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1

Abdulhamidova, Hilola Sherzod qizi Eshkoraev Samariddin Sadriddin o'g'li Choriyeva Mahfuza Sadriddin qizi. "MINERAL RESOURCES." INTERNATIONAL BULLETIN OF ENGINEERING AND TECHNOLOGY 2, no. 9 (2022): 21–23. https://doi.org/10.5281/zenodo.7092038.

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Natural resources found in nature in the form of minerals are called mineral resources (resources). Currently, more than 200 types of mineral resources are used for economic needs. In practice, mineral resources contain almost all the elements in D. I. Mendeleev's periodic table of chemical elements, and they lie underground in the form of minerals. Man has been using available resources since time immemorial. With the passage of time, the type and volume of mineral resources used has increased.
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2

Zhai, Fu Rong, Zhan Xing Yang, and Yu Qi Pan. "Liaoning Province Molybdenum, Rare Earth and Mineral Resources Exploration Situation and Demand Forecasting." Advanced Materials Research 347-353 (October 2011): 804–7. http://dx.doi.org/10.4028/www.scientific.net/amr.347-353.804.

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The liaoning province is big province of mineral resources, although some energy and nonmetallic minerals resource reserves have among the top, but the rare earth provide strategic significance of mineral resources is the shortage, and molybdenum resources reserves to reduce year by year. This article through the objective analysis of molybdenum in liaoning province, the rare earth mineral resources exploration, status quo and the existing main problems of rare earth mineral resources, the province of molybdenum and long-term forecast the recent demand, in the province of mineral resources pla
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3

Xiang, Yujing, Qinli Zhang, Daolin Wang, and Shihai Wu. "Mining Investment Risk Assessment for Nations along the Belt and Road Initiative." Land 11, no. 8 (2022): 1287. http://dx.doi.org/10.3390/land11081287.

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As the Belt and Road Initiative (BRI) continues to advance, the proportion of China’s investment in mineral resources has increased yearly. However, the current research on mineral resources investment risk mainly focuses on specific resources or combinations of minerals. There is still a lack of risk assessment research regarding mineral resources as a whole, which leads to the lack of appropriate methods for decision makers to consider the overall investment risk. This research establishes a six-dimension (6-D) investment evaluation indicator system to comprehensively assess the mineral reso
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4

Adhikari, Krishna Gopal. "Mineral Resources and Economic Development Of Nepal." शोधसुधा Shodh Sudha 2, no. 2 (2024): 138–47. http://dx.doi.org/10.3126/ss.v2i2.69316.

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Mineral resource is the mineral deposit consisting of useful concentration that may or may not exceed economic cost for obtaining the valuable minerals. The information was collected through Secondary data. The data collected from different sources have been analyzed on the basis of these classification using both analytical and descriptive methods. The technological process, the needs of the economy and prices in the market, depends on whether and when the rock/mineral becomes raw material. The study aims to explore Mineral resources is important for economic development of Nepal. Mineral Res
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5

Liu, Yi Zheng, and Bing Zhang. "The Study on Mineral Resources Crisis and Industrial Economic Development Based on Information Technology." Applied Mechanics and Materials 644-650 (September 2014): 5868–71. http://dx.doi.org/10.4028/www.scientific.net/amm.644-650.5868.

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Mineral resources are the material basis of national economic construction and people's living standards, In China more than 80% of the energy and industrial raw materials from the mineral resources, and its total ranked third in the world, while the per capita amount is less than half the world average, and is very resource scarce countries. Its reserves of mineral resources are limited, supply is limited, is a non-renewable resource. With the continuous development and utilization constantly dropped, it has exhaustible. Under certain technical conditions, continued exploitation of resources
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6

Yang, Bo, Li Yang, Yong-Gang Zhao, et al. "Aeschynite Group Minerals Are a Potential Recovery Target for Niobium Resources at the Giant Bayan Obo Nb–REE–Fe Deposit in China." Minerals 14, no. 10 (2024): 1029. http://dx.doi.org/10.3390/min14101029.

