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Coordination Principle of Minerals Flotation

Autor Jianhua Chen
en Limba Engleză Paperback – 17 noi 2023
The advent of flotation, with selective interaction of reagents with minerals at its core, has greatly advanced the development of modern mining. Ever since, there has been continuous researched into the mechanism of mineral-reagent interactions, in an effort to design and develop more effective reagents. A unique perspective from coordination is presented to illustrate the principles of reagent molecules interacting with metal ions on mineral surface. For the first time, the influence is unveiled of mineral crystal structures and surrounding atoms on metal ion properties and further on mineral-reagent interactions. The introduction of classical theories for modern chemistry, including orbital structure, electron spin and orbital symmetry matching, into flotation is realized. Researchers, engineers and graduate students among others in the field of mineral processing may gain new insight into flotation and the development of novel reagents.

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Specificații

ISBN-13: 9789811927133
ISBN-10: 9811927138
Pagini: 224
Ilustrații: XIV, 224 p. 280 illus., 237 illus. in color.
Dimensiuni: 155 x 235 mm
Ediția:1st ed. 2022
Editura: Springer Nature Singapore
Colecția Springer
Locul publicării:Singapore, Singapore

Cuprins

An Introduction to Coordination Chemistry Theory.- Coordination Characteristics of Mineral Flotation Systems.- Spatial Geometry of Mineral Surface Coordination.- Coordination of Flotation Chemicals with Metal Ions on Mineral Surfaces.- Effect of CFSE on the Interaction of Reagents with Surface.- Orbital Interactions of Reagents Molecules with Mineral Surfaces.

Notă biografică

Jianhua Chen, a professor at Guangxi University in China, specializes in the theory of flotation including solid-state physics of mineral lattice, interface chemistry and quantum calculation based on density functional theory.


Textul de pe ultima copertă

The advent of flotation, with selective interaction of reagents with minerals at its core, has greatly advanced the development of modern mining. Ever since, there has been continuous researched into the mechanism of mineral-reagent interactions, in an effort to design and develop more effective reagents. A unique perspective from coordination is presented to illustrate the principles of reagent molecules interacting with metal ions on mineral surface. For the first time, the influence is unveiled of mineral crystal structures and surrounding atoms on metal ion properties and further on mineral-reagent interactions. The introduction of classical theories for modern chemistry, including orbital structure, electron spin and orbital symmetry matching, into flotation is realized. Researchers, engineers and graduate students among others in the field of mineral processing may gain new insight into flotation and the development of novel reagents.



Caracteristici

Presents a new view of coordination to examine mineral-reagent interactions in flotation Provides a theoretical basis for designing the spatial structure of high-efficiency flotation agents Proposes a theoretical model for the design of functional groups in flotation reagents