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Titlebook: Batteries for Sustainability; Selected Entries fro Ralph J. Brodd Book 2013 Springer Science+Business Media New York 2013 Batter Components

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發(fā)表于 2025-3-21 16:22:07 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Batteries for Sustainability
期刊簡稱Selected Entries fro
影響因子2023Ralph J. Brodd
視頻videohttp://file.papertrans.cn/182/181457/181457.mp4
發(fā)行地址Provides an overview of electrochemical processes and devices.Features comprehensive coverage of battery types, materials, and applications.Assesses efficiency and pollution output for rechargeable an
圖書封面Titlebook: Batteries for Sustainability; Selected Entries fro Ralph J. Brodd Book 2013 Springer Science+Business Media New York 2013 Batter Components
影響因子Batteries that can store electricity from solar and wind generation farms are a key component of a sustainable energy strategy.?? Featuring 15 peer-reviewed entries from the Encyclopedia of Sustainability Science and Technology, this book presents a wide range of battery types and components, from nanocarbons for supercapacitors to lead acid battery systems and technology.?? Worldwide experts provides a snapshot-in-time of the state-of-the art in battery-related R&D, with a particular focus on rechargeable batteries.? Such batteries can store electrical energy generated by renewable energy sources such as solar, wind, and hydropower installations with high efficiency and release it on demand.? They are efficient, non-polluting, self-contained devices, and their components can be recovered and used to recreate battery systems.? .Coverage also highlights the significant efforts currently underway to adapt battery technology to power cars, trucks and buses in order to eliminate pollution from petroleum combustion.? Written for an audience of undergraduate and graduate students, researchers, and industry experts, Batteries for Sustainability is an invaluable one-stop reference to this
Pindex Book 2013
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Rechargeable Batteries, Separators for,f applications. The need to optimize battery materials to meet the increasing demand for energy as well as to extend the operating range continues to be a challenge – more so now than ever before. Correspondingly, the demand for novelty in separator membranes to match the newer battery chemistries a
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Lithium Ion Batteries, Electrochemical Reactions in,ing large-scale storage applications such as electric vehicles and enabling development of renewable intermittent energy sources, i.e., wind and solar. Paramount considerations in realizing scaled-up battery systems are safety, cost, energy density, and service lifetime. Some of these applications a
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Nanocarbons for Supercapacitors, higher power density than batteries. Actually, they are capable of delivering large amounts of energy in a very short time. These devices rely mainly on the characteristics of the electrical double layer that forms on all polarized conductors when immersed in an electrolyte. The double layer forms
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Nickel-Based Battery Systems,cles, aeronautics and aerospace and stationary energy storage among others. They operate over a wide temperature range, have a flat discharge curve and are available in sizes ranging from small coin cells to motive power batteries. Nickel batteries are physically and electrically rugged and abuse to
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