Introduction to Environmental Mineralogy 9787030732156 Anhua

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原出版社:科學
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書名:Introduction to Environmental Mineralogy
ISBN:9787030732156
出版社:科學
著編譯者:Anhuai Lu Yan Li Changqiu Wang
頁數:302
所在地:中國大陸 *此為代購商品
書號:1527832
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【台灣高等教育出版社簡體書】 Introduction to Environmental Mineralogy 787030732156 Anhuai Lu Yan Li Changqiu Wang

內容簡介

本書是國際上第一部專門論述礦物學環境屬性的專著,系統總結了作者團隊近20年來的研究成果(內容來源於國家973項目、國家自然科學基金項目),代表了國內礦物學環境屬性的研究水平。 本書系統論述了礦物記錄環境變化、礦物影響環境質量、礦物反映環境評價、礦物治理環境污染以及礦物參与生物作用五大礦物學環境屬性。特別是在礦物治理污染的環境屬性研究方面,提出無機界礦物天然自凈化功能,包括礦物表面效應、孔道效應、結構效應、離子交換效應、氧化還原效應、溶解效應、結晶效應、水合效應、熱效應、光催化效應、納米效應以及礦物與生物複合效應等,拓展了環境礦物材料基本性能的研究,並通過實例深入探討了這些凈化功能在天然礦物中的具體表現,提出繼物理法、化學法和生物法之後的環境污染防治第四類方法——礦物法。 本書可以向世界展示我國環境礦物學研究的巨大發展,擴大我國礦物學研究的國際影響力。

目錄

1 Environmental Property of Minerals
1 1 Research Category of Environmental Property of Minerals
1 1 1 Minerals Record Environmental Changes
1 1 2 Minerals Affect Environmental Quality
1 1 3 Minerals Reflect Environmental Evaluation
1 1 4 Minerals Control Environmental Pollution
1 1 5 Minerals Participate in Biological Function
1 2 Natural Self-purification Function of Inorganic Mineral
1 2 1 Surface Effect of Mineral
1 2 2 Channel Effect of Mineral
1 2 3 Structure Effect of Mineral
1 2 4 Ion Exchange Effect of Mineral
1 2 5 Redox Effect of Mineral
1 2 6 Precipitation/Dissolution Effect of Mineral
1 2 7 Crystallization Effect of Mineral
1 2 8 Hydration Effect of Mineral
1 2 9 Thermal Effect of Mineral
1 2 10 Photocatalytic Effect of Mineral
1 2 11 Nano Effect of Mineral
1 2 12 Composite Effect of Mineral and Organism
1 3 Environmental Effects of 1he Synergism Between Minerals and Microorganisms
1 3 1 Mineral Electron Energy Form
1 3 2 Mineral Photcelectrons Promote the Origin and Evolution of Life
1 3 3 Mineral Photoelectrons Promote the Crowth and Metabolism of Photoelectrophic Microorganisms
1 3 4 Microbial Photoelectrophic Nutrition Mode
References
2 Environmental Effects of Channel Structure Minerals
2 1 Octahedral Channel Effects of Cryptomelane
2 1 1 Channel Structure of Manganese Oxide
2 1 2 Channel Effect of Natural Cryptomelane
2 1 3 Remarks on the Reactivity of Nanomineral Aggregates
2 2 Channel Structure Effects of Potassium Feldspar Tetrahedron
2 2 1 Channel Structure Characteristics of Potassium Feldspar
2 2 2 Ion Exchange Effect of Potassium Feldspar Channels
2 3 Tubular-Texture Effects of the Chrysotile
2 3 1 Crystal Structure of the Chrysotile
2 3 2 The Active Group of Chrysotile
2 3 3 The Activity of Chrysotile
2 3 4 The Nanotube of Clinochrysotile
2 3 5 Nano-fibriform Silica from Natural Chrysotile
References
3 Photoaetivity of Mn Oxides on Earth's Surface
3 1 Nature Manganese Oxides
3 1 1 Vast Distribution of Mn Oxides on Modem Earth
3 1 2 Widespread Mn Coatings on Earth's Surface
3 1 3 Photoelectric Behavior of Mn (Oxyhydr)oxide
3 2 Electronic Structure of Natural Semiconducting Mn Oxides
3 2 1 Effect of Mn (or O) Vacancies
3 2 2 Effect of Metal Cations
3 3 Photocatalytic Self-reduction of Natural Mn Oxides
3 3 1 Photocatalytic Oxidation of Water by Mn4CaO
3 3 2 Pbotocatalytic Self-reduction of Natural Mn Oxides
3 4 Environmental Functions of Mn Oxides Controlled by Mn Redox Cycling
3 4 1 Reductive Dissolution of Mn Oxides Mediated by Organic Matter
3 4 2 Oxidative Formation of Mn Oxides and Heavy Metal Sorption
3 5 Concluding Remarks
References
4 Redox Activity of Iron Sulfide and Mn Oxide
4 1 Removal of Cr(VI) and Cr(III) from Aqueous Solution and Industrial Wastewater by Natural Pyrrhotite
4 1 1 Characteristics of Pyrrhotite and Wastewater
4 1 2 Effectiveness in Cr(VI) Removal
4 1 3 Solid Phases After Cr(VI) Removal
4 1 4 Process of Cr(VI) Removal
4 1 5 Potential Industrial Application
4 2 Reactivity of Mn Oxide Cryptomelane
4 2 1 Occurrence and Characterization of Cryptomelane
4 2 2 Oxidation of Phenols by Mn Oxide
References
5 Interaction Between Fe & Mn-Bearing Minerals and Microbes
5 1 Reduction of Goethite by Cronobacter sakazakii
5 1 1 Total Protein and Fe(II) Concentration Changes
5 1 2 Morphology of the Strain and Minerals
5 1 3 Coordination Structure and Fe Oxidation State of the Products
5 2 Reduction of Birnessite by a Novel Dietzia Strain
5 2 1 Anaerobic Reduction of Birnessite by 45-1 b
5 2 2 Aerobic Reduction of Birnessite by 45-1b
5 2 3 Effect of AQDS on Reduction of Birnessite
5 2 4 Mineral
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