| Literature DB >> 36234321 |
Olga Kolesnikova1, Samal Syrlybekkyzy2, Roman Fediuk3,4, Almas Yerzhanov5, Rashid Nadirov6,7, Akmaral Utelbayeva1, Aktolkyn Agabekova8, Marina Latypova5, Larissa Chepelyan5, Irina Volokitina9, Nikolai Ivanovich Vatin4, Alexandr Kolesnikov1, Mugahed Amran10,11.
Abstract
During mining, only 4-8% is converted to final products, and the rest is accumulated in landfills. There is a lack of research on the study of various patterns and mechanisms of the formation of cement clinker minerals during the simultaneous distillation of zinc. This paper presents studies of thermodynamic stimulation of environmental and population protection by utilization of technogenic enrichment waste as secondary raw materials for clinker production and zinc extraction. In particular, a comparison of the Gibbs energy (ΔG) of clinker formation under standard chemical equations and under non-standard chemical equations is given. According to the results of the study, using thermodynamic simulation, the temperature intervals of mineral formation, the dependence of the Gibbs energy on temperature (ΔGT°), and the approximation equations were found; it was established that the presence of zinc ferrite contributes to the intensification of the formation of clinker minerals and the extraction of Zn to gas.Entities:
Keywords: cement clinker minerals; environmental and population protection; raw materials; recycling; thermodynamics simulation; waste; zinc ferrite; zinc sublimations
Year: 2022 PMID: 36234321 PMCID: PMC9573172 DOI: 10.3390/ma15196980
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.748
Figure 1A photo from space of a general view of the Balkhash tailings dump (1), an enrichment plant (2) and the city of Balkhash (3).
Gibbs energy dependence on temperature.
| T, °C | Reaction Gibbs Energy, G, kJ | |||
|---|---|---|---|---|
| 2CaCO3 + SiO2 → | 3CaCO3 + SiO2 → | 3CaCO3 + Al2O3 → | 4CaCO3 + Al2O3 + Fe2O3 → | |
| 600 | −571.2 | −518.7 | −1012.8 | 579.1 |
| 700 | −650.2 | −612.9 | −1114 | 466.4 |
| 800 | −731.2 | −709 | −1217.2 | 353.3 |
| 900 | −825 | −817.7 | −1322.4 | 239.7 |
| 1000 | −910.7 | −918.1 | −1429.5 | 125.9 |
| 1100 | −998.2 | −1020.1 | −1538.2 | 11.8 |
| 1200 | −1073.6 | −1109.8 | −1648.7 | −102.5 |
| 1300 | −1163.4 | −1213.9 | −1760.7 | −216.9 |
| 1400 | −1254.8 | −1319.3 | −1874.1 | −331.6 |
| 1500 | −1347.8 | −1426.2 | −1989.1 | −446.4 |
| 1600 | −1442.3 | −1534.4 | −2096.2 | −523 |
Figure 2Temperature effect on the Gibbs energy of the unconventional reaction with zinc distillation and formation of Ca2SiO4, Ca3SiO5 (a), и Ca3Al2O6, and Ca4Al2Fe2O10 (b).