Sulfur Concrete for the Construction Industry

Sulfur Concrete for the Construction Industry
Author: Abdel-Mohsen Onsy Mohamed
Publisher: J. Ross Publishing
Total Pages: 449
Release: 2010-07-15
Genre: Architecture
ISBN: 1604270055

This is a detailed and accessible examination of the properties, behaviour, and uses of sulfur cement and concrete in the construction industry. It discusses the basic properties and behaviour of sulfur cement and concrete materials, evaluates new sulfur market applications, and much more.

Sulfapave

Sulfapave
Author: William C. McBee
Publisher:
Total Pages: 24
Release: 1984
Genre: Mineral industries
ISBN:

Construction Biotechnology

Construction Biotechnology
Author: Volodymyr Ivanov
Publisher: Springer
Total Pages: 332
Release: 2016-10-20
Genre: Technology & Engineering
ISBN: 9811014450

This book presents the first comprehensive text on construction biomaterials and bioprocesses. It details aspects of construction biotechnology, a new interdisciplinary area involving applications of environmental and industrial microbiology and biotechnology in geotechnical and civil engineering. It also critically reviews all existing and potential construction biotechnology processes. It discusses a number of topics including the biotechnological production of new construction materials such as self-healing concrete, construction biocomposites, construction bioplastics, and biotechnological admixtures to cement. It also addresses construction-related processes like biocementation, bioclogging, soil surface fixation and biosealing, microbial cements and grouts, the biocoating of construction material surfaces, the microbiology and biosafety of the construction environment, the prevention of biocorrosion as well as biodeterioration and biofouling in civil engineering. Biomediated precipitation of calcium, magnesium, and iron compounds as carbonates, phosphates, sulphides, and silicate minerals in soil for its clogging and strengthening are considered from geotechnical, chemical, and microbiological points of view. It offers an overview of the basic microbiology that will enable civil engineers to perform the construction biogeochemical processes. Design principles and considerations for different field implementations are discussed from a practical point of view. The book can be used as a textbook for graduate and senior undergraduate students in biotechnology, civil engineering and environmental engineering as well as a reference book for researchers and practitioners working in this new interdisciplinary area.

Nonconventional Concrete Technologies

Nonconventional Concrete Technologies
Author: Committee on Nonconventional Concrete Technologies for Renewal of the Highway Infrastructure
Publisher: National Academies Press
Total Pages: 125
Release: 1997-04-08
Genre: Technology & Engineering
ISBN: 0309562317

Nonconventional Concrete Technologies: Renewal of the Highway Infrastructure identifies research and development opportunities in innovative, nonconventional materials and processes that have the potential to accelerate the construction process, improve the durability of highway pavement and bridges, and enhance the serviceability and longevity of new construction under adverse conditions.

Sustainable Utilization of Carbon Dioxide in Waste Management

Sustainable Utilization of Carbon Dioxide in Waste Management
Author: Abdel-Mohsen O. Mohamed
Publisher: Elsevier
Total Pages: 608
Release: 2022-11-25
Genre: Science
ISBN: 012823606X

Sustainable Utilization of Carbon Dioxide in Waste Management addresses all aspects of sustainable use of carbon dioxide in waste management processes and provides best practices and process improvements for carbon sequestration in the management of a variety of waste types, including carbide lime waste, construction waste, and reject brine effluents, amongst others. The book also provides underlying research on the environmental impacts of these wastes and the need for carbon capture to emphasize the importance and need for improvements of these processes. Overall, this information will be key to determining lifecycle benefits of CO2 for each newly improved waste process. This is an important source of information for environmental and sustainability scientists and engineers, as well as academics and researchers in the field who should be trying to achieve increased carbon capture in any form of waste process to reduce environmental impact. Introduces the basic principles of carbon sequestration by alkaline solid waste (cement kiln dust, steel slag, fly ash, and carbide lime wastes), detailing the lack of current sustainability Provides a comprehensive resource on carbon sequestration in a variety of waste processes and practical guidance on applying them to these processes Details the need for carbon capture in these processes and the environmental impacts of not doing so Outlines the methods for determining lifecycle benefits of CO2 for each newly developed product