Biodeterioration of Concrete Sewer Pipes

Biodeterioration of Concrete Sewer Pipes
Author: Emilie Hudon
Publisher:
Total Pages:
Release: 2015
Genre:
ISBN:

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"Durability of buried infrastructure is often "out-of-sight and out-of-mind". In Canada alone, according to a Federation of Canadian Municipality study from 2007, upgrading and building new water infrastructure to an acceptable level of service requires an expenditure of more than $40 billion. Unlike different types of degradation due to local soil contaminants, construction materials, or weather conditions, biodeterioration in sewage transportation and treatment systems is generally faced by all municipalities worldwide. Biodeterioration of concrete sewers occurs when microorganisms living in biofilm formation on unsubmerged sections of concrete excrete sulfuric acid, which is deleterious to the concrete because it contains acidity (H+ ions) and sulfates. This research program combines different areas of civil and environmental engineering by integrating important biological and chemical concepts. More specifically, the research program proposes two analytical models applicable to predicting reactions occurring during biodeterioration of concrete sewers. First, a new modeling approach for pH changes is proposed. In this new proposed pH approach, pH changes are calculated in each process definition by the stoichiometric coefficient (-[Delta]H+/[beta]), where [Delta]H+ is the production or consumption of protons and [beta] is the buffering capacity. The method also includes the effects of the ionic strength. The method can predict pH changes due to the input or biological production of acids and bases, or equilibrium with gases and minerals. It is found to be simpler than the existing methods, while maintaining the same level of accuracy. The approach was then applied to reactions where pH changes kinetically. Two reactions occurring during the biodeterioration of concrete sewers were studied: the continuous production of sulfuric acid by sulfur-oxidizing biomass (decrease in pH), and dissolution of hydrated cement paste (increase in pH). In batch-reactors, the dissolution of hydrated cement paste was modeled by a surface reaction where calcium hydroxide dissolves preferentially. The decrease in pH due to the production of sulfuric acid from thiosulfate could be accurately modeled by a disproportionation reaction where the biomass stores part of the thiosulfate as sulfur granules and oxidizes the rest as sulfates and protons. The same reactions occurring in biofilm formation were also studied to represent the sewer conditions more closely. While the deleterious effects of sulfuric acid to hydrated cement paste and concrete are well known, the impact of the w/c ratio on the extent of degradation is not as clear. To help alleviate this situation, the dissolution kinetics of calcium from hydrated cement paste in acidic solution was parameterized. Sample characteristics (w/c ratio and carbonation) were tested but were not found to have a statistically significant impact on the dissolution parameters. However, acid type and concentration were found to significantly affect the same parameters. The parameterization was applied to predict the mass loss of concrete discs subjected to sulfuric acid and different brushing regimes. Brushing of the concrete surface creates shearing forces representing the effect of sewerage flow at the water line in sewers. These forces were found to cause a significant increase in deterioration. The part of mass loss due to diffusion was determined from the previous calcium solubilisation experiment on hydrated cement paste prism. Overall, this thesis offers a multi-disciplinary review of the biodeterioration of concrete sewers, proposes a new modeling approach to pH changes in process models, and develops some insights on the impact of acidic solutions on hydrated cement paste and concrete durability. Further research on this topic should focus on validating the buffering capacity approach to existing wastewater and biosolides treatment models, and modeling the interactions between concrete and biofilms." --

Biodeterioration of Concrete

Biodeterioration of Concrete
Author: Thomas Dyer
Publisher: CRC Press
Total Pages: 298
Release: 2017-07-12
Genre: Science
ISBN: 1498709230

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Awareness of the importance of ensuring durability of concrete has been a growing concern of engineers, and there is now considerable understanding of the mechanisms, which cause its deterioration, and means of limiting such damage through the use of appropriate materials and approaches to design. Many of the deterioration mechanisms, which affect concrete, are the result of interaction with the non-living environment – chlorides in seawater, carbon dioxide in the atmosphere, cyclic freezing and thawing. However, living organisms can also cause damage – through both chemical and physical processes - which under the right conditions, can be severe. This book looks at all forms of concrete biodeterioration together for the first time. It examines, from a fundamental starting point, biodeterioration mechanisms, as well as the conditions which allow living organisms (bacteria, fungi, plants and a range of marine organisms) to colonise concrete. A detailed evaluation of chemical compounds produced by living organisms with respect to their interaction with the mineral constituents of concrete, and the implications it has for the integrity of structures, is also included. Approaches to avoiding biodeterioration of concrete are also covered, including selection of materials, mix proportioning, design, and use of protective systems.