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With the development of the steel industry, China’s demand for niobium is increasing. However, domestic niobium resources are not yet stably supplied and are heavily dependent on imports from abroad (nearly 100%). It is urgent to develop domestic niobium resources. The Bayan Obo deposit is the largest rare earth element deposit in the world and contains a huge amount of niobium resources. However, the niobium resource has not been exploited due to the fine-grained size and heterogeneous and scattered occurrences of Nb minerals. To promote the utilization of niobium resources in the Bayan Obo d
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7

Salmanov, S. S. "Methodological foundations for compiling a list of critical mineral resources." Proceedings of higher educational establishments. Geology and Exploration 66, no. 3 (2024): 137–47. http://dx.doi.org/10.32454/0016-7762-2024-66-3-137-147.

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Background. Scientific and technological progress, along with the development of high technologies, leads to a rapid increase in the variety of mineral resources used in strategically important sectors of the national economy. The growing significance of certain minerals for national security and the monopolization of the high-tech raw materials market encourage governments and the scientific community to develop concepts for ensuring national economies with critical mineral resources. Aim. To clarify the terminology related to strategic, scarce, and critical mineral resources, to establish cr
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8

YiCan, Li, Wei JunHao, and Ali Arshaghi. "Optimized Neural Network for Research Evaluation of Mineral Resources Carrying Capacity in Southern Shaanxi." Mathematical Problems in Engineering 2022 (August 11, 2022): 1–10. http://dx.doi.org/10.1155/2022/7311245.

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Evaluation of the carrying capacity of mineral resources is one of the important research content in the implementation of sustainable development. Based on analyzing the metallogenic geological characteristics, distribution, and resource status of mineral resources in southern Shaanxi, this paper establishes an analysis model of mineral resources and mineral advantages based on the analytic hierarchy process and applies them to evaluate the advantages of mineral resources. To provide optimal and efficient results, an improved model of an artificial neural network based on the bat optimization
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9

Bodayuk, Adam. "Needs forecasting in minerals for a purpose rational use of supplements." Problems of Innovation and Investment Development, no. 26 (September 29, 2021): 157–68. http://dx.doi.org/10.33813/2224-1213.26.2021.16.

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The purpose is to develop and apply the concepts of needs in natural resources: review of prehistoric natural conditions of geochemical processes in geospheres, in particular in the earth's crust, analysis of the formation of natural origin, and later for economic use of resource production facilities. The research methodology – application of the resource approach to the definition of concepts, abstract, system-structural and comparative analysis. Scientific novelty. The mechanism of management of nature management processes is revealed. Installed the need for natural resources, in particular
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10

Luo, Xinyu, Lingying Pan, and Jie Yang. "Mineral Resource Constraints for China’s Clean Energy Development under Carbon Peaking and Carbon Neutrality Targets: Quantitative Evaluation and Scenario Analysis." Energies 15, no. 19 (2022): 7029. http://dx.doi.org/10.3390/en15197029.

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With concerns about global warming and energy security, people are reducing fossil fuel use and turning to clean energy technologies. Mineral resources are used as materials for various energy technologies, and with the development of clean energy technologies, the demand for mineral resources will increase. China is a large country with various mineral resources, but its structural supply problem is severe. For China to reach the targets of carbon peaking before 2030 and carbon neutrality before 2060, they have set specific milestones for developing each clean energy industry; thus, the deman
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11

Pressacco, R., and W. E. Roscoe. "The checkerboard effect and mineral resource reporting of underground mineral resources." CIM Journal 12, no. 2 (2021): 47–59. http://dx.doi.org/10.1080/19236026.2021.1902203.

