Advanced methods for the extraction of useful components from volcanic gases

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Technical progress is impossible without the creation of new devices, the quantitative and qualitative indicators of which radically differ from the known ones, which in turn requires new technologies and materials. In the creation of new materials, rare and rare-earth metals are increasingly used, the reserves of which are very limited. Therefore, the development and implementation of new methods of mining such metals are a timely and urgent task. Prospective methods of mining mineral deposits from volcanic gases are considered. The proposed model makes it possible to reveal the composition of volcanic gas, to experimentally prove its dynamic properties, to develop a model that allows one to trace the behavior of gas, on its basis to develop a principle scheme for extracting rare-earth elements (REE) and to present the hardware-technological scheme for obtaining REE from fumaroles (types of gas) in the form fumarolic metallurgical plant. On the basis of a model system with heavy metal solutions in a liquid, the possibility of studying the behavior of gas particles is shown. Such a model system is converted to volcanic gas and allows interpretation of the results for a fumarolic metallurgical unit (FMU) by determining the critical dimensions of the elements of such an installation (dome sizes, parameters of connecting hoses).

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Fumaroles, fumarolic metallurgical unit (fmu), dynamic light scattering, rare-earth elements, volcanic gas, raman anti-stokes scattering, ion-exchange resin

Короткий адрес: https://sciup.org/140230114

IDR: 140230114   |   DOI: 10.17073/2500-0632-2017-4-3-11

Статья научная