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Self-Assessment for Wastewater Treatment Plant Optimization

Self-Assessment for Wastewater Treatment Plant Optimization
Author: Barbara Stricos Martin
Publisher:
Total Pages: 334
Release: 2017
Genre: Business & Economics
ISBN: 9781625761903

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Self-Assessment for Wastewater Treatment Plant Optimization outlines the Partnership for Clean Water approach to properly evaluate treatment plant performance and implement actions that improve operations, energy efficiency and effluent quality.


Self-Assessment for Distribution System Optimization

Self-Assessment for Distribution System Optimization
Author: Barbara Stricos Martin
Publisher:
Total Pages: 350
Release: 2018
Genre: Technology & Engineering
ISBN: 9781625762511

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Self-Assessment for Distribution System Optimization outlines the Partnership for Safe Water approach to water treatment plant optimization that has been successfully applied in hundreds of facilities for more than 20 years.


Assessment of Treatment Plant Performance and Water Quality Data: A Guide for Students, Researchers and Practitioners

Assessment of Treatment Plant Performance and Water Quality Data: A Guide for Students, Researchers and Practitioners
Author: Marcos von Sperling
Publisher: IWA Publishing
Total Pages: 668
Release: 2020-01-15
Genre: Science
ISBN: 1780409311

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This book presents the basic principles for evaluating water quality and treatment plant performance in a clear, innovative and didactic way, using a combined approach that involves the interpretation of monitoring data associated with (i) the basic processes that take place in water bodies and in water and wastewater treatment plants and (ii) data management and statistical calculations to allow a deep interpretation of the data. This book is problem-oriented and works from practice to theory, covering most of the information you will need, such as (a) obtaining flow data and working with the concept of loading, (b) organizing sampling programmes and measurements, (c) connecting laboratory analysis to data management, (e) using numerical and graphical methods for describing monitoring data (descriptive statistics), (f) understanding and reporting removal efficiencies, (g) recognizing symmetry and asymmetry in monitoring data (normal and log-normal distributions), (h) evaluating compliance with targets and regulatory standards for effluents and water bodies, (i) making comparisons with the monitoring data (tests of hypothesis), (j) understanding the relationship between monitoring variables (correlation and regression analysis), (k) making water and mass balances, (l) understanding the different loading rates applied to treatment units, (m) learning the principles of reaction kinetics and reactor hydraulics and (n) performing calibration and verification of models. The major concepts are illustrated by 92 fully worked-out examples, which are supported by 75 freely-downloadable Excel spreadsheets. Each chapter concludes with a checklist for your report. If you are a student, researcher or practitioner planning to use or already using treatment plant and water quality monitoring data, then this book is for you! 75 Excel spreadsheets are available to download.


Development of an Integrated Approach for Wastewater Treatment Plant Optimization Based on Dynamic Modelling and Environmental Assessment

Development of an Integrated Approach for Wastewater Treatment Plant Optimization Based on Dynamic Modelling and Environmental Assessment
Author: Ana barbara Bisinella de faria
Publisher:
Total Pages: 300
Release: 2016
Genre:
ISBN:

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Wastewater treatment plants are moving towards energy and nutrients recovery facilities. Simultaneously, they are submitted to stricter regulation with respect to environment and human health. Facing the great challenge of reducing operational costs along with the reduction of environmental impacts and the guaranty of plants robustness, tools might be developed in order to provide an integrated assessment. The goal of this work is to develop a reliable and predictive framework containing rigorous dynamic wide-plant modelling, extended boundaries life cycle assessment for scenarios evaluation and an efficient multi-objective optimization tool. The developed framework for environmental evaluation coupled to dynamic modelling was initially applied to several case studies including urine source separation, enhanced primary clarification and urine treatment by nitritation/ anaerobic ammonium oxidation, offering both performance results and environmental hotspots. Given the important benefits of the urine source separation provided by the previous results, a flexible and dynamic phenomenological influent generator was adapted in order to provide realistic dynamic data concerning urine and wastewater streams in different urine retention scenarios. Finally, as the complex combination of biological, chemical and physical processes leads to a computational expensive problem, a feasibility study (computational time and reliability) on the multi-objective optimization was conducted. Obtaining a set of solutions that avoids any prior discrimination among costs, environment and performance allowed thus the discussion of the involved trade-offs. Finally, the complete framework was applied to several case studies lightening on operational aspects of more sustainable options on wastewater management and treatment.