Microscopic re-examination of geomaterials consisting of aggregates can shed light on macroscopic behaviour, including compressibility, anisotropy, yielding, creep, cyclic liquefaction and shear rupture. As a result of this process of examination, new methods of material characterization emerge, leading to a greater degree of accuracy in the specification of new constitutive models with physically-meaningful parameters. The impetus behind this development is an increasing awareness on sustainability, leading to the more efficient use of recycled materials for geotechnical applications. The characteristics of recycled materials, such as compressibility and self-hardening, may differ significantly from those of natural materials, and it is crucial that evaluation is made from a specifically particulate perspective.