Autonomous material characterisation for precision mineral extraction

2021 ◽  
Author(s):  
◽  
Andrew Job
Geo-Risk 2017 ◽  
2017 ◽  
Author(s):  
Jeanne Major ◽  
Mark Vandeberg

2020 ◽  
Vol 26 (6) ◽  
pp. 1297-1314
Author(s):  
T.A. Loginova

Subject. This article discusses the issues related to the taxation for multi-component complex ores and commercial components using ad valorem and specific mineral extraction tax (MET) rates. Objectives. The article aims to assess some results of the application of specific MET rates in the Krasnoyarsk Krai and ad valorem rates in other subjects of the Russian Federation, taking into account the specifics of the current taxation procedure for multi-component complex ores and their commercial components. Methods. For the study, I used a comparative analysis, synthesis, and the method of extrapolation. Results. The article shows that the change in the type of MET rate for multi-component complex ores and commercial components has led to a significant increase in the effective tax rate. This led to an increase in the corresponding MET revenues in the Krasnoyarsk Krai. The article also substantiates that the introduction of specific rates in other Russian regions requires a significant differentiation of specific MET rates. However, this is risk-bearing concerning unfair distribution of the tax burden and the complexity of tax administration. Conclusions. The issue of identifying multi-component complex ores and their commercial components is controversial. Extending specific MET rates to other regions may complicate the mechanism of rent extraction.


2019 ◽  
Author(s):  
Paul Iacomi ◽  
Philip L. Llewellyn

Material characterisation through adsorption is a widely-used laboratory technique. The isotherms obtained through volumetric or gravimetric experiments impart insight through their features but can also be analysed to determine material characteristics such as specific surface area, pore size distribution, surface energetics, or used for predicting mixture adsorption. The pyGAPS (python General Adsorption Processing Suite) framework was developed to address the need for high-throughput processing of such adsorption data, independent of the origin, while also being capable of presenting individual results in a user-friendly manner. It contains many common characterisation methods such as: BET and Langmuir surface area, t and α plots, pore size distribution calculations (BJH, Dollimore-Heal, Horvath-Kawazoe, DFT/NLDFT kernel fitting), isosteric heat calculations, IAST calculations, isotherm modelling and more, as well as the ability to import and store data from Excel, CSV, JSON and sqlite databases. In this work, a description of the capabilities of pyGAPS is presented. The code is then be used in two case studies: a routine characterisation of a UiO-66(Zr) sample and in the processing of an adsorption dataset of a commercial carbon (Takeda 5A) for applications in gas separation.


2021 ◽  
pp. 1-13
Author(s):  
Simona Raneri ◽  
Dario Pancani ◽  
Anna De Falco ◽  
Nadia Montevecchi ◽  
Anna Gioncada

IEEE Access ◽  
2020 ◽  
Vol 8 ◽  
pp. 186138-186147
Author(s):  
Benedikt Friederich ◽  
Dilyan Damyanov ◽  
Jan C. Balzer ◽  
Thorsten Schultze

2016 ◽  
Vol 153 ◽  
pp. 914-927 ◽  
Author(s):  
Wei Tan ◽  
Brian G. Falzon ◽  
Mark Price ◽  
Haibao Liu

Minerals ◽  
2018 ◽  
Vol 8 (9) ◽  
pp. 378 ◽  
Author(s):  
Marcela Martínez ◽  
Yanett Leyton ◽  
Luis Cisternas ◽  
Carlos Riquelme

The environmental problems generated by waste from the mining industry in the mineral extraction for business purposes are known worldwide. The aim of this work is to evaluate the microalga Muriellopsis sp. as a potential remover of metallic ions such as copper (Cu2+), zinc (Zn2+) and iron (Fe2+), pollutants of acid mine drainage (AMD) type waters. For this, the removal of these ions was verified in artificial acid waters with high concentrations of the ions under examination. Furthermore, the removal was evaluated in waters obtained from areas contaminated by mining waste. The results showed that Muriellopsis sp. removed metals in waters with high concentrations after 4–12 h and showed tolerance to pH between 3 and 5. These results allow proposing this species as a potential bioremediator for areas contaminated by mining activity. In this work, some potential alternatives for application in damaged areas are proposed as a decontamination plan and future prevention.


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