Biodegradation and Biodeterioration at the Nanoscale

Biodegradation and Biodeterioration at the Nanoscale
Author: Hafiz M. N. Iqbal
Publisher: Elsevier
Total Pages: 751
Release: 2021-10-08
Genre: Technology & Engineering
ISBN: 0128241799

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Biodegradation and Biodeterioration at the Nanoscale describes the biodegradation and biodeterioration of materials in the presence of nanomaterials. The book's chapters focus on the basic principles, action mechanisms and promising applications of advanced nanomaterials, along with their integration with biotechnological processes for controlled degradation and deterioration of materials. In addition, the current research indications, positive or negative environmental impacts, legislation and future directions are also discussed. This book is an important reference source for researchers, engineers and scientists working in environmental remediation, biotechnology, materials science, corrosion and nanotechnology. Provides detailed coverage on how nano-biomaterials degrade and deteriorate Compares how different types of bionanomaterials decompose Explains how the priorities of bionanomaterials affect their deterioration rate

Handbook of Material Biodegradation, Biodeterioration, and Biostablization

Handbook of Material Biodegradation, Biodeterioration, and Biostablization
Author: Michalina Falkiewicz-Dulik
Publisher: Elsevier
Total Pages: 475
Release: 2015-04-28
Genre: Technology & Engineering
ISBN: 1927885027

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Handbook of Material Biodegradation, Biodeterioration, and Biostabilization, Second Edition gives extensive information on the microorganisms involved in the biodegradation of materials, along with the biocides which are permitted for use according to the most up-to-date worldwide legislation. Mechanisms of biodegradation and biodeterioration, results of biodeterioration, and methods of biostabilization are covered for a large number of products, making the title relevant for a range of industries and applications, including construction, coatings/paints, medical and pharmaceutical applications, and electronics. In addition, the health and safety aspects of biocide application are covered in detail, as well as the personal protection of practitioners who are required to use them. The contents and the most-up-to-date information make this book essential for almost all the fields of applied chemistry. Enables practitioners to identify the organisms responsible for biodeterioration in materials, select suitable preventative measures, and safely deploy methods of biostabilization Contains information on the biostabilization of various industrial products, including 24 groups of polymers Includes critical (and current) health and safety, environmental, and regulatory guidelines and best practices, and their relationships to legislation, regulation, toxicity, micro-organisms, biocides, and polymers Essential reading for scientists and practitioners as new regulations eliminate the use of previously used materials Contains up-to-date information on legislation and regulations governing the use of biocides in the European Union, the United States, and worldwide

Biodeterioration of Concrete

Biodeterioration of Concrete
Author: Thomas Dyer
Publisher: CRC Press
Total Pages: 235
Release: 2017-07-12
Genre: Science
ISBN: 1351645862

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Awareness of the importance of ensuring durability of concrete has been a growing concern of engineers, and there is now considerable understanding of the mechanisms, which cause its deterioration, and means of limiting such damage through the use of appropriate materials and approaches to design. Many of the deterioration mechanisms, which affect concrete, are the result of interaction with the non-living environment – chlorides in seawater, carbon dioxide in the atmosphere, cyclic freezing and thawing. However, living organisms can also cause damage – through both chemical and physical processes - which under the right conditions, can be severe. This book looks at all forms of concrete biodeterioration together for the first time. It examines, from a fundamental starting point, biodeterioration mechanisms, as well as the conditions which allow living organisms (bacteria, fungi, plants and a range of marine organisms) to colonise concrete. A detailed evaluation of chemical compounds produced by living organisms with respect to their interaction with the mineral constituents of concrete, and the implications it has for the integrity of structures, is also included. Approaches to avoiding biodeterioration of concrete are also covered, including selection of materials, mix proportioning, design, and use of protective systems.

