Operational Guide to Awwa Standard G200
Author | : |
Publisher | : American Water Works Association |
Total Pages | : 129 |
Release | : 2011-01-12 |
Genre | : Eau |
ISBN | : 1613000960 |
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Author | : |
Publisher | : American Water Works Association |
Total Pages | : 129 |
Release | : 2011-01-12 |
Genre | : Eau |
ISBN | : 1613000960 |
Author | : Kanwal Oberoi |
Publisher | : Amer Water Works Assn |
Total Pages | : 121 |
Release | : 2009 |
Genre | : Science |
ISBN | : 9781583217344 |
This guide is for the implementation of water distribution systems operation and management best practices, as set forth in ANSI/AWWA G200 Distribution Systems Operations and Management. The guide will help utility managers understand the new standards.
Author | : |
Publisher | : American Water Works Association |
Total Pages | : 153 |
Release | : 2011-01-12 |
Genre | : Groundwater |
ISBN | : 1613001150 |
Author | : Sarah C. Clark |
Publisher | : American Water Works Association |
Total Pages | : 131 |
Release | : 2011 |
Genre | : Business & Economics |
ISBN | : 158321853X |
Guidance for implementing effective operation and management of drinking water treatment plants, as defined by AWWA G100, including regulatory compliance requirements, operational practices, capitol asset management and maintenance, and water quality management. Includes practical examples, checklists, and questions
Author | : James F. Ginley |
Publisher | : American Water Works Association |
Total Pages | : 85 |
Release | : 2009 |
Genre | : Nature |
ISBN | : 1613000952 |
This guide is for the implementation of water utility management best practices, as set forth in ANSI/AWWA G400 Utility Management System (AWWA G400). The guide will help utility managers understand the new standards.
Author | : Kathy Martel |
Publisher | : American Water Works Association |
Total Pages | : 172 |
Release | : 2006 |
Genre | : Science |
ISBN | : 1583214828 |
OBJECTIVES: The purpose of this project was to evaluate the application of the Hazard Analysis Critical Control Point (HACCP) system, a risk management tool, to better protect water quality in distribution systems. BACKGROUND: HACCP was first conceived in 1959 by the Pillsbury Company to improve food safety for NASA & rsquo;s manned space missions. Since the 1980s, HACCP has been widely adopted by the food and beverage industry worldwide, where it forms an important part of their food safety plans. Since the mid-1990s, HACCP has been applied by a number of individual drinking water systems and has been incorporated into many drinking water regulatory requirements and guidelines around the globe. HIGHLIGHTS: Project pilot studies illustrated that HACCP can be applied to water distribution systems, but time and resource requirements were greater than anticipated. Project case studies showed that most utilities that achieved HACCP certification had first implemented ISO 9001 and ISO 14001 or similar systems to gain management control of people and processes. The case study utilities operated one integrated management system including the ISO systems as well as HACCP to avoid duplication of tasks, reduce staff time and costs, and improve process integration. All case study utilities believed that, overall, the benefits of the HACCP system outweighed the costs.
Author | : American Water Works Association |
Publisher | : |
Total Pages | : 238 |
Release | : 2006 |
Genre | : Business & Economics |
ISBN | : |
This book presents a collection of Standards most relevant to small systems: (A100-97 Water Wells, B300-04 Hypochlorites, C651-05 Disinfecting Water Mains, C652-02 Disinfection of Water-Storage facilities, and G200-04 Distribution Systems Operation Management). The book provides the small systems with a convenient reference for the Standards most often used.
Author | : National Research Council |
Publisher | : National Academies Press |
Total Pages | : 404 |
Release | : 2006-12-22 |
Genre | : Science |
ISBN | : 0309133955 |
Protecting and maintaining water distributions systems is crucial to ensuring high quality drinking water. Distribution systems-consisting of pipes, pumps, valves, storage tanks, reservoirs, meters, fittings, and other hydraulic appurtenances-carry drinking water from a centralized treatment plant or well supplies to consumers' taps. Spanning almost 1 million miles in the United States, distribution systems represent the vast majority of physical infrastructure for water supplies, and thus constitute the primary management challenge from both an operational and public health standpoint. Recent data on waterborne disease outbreaks suggest that distribution systems remain a source of contamination that has yet to be fully addressed. This report evaluates approaches for risk characterization and recent data, and it identifies a variety of strategies that could be considered to reduce the risks posed by water-quality deteriorating events in distribution systems. Particular attention is given to backflow events via cross connections, the potential for contamination of the distribution system during construction and repair activities, maintenance of storage facilities, and the role of premise plumbing in public health risk. The report also identifies advances in detection, monitoring and modeling, analytical methods, and research and development opportunities that will enable the water supply industry to further reduce risks associated with drinking water distribution systems.
Author | : Water Resources Center Archives (Calif.) |
Publisher | : |
Total Pages | : 660 |
Release | : 1970 |
Genre | : Library catalogs |
ISBN | : |