Keywords: technology

Comparison of the effectiveness of rice husk ash for solid phase synthesis of wollastonite and diopside

https://doi.org/10.58224/2619-0575-2026-9-1-1
Abstract
Objectives: This study aims to evaluate the prospects of using rice husk ash for the production of calcium-magnesium silicates and to identify differences in the solid-phase synthesis processes of wollastonite and diopside based on rice husk ash.
Methods. X-ray quantitative phase analysis was used to analyse the obtained samples of synthetic wollastonite and diopside. The porosity of calcium-magnesium silicates was evaluated by a static volumetric method using low-temperature nitrogen adsorption. The elemental composition of the samples was determined using an Oxford INCA X-max 80 energy dispersive detector, and electron microscopic analysis was performed using a Jeol JSM7001F scanning microscope.
Results. Experimental data comparing the properties of synthesized diopside and wollastonite showed that wollastonite is characterized by high porosity and average particle size compared to diopside due to the lower temperature of solid-phase synthesis. The structure of synthetic wollastonite is distinguished by the presence of large irregularly shaped inclusions with a small amount of needle-like particles, while synthesized diopside does not contain needle-like particles, and the inclusions are characterized by smaller size and uniform distribution throughout the volume.
Conclusions. When obtaining calcium-magnesium silicates by solid-phase synthesis based on rice husk ash, the yield of the final product synthetic diopside is significantly higher than that of synthetic wollastonite. The process of synthesizing diopside is less labor-intensive and time-consuming, but more energy-intensive due to the higher synthesis temperature of diopside.
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ORGANIZATIONAL AND TECHNOLOGICAL FEATURES OF PRODUCTIONS WITH COMPLEX USE OF RAW MATERIALS

Abstract
The article reveals the technological features of the processing of multicomponent raw materials, using the example of a tungsten-molybdenum deposit, which influence the construction of a cost accounting system and the calculation of the cost of production in complex productions.
It was revealed that the mineralogical composition and concentration of useful components of non-ferrous metal ores, technical conditions predetermine the transition of non-industrial ores to industrial ones. The article discusses the mineralogical features of tungsten-molybdenum ore, affecting the technological schemes of its processing. Much attention is paid to the issues of enrichment of tungsten-molybdenum ore, which allows to improve the quality of the mined ores by the content of metals and harmful impurities in them.
Considering the qualitative scheme of enrichment, showing the direction of products and the sequence of operations used in the enrichment process, as well as qualitative changes in products, you can identify the objects of cost accounting for production and costing objects.
The study showed that the structure of the production process with the integrated use of raw materials determines the organization of cost accounting for the production and calculation of the cost of the processed products, the latter, in turn, affect the objectivity of the assessment of the economic efficiency of complex use of raw materials.
Analysis of the organization and technology of processing of tungsten-molybdenum ores at mining and processing plants allowed us to identify the characteristic features of production with the complex use of raw materials, which should be taken into account when providing information and analytical support to the management of enterprises with integrated production.
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