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12

Dewi, Clara Angelina Kusuma, Alberta Kristi Purwandari, Desi Febrina Maharani, Maria Beneficia Divina, and Amrizarois Ismail. "Analisis Kondisi Sumber Daya Mineral Brown Canyon Semarang." Jurnal Pengendalian Pencemaran Lingkungan (JPPL) 5, no. 2 (2023): 196–203. http://dx.doi.org/10.35970/jppl.v5i2.2004.

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Natural resources (SDA) are wealth that not every country in the world has. Natural Resources are divided into several parts according to their classification, including Mineral Resources. Mineral Resources are natural resources that contain minerals and mining materials that have economic value. The materials contained therein are usually used as high-value production materials, this is what causes mineral resources to sometimes be used inefficiently. One of the mineral resources in Indonesia is in Central Java Province, precisely in the city of Semarang, which is commonly known as "Brown Can
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13

Syvyj, M. "Issue of the rational mineral resources usage of the region." Visnyk of the Lviv University. Series Geography, no. 37 (September 9, 2009): 65–75. http://dx.doi.org/10.30970/vgg.2009.37.2373.

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Questions of the rational depths use and guard in the context of rational nature management in the districts of intensive mineral raw resources booty and processing were considered. Key words: mineral raw resources, minerals, mining wastes, rational use, mineral raw resources cadastre.
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14

Alexander, Lewis M., and Fillmore C. F. Earney. "Marine Mineral Resources." Geographical Review 82, no. 2 (1992): 231. http://dx.doi.org/10.2307/215446.

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15

CRONAN, D. S. "Marine mineral resources." Geology Today 1, no. 1 (1985): 15–19. http://dx.doi.org/10.1111/j.1365-2451.1985.tb00278.x.

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16

Brazee, Richard, and DeVerle P. Harris. "Mineral Resources Appraisal." Journal of the American Statistical Association 80, no. 392 (1985): 1063. http://dx.doi.org/10.2307/2288577.

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17

Bogatyrev, B. A. "Nonmetallic mineral resources." Geology of Ore Deposits 50, no. 3 (2008): 240–42. http://dx.doi.org/10.1134/s1075701508030057.

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18

V., Yatsenko, and Zemskov G. ""STRATEGIC MINERAL RESOURCES" - THE LEADING FACTOR OF MINERAL RESOURCES POLICY." Geochemistry of Technogenesis 2020, no. 31 (2020): 90–99. http://dx.doi.org/10.15407/geotech2020.31.090.

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19

Hasibuan, Monalisa, Anton Suprojo Hadiyanto, and Indra Agus Lukman. "KAJIAN POTENSI GALIAN MINERAL KAOLIN DI KABUPATEN INDRAGIRI HILIR PROVINSI RIAU." Selodang Mayang: Jurnal Ilmiah Badan Perencanaan Pembangunan Daerah Kabupaten Indragiri Hilir 10, no. 1 (2024): 21–25. http://dx.doi.org/10.47521/selodangmayang.v10i1.349.

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Riau Province is rich in natural resources in the form of minerals, coal, oil, gas, and alternative energy sources. For natural resources to be utilized more optimally, careful planning is needed in their management. As is known, wealth in the mining and energy sectors is generally a non-renewable natural resource and therefore needs to be managed properly and correctly, so that it can provide benefits for development and prosperity to the community. The development of minerals, especially non-metallic minerals, needs to be packaged in an integrated systematic manner in the mineral resource ma
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20

Akon, Eunuse. "Mineralogy, geochemistry and economic potentialities of heavy mineral sand resources of Bangladesh." Journal of Nepal Geological Society 59 (July 24, 2019): 1–8. http://dx.doi.org/10.3126/jngs.v59i0.24981.

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Heavy mineral sand deposits are the important mineral resources of Bangladesh. Systematic mineral exploration activities carried out in the south eastern coastal belt of Bangladesh were successful to discover seventeen heavy mineral sand (HMS) deposits in the coastal beach and off-shore islands. Mineralogy, geochemistry and mineral processing characteristics of the heