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Titlebook: Nanostructured Metal-Oxide Electrode Materials for Water Purification; Fabrication, Electro Onoyivwe Monday Ama,Suprakas Sinha Ray Book 202

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發(fā)表于 2025-3-21 19:43:26 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Nanostructured Metal-Oxide Electrode Materials for Water Purification
副標(biāo)題Fabrication, Electro
編輯Onoyivwe Monday Ama,Suprakas Sinha Ray
視頻videohttp://file.papertrans.cn/662/661027/661027.mp4
概述Showcases nanostructured metal oxide-based electrode materials as attractive solutions for water purification.Gives an interdisciplinary look at the topic through the lenses of electrochemistry, water
叢書名稱Engineering Materials
圖書封面Titlebook: Nanostructured Metal-Oxide Electrode Materials for Water Purification; Fabrication, Electro Onoyivwe Monday Ama,Suprakas Sinha Ray Book 202
描述.This book reports on the development of nanostructured metal-oxide-based electrode materials for use in water purification. The removal of organic pollutants and heavy metals from wastewater is a growing environmental and societal priority. This book thus focuses primarily?on new techniques to modify the nanostructural properties of various solvent-electrolyte combinations to address these issues. Water treatment is becoming more and more challenging due to the ever increasing complexity of the pollutants present, requiring alternative and complementary approaches toward the removal of toxic chemicals, heavy metals and micro-organisms, to name a few. This contributed volume cuts across the fields of electrochemistry, water science, materials science, and nanotechnology, while presenting up-to-date experimental results on the properties and synthesis of metal-oxide electrode materials, as well as their application to areas such as biosensing and photochemical removal of organicwastewater pollutants. Featuring an introductory chapter on electrochemical cells, this book is well positioned to acquaint interdisciplinary researchers to the field, while providing topical coverage of the
出版日期Book 2020
關(guān)鍵詞Photochemical Degradation; Photoactive Nanocomposite Electrodes; Nanostructured Metal Oxide Electrodes
版次1
doihttps://doi.org/10.1007/978-3-030-43346-8
isbn_softcover978-3-030-43348-2
isbn_ebook978-3-030-43346-8Series ISSN 1612-1317 Series E-ISSN 1868-1212
issn_series 1612-1317
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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Onoyivwe Monday Ama,Khotso Khoele,David Jacobus Delport,Suprakas Sinha Ray,Peter Ogbemudia Osifot must be emphasized that the role of internal pore pressure and liquefaction, as well as relative water content, makes it difficult under natural conditions to observe these class distinctions so clearly (Lowe, 1976; Lawson, 1979a). Although this chapter will review the slump processes, as well as
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Ikenna Chibuzor Emeji,Onoyivwe Monday Ama,Uyiosa Osagie Aigbe,Khotso Khoele,Peter Ogbemudia Osifo,Sud assumption that the natural sculpturing of gently-dipping and resistant sandstones is a relatively straightforward matter that holds few surprises. This assumption is strikingly illustrated in the selection of sandstone by Tricart and Cailleux (1972) as the ideally simple medium for demonstrating
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L. Mdlalose,V. Chauke,N. Nomadolo,P. Msomi,K. Setshedi,L. Chimuka,A. Chettyte with the deformations in the case of a panel with a reinforced core at its mid region and subjected to a uniform distributed load. The results are compared with a panel that has a core with uniform properties. One of the findings of this research is that a typical modern panel exhibits a limit po
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, are presented within the theoretical developments. To arrive at the post-buckling solution, the extended Galerkin method and Newton’s method are adopted. Finally, a number of kinematical and physical parameters are considered in regard to the load-carrying capacity of these sandwich panels. Severa
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