Understanding Biocorrosion

Understanding Biocorrosion
Author: T Liengen
Publisher: Elsevier
Total Pages: 447
Release: 2014-11-14
Genre: Technology & Engineering
ISBN: 1782421254

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Biocorrosion refers to corrosion influenced by bacteria adhering to surfaces in biofilms. Biocorrosion is a major problem in areas such as cooling systems and marine structures where biofilms can develop. This book summarises key recent research in this subject. Part one looks at theories of biocorrosion and measurement techniques. Part two discusses how bacteria and biofilms result in biocorrosion. The final part of the book includes case studies of biocorrosion in areas as diverse as buildings, fuels, marine environments and cooling systems. Provides a detailed overview of biocorrosion and the different scientific and/or industrial problems related to microbially induced corrosion Introduces a variety of investigative techniques and methodologies that are employed in diagnosing and evaluating microbially induced corrosion Includes case studies on: biodeterioration of building materials; biocorrosion issues associated with diesel and biofuels; marine biocorrosion; corrosion of open recirculating cooling water systems and cooling system components; the effect of H2S on steel corrosion

Probabilistic Performance Assessment of Deteriorating Buried Concrete Sewer Pipes

Probabilistic Performance Assessment of Deteriorating Buried Concrete Sewer Pipes
Author: Soroush Zamanian
Publisher:
Total Pages: 108
Release: 2016
Genre:
ISBN:

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Deterioration in wastewater infrastructure systems is recognized as a serious, worldwide concern. Deterioration due to sulfate attack is one of the primary reasons of functional and structural failures in concrete sewer pipes which is a significant component in wastewater infrastructure systems. Any type of failure may lead to serious health, environmental, and economical issues, lack of the wastewater services, incidents, and traffic delays. The deterioration model presented by Environmental Protection Agency (EPA) is used to obtain the corrosion rate. Subsequently, a time-dependent model is utilized to determine the loss of wall thickness in concrete pipes. In this study, ANSYS is used to construct a nonlinear three-dimensional Finite Element model, which is capable of simulating the behavior of buried concrete sewer pipes under gravity and truck loads. Deterioration of concrete pipe is modeled in ANSYS in such a way that a continuous degradation of the system is considered during the service life of the pipes. A Monte Carlo-based reliability assessment method that uses Latin Hypercube Sampling technique is employed to capture the uncertainties associated with concrete and soil characteristics. The crack width which is the primary reason for leakage in the concrete pipes, is defined as the limit state function, and can be obtained from the tensile stresses on the pipe wall. Hence, the descending portion of stress-strain curve of concrete on the tension side is studied through post-processing of ANSYS results. The results indicate the significant impact of moderate deterioration on the performance and probability of failure of concrete sewer pipes for the serviceability level. In addition, elastic modulus of sidefill and bedding soil are found to have considerable effect on the stress distribution along the deteriorated concrete pipe.

Introduction to Biodeterioration

Introduction to Biodeterioration
Author: Dennis Allsopp
Publisher: Cambridge University Press
Total Pages: 260
Release: 2004-06-28
Genre: Science
ISBN: 9780521528870

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Concrete Durability

Concrete Durability
Author: Luis Emilio Rendon Diaz Miron
Publisher: Springer
Total Pages: 166
Release: 2017-04-27
Genre: Technology & Engineering
ISBN: 3319554638

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This book describes the newest developments in the creation of concrete using smart additives and supplementary cementitious materials as well as methods, technology and novel admixtures to monitor, evaluate and control steel corrosion in reinforced concrete. Industry experts and research specialists explain the structural, physical, and chemical properties of various types of concrete and its applications. They detail the characteristics preferred for manufacturing specific types of concrete. The book chapters also focus on the electrochemical state of the steel reinforcement in view of steel corrosion and corrosion control.

The Action of Sewer Gases and Acids on Cement and Concrete Pipes

The Action of Sewer Gases and Acids on Cement and Concrete Pipes
Author: International Clay Products Bureau, Kansas City, Mo
Publisher:
Total Pages: 132
Release: 1913
Genre: Pipe, Concrete
ISBN:

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The few observations here compiled check absolutely and it is perfectly clear that concrete sewers are destroyed not as much by the ready made acids which are poured into them from soap factories, tanneries, chemical works, printing offices, engraving plants, breweries, livery stables and the like, but by the acids which are made directly in them by the decomposition of the putrescent matters which they naturally contain. The process is very simple. By the action of decomposition and bacteria, the putrescing contents of the sewer generate large quantities of hydrogen Sulfide gas. In the presence of air and moisture this gas readily forms sulphuric acid. The damp walls of the sewer readily absorb this acid which soon becomes strong enough to attack the lime which forms a large portion of Portland Cement. [Ad for Vitrified salt-glazed Sanitary Sewer Pipe].