Immersed Membrane Filtration Imf For High Quality Drinking Water Production
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Author | : Z. Ujang (ed.) |
Publisher | : IWA Publishing (International Water Assoc) |
Total Pages | : 364 |
Release | : 2002 |
Genre | : Business & Economics |
ISBN | : |
Selected Proceedings of the IWA International Conference, held in Kuala Lumpur, Malaysia, 29-31 October 2001. The IWA Conference on Water and Wastewater Management for Developing Countries was the first conference specially organized for developing countries after the merger between the International Association on Water Quality (IAWQ) and the International Water Services Association (IWSA). Its aim was to promote the concept of appropriate technologies for water and wastewater management, and to enhance linkages between institutions, practitioners and research groups working on low-cost treatment and waste recycling systems, and promote collaborative R&D. The outcome was a highly successful and well attended conference, with more than 300 participants from 21 countries. From this large and high quality programme (there were over 130 oral presentations), 42 articles have been selected after peer review. They cover the three major subject areas of the conference: operation and management; water supply and treatment; and wastewater technology. These proceedings thus contain not only the important details on the outcomes of the conference, but also demonstrate the significant advances being made in research and development on water and wastewater management in developing countries by researchers and practitioners, from developing and developed countries alike.
Author | : Zaini Ujang |
Publisher | : IWA Publishing |
Total Pages | : 392 |
Release | : 2004-08-31 |
Genre | : Science |
ISBN | : 9781843395034 |
The IWA Conference on Environmental Biotechnology: Advancement in Water and Wastewater Application in the Tropics, held in Kuala Lumpur, Malaysia on 9-10 December 2003, was a peer-reviewed conference. It was specially organized for Malaysia and the Asia-Pacific region in collaboration between Universiti Teknologi Malaysia (UTM), the International Water Association (IWA), the Malaysia Water Association and the Malaysian Biotechnology Directorate. Papers presented in the conference covered current perspectives on the advancement of water and wastewater applications using environmental biotechnology, as well as methodologies, techniques, modelling, case studies, directions and other specific issues. The emphasis was also on its feasibility in developing countries. The conference also focussed on the biodegradation and bioconversion, health related microorganisms, microbial community structure and analysis, sludge reduction and material recovery, drinking water treatment and safety, nutrient removal and recovery, sensors, modelling and control, molecular techniques, integrated treatment concepts and biological nutrient removal for developing countries, particularly in the tropical region. Stock for this WEMS edition was damaged in transit to the IWA Publishing warehouse. A discount has therefore been applied to this title.
Author | : Mustafa Ersoz |
Publisher | : IWA Publishing |
Total Pages | : 120 |
Release | : 2012-05-31 |
Genre | : Science |
ISBN | : 1843393840 |
Part of Metals and Related Substances in Drinking Water Set - buy all five books together to save over 30%! The EU Drinking Water Directive sets a range of standards for metals and related substances in drinking water, many of which are concerned with health protection. A number of these standards are very stringent and require compliance to be assessed at the point of use. Because of the difficulties associated with monitoring, historic practices in many countries have concentrated on the quality of water within the distribution network. As a result, the magnitude of problems with some metals and related substances in drinking water is not fully appreciated in all European countries, and the extent and nature of corrective actions differ widely. This Best Practice Guide on Metals Removal From Drinking Water By Treatment describes drinking water standards and regulations, and explains the impact of a range of water treatment processes on metal levels in drinking water. Its objectives are to provide a basis for assessing the extent of problems and to identify appropriate water treatment options. The Guide provides a reasoned guide to selection of key water treatment processes. Each chapter focuses on a specific water treatment process and has been written by experts in that particular process. Best Practice Guide on Metals Removal From Drinking Water By Treatment provides practice-based knowledge for water engineers and scientists in large and small water utilities, regulatory agencies, health agencies and local municipalities (from cities through to small rural communities). It also supports university level teaching in degree schemes that relate to water management. This Guide is one of a series produced by the International Water Association’s Specialist Group on Metals and Related Substances in Drinking Water. The series is an up-to-date compilation of a range of scientific, engineering, regulatory and operational issues concerned with the control and removal of metals from drinking water.
Author | : David J. Hiltebrand |
Publisher | : |
Total Pages | : 672 |
Release | : 1991 |
Genre | : Law |
ISBN | : |
This manual suggests design operating and performance criteria for specific surface water quality conditions to provide the optimum protection from microbiological contaminants.
Author | : |
Publisher | : |
Total Pages | : 1812 |
Release | : 2003 |
Genre | : Medicine |
ISBN | : |
Vols. for 1963- include as pt. 2 of the Jan. issue: Medical subject headings.
Author | : Rolf Gimbel |
Publisher | : IWA Publishing |
Total Pages | : 580 |
Release | : 2006-03-31 |
Genre | : Science |
ISBN | : 1843391201 |
Slow sand filtration is typically cited as being the first "engineered" process in drinking-water treatment. Proven modifications to the conventional slow sand filtration process, the awareness of induced biological activity in riverbank filtration systems, and the growth of oxidant-induced biological removals in more rapid-rate filters (e.g. biological activated carbon) demonstrate the renaissance of biofiltration as a treatment process that remains viable for both small, rural communities and major cities. Biofiltration is expected to become even more common in the future as efforts intensify to decrease the presence of disease-causing microorganisms and disinfection by-products in drinking water, to minimize microbial regrowth potential in distribution systems, and where operator skill levels are emphasized. Recent Progress in Slow Sand and Alternative Biofiltration Processes provides a state-of-the-art assessment on a variety of biofiltration systems from studies conducted around the world. The authors collectively represent a perspective from 23 countries and include academics, biofiltration system users, designers, and manufacturers. It provides an up-to-date perspective on the physical, chemical, biological, and operational factors affecting the performance of slow sand filtration (SSF), riverbank filtration (RBF), soil-aquifer treatment (SAT), and biological activated carbon (BAC) processes. The main themes are: comparable overviews of biofiltration systems; slow sand filtration process behavior, treatment performance and process developments; and alternative biofiltration process behaviors, treatment performances, and process developments.
Author | : A.J. Burggraaf |
Publisher | : Elsevier |
Total Pages | : 709 |
Release | : 1996-11-19 |
Genre | : Technology & Engineering |
ISBN | : 0080534708 |
Inorganic membrane science and technology is a new field of membrane separation technology which until recently was dominated by the earlier field of polymer membranes. Currently the subject is undergoing rapid development and innovation.The present book describes the fundamental principles of both synthesis of inorganic membranes and membrane supports and also the associated phenomena of transport and separation in a semi-quantitative form.Features of this book:- Examples are given which illustrate the state-of-the-art in the synthesis of membranes with controlled properties- Future possibilities and limitations are discussed- The reader is provided with references to more extended treatments in the literature- Potential areas for future innovation are indicated.By combining aspects of both the science and technology of inorganic membranes this book serves as a useful source of information for scientists and engineers working in this field. It also provides some observations of important investigators who have contributed to the development of this subject.
Author | : Reyes Mallada |
Publisher | : Elsevier |
Total Pages | : 477 |
Release | : 2008-05-01 |
Genre | : Technology & Engineering |
ISBN | : 0080558003 |
Approx.480 pagesApprox.480 pages
Author | : Richard W. Baker |
Publisher | : John Wiley & Sons |
Total Pages | : 556 |
Release | : 2004-05-31 |
Genre | : Science |
ISBN | : 9780470854457 |
Table of Contents Preface Acknowledgments for the first edition Acknowledgments for the second edition 1 Overview of Membrane Science and Technology 1 2 Membrane Transport Theory 15 3 Membranes and Modules 89 4 Concentration Polarization 161 5 Reverse Osmosis 191 6 Ultrafiltration 237 7 Microfiltration 275 8 Gas Separation 301 9 Pervaporation 355 10 Ion Exchange Membrane Processes - Electrodialysis 393 11 Carrier Facilitated Transport 425 12 Medical Applications of Membranes 465 13 Other Membrane Processes 491 Appendix 523 Index 535.
Author | : Stephane Hallegatte |
Publisher | : World Bank Publications |
Total Pages | : 316 |
Release | : 2019-07-16 |
Genre | : Business & Economics |
ISBN | : 1464814317 |
Infrastructure—electricity, telecommunications, roads, water, and sanitation—are central to people’s lives. Without it, they cannot make a living, stay healthy, and maintain a good quality of life. Access to basic infrastructure is also a key driver of economic development. This report lays out a framework for understanding infrastructure resilience - the ability of infrastructure systems to function and meet users’ needs during and after a natural hazard. It focuses on four infrastructure systems that are essential to economic activity and people’s well-being: power systems, including the generation, transmission, and distribution of electricity; water and sanitation—especially water utilities; transport systems—multiple modes such as road, rail, waterway, and airports, and multiple scales, including urban transit and rural access; and telecommunications, including telephone and Internet connections.