PROCESSING OF SECONDARY RAW MATERIALS FOR THE RECOVERY OF VALUABLE COMPONENTS

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Sknar Yu., Hrydnieva T., Sknar I., Butyrina T. Processing of Secondary Raw Materials for the Recovery of Valuable Components. Monograph. Primedia eLaunch, Boston, USA, 2026. 128 p.

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INTRODUCTION 8
1. ANALYTICAL REVIEW OF METHODS FOR OBTAINING SILICON (IV) OXIDE 9
1.1.Physicochemical properties of silicon(IV) oxide 9
1.1.1 Fields of application of silicon(IV) oxide 9
1.1.2 Types, modifications and properties of silicon(IV) oxide 10
1.1.3 Laboratory methods for obtaining silicon (IV) oxide 12
1.2 Industrial methods for obtaining silicon(IV) oxide 13
1.3 Methods for obtaining silicon (IV) oxide from various raw materials 16
1.3.1 Methods for obtaining silicon (IV) oxide from soluble silicates 16
1.3.2 Methods for obtaining silicon (IV) oxide from fluoride solutions 17
1.3.3 Methods of silicon (IV) oxide precipitation 18
1.3.4 Methods for obtaining silicon (IV) oxide from silicon tetrachloride… 19
1.4 Rice husk – raw material for silicon(IV) oxide production 20
2. CHARACTERISTICS OF RAW MATERIALS AND RESEARCH METHODS 25
2.1 Use of rice production waste to obtain silicon (IV) oxide 25
2.2. Physicochemical properties of rice husk and its components 27
2.3 Theoretical and experimental methods for studying the properties of raw materials and obtained silicon (IV) oxide powders 29
3. THERMODYNAMIC ANALYSIS OF THE PROCESS OF OBTAINING SILICA (IV) OXIDE FROM THE RICE HUSK 31
3.1 Calculation Method 32
3.2 Thermodynamic studies of the process of obtaining silicon (IV) oxide from the initial rice husk 37
3.2.1 Thermodynamic analysis of the process of obtaining silicon (IV) oxide by pyrolysis from the initial rice husk 37
3.2.2 Thermodynamic analysis of the process of obtaining silicon (IV) oxide from the initial rice husk in a water vapor environment 40
4. INCREASING THE CONTENT OF AMORPHOUS SILICON(IV) OXIDE IN SOLID RICE HUSK RESIDUE BY PHYSICO-CHEMICAL METHODS 51
4.1 Mechanism of the process of extracting a component of a solid particle by a liquid extractant 51
4.2 Research on the chemical preparation processes of rice husk 56
4.2.1 Lignin extraction process 58
4.2.2 Cellulose extraction process 68
4.2.3 Study of the cellulose extraction process after preliminary lignin removal (double treatment) 72
4.2.4 Assessment of the accuracy of the accepted hypothesis about the mechanism of the studied processes of extraction of carbon-containing compounds 74
5. THERMAL DECOMPOSITION OF SOLID RESIDUES FOLLOWING EXTRACTION FOR THE PREPARATION OF HIGH-PURITY SILICON (IV) OXIDE 82
5.1. Methodology for Determining the Kinetic Parameters of the Thermal Decomposition Process of Solid Residues after Extraction 82
5.2. Investigation of the Kinetics of the Thermal Decomposition of Solid Residues after Extraction for the Production of Silicon (IV) Oxide 86
5.2.1. Investigation of the Kinetics of the Thermal Decomposition of Solid Residues after Lignin Extraction 86
5.2.2 Study of the kinetics of the thermal decomposition process of solid residues after two-stage extraction to obtain silicon (IV) oxide 96
5.3 Study of thermal treatment processes of solid residues after extraction to obtain amorphous silicon (IV) oxide 104
5.3.1 Study of the chemical composition of rice husk and solid residues after extraction to obtain amorphous silicon (IV) oxide 104
5.3.2 Thermal treatment of solid residues after extraction to obtain amorphous silicon(IV) oxide 110
5.4. Investigation of the dispersion composition and basic properties of amorphous silicon (IV) oxide 114
CONCLUSIONS 120
REFERENCES 123