Skip to content
Home/ Guide to Asset Management: What, Why, and How
Guide to Asset Management: What, Why, and How

Guide to Asset Management: What, Why, and How

No customer reviews yet ISBN 9781572784345

A Guide to Asset Management: What, Why, and How is a comprehensive guide to the thought process of asset management. Often people think of asset management as a technology-driven activity-- what can you do with a computer or with software-- rather than realizing that it is first and foremost a way of thinking. It is a strategic process that involves five main components: current state of the assets, level of service, criticality, life cycle costing, and long-term funding. The book describes each of these components, along with ancillary topics that are necessary to fully understand and implement asset management, including: - The Asset Management Plan - Getting Started - Measuring Progress - Assessing Triple Bottom Line Benefits - Tools and Resources Available This approach to asset management is applicable to all water assets: water, wastewater, and stormwater. It offers insights that will be useful to a range of audiences, including utilities, policy makers, and educators/students.

About the author

Product details

Pub dateAug 8, 2026
ISBN-101572784342
ISBN-139781572784345
LanguageEnglish
Last updated 2026-09-07 19:29
$69.60 $99.99 30% off
You save $30.39 · list price $99.99
In stock soon — order now to reserve your copy
Delivery by Monday, September 14, 2026
Qty
Sign in to Add to Saved list
Free delivery on orders over $35.
15-day returns. Any reason.
Secure checkout. We never store card details.

Readers who bought this also bought

More from Environmental - Waste Management
See all
Advanced Separation Techniques for Nuclear Fuel Reprocessing and Radioactive Waste Treatment
Advanced separations technology is key to closing the nuclear fuel cycle and relieving future generations from the burden of radioactive waste produced by the nuclear power industry. Nuclear fuel reprocessing techniques not only allow for recycling of useful fuel components for further power generation, but by also separating out the actinides, lanthanides and other fission products produced by the nuclear reaction, the residual radioactive waste can be minimised. Indeed, the future of the industry relies on the advancement of separation and transmutation technology to ensure environmental protection, criticality-safety and non-proliferation (i.e., security) of radioactive materials by reducing their long-term radiological hazard. <p/>Advanced separation techniques for nuclear fuel reprocessing and radioactive waste treatment provides a comprehensive and timely reference on nuclear fuel reprocessing and radioactive waste treatment. Part one covers the fundamental chemistry, engineering and safety of radioactive materials separations processes in the nuclear fuel cycle, including coverage of advanced aqueous separations engineering, as well as on-line monitoring for process control and safeguards technology. Part two critically reviews the development and application of separation and extraction processes for nuclear fuel reprocessing and radioactive waste treatment. The section includes discussions of advanced PUREX processes, the UREX+ concept, fission product separations, and combined systems for simultaneous radionuclide extraction. Part three details emerging and innovative treatment techniques, initially reviewing pyrochemical processes and engineering, highly selective compounds for solvent extraction, and developments in partitioning and transmutation processes that aim to close the nuclear fuel cycle. The book concludes with other advanced techniques such as solid phase extraction, supercritical fluid and ionic liquid extraction, and biological treatment processes. <p/>With its distinguished international team of contributors, Advanced separation techniques for nuclear fuel reprocessing and radioactive waste treatment is a standard reference for all nuclear waste management and nuclear safety professionals, radiochemists, academics and researchers in this field.
$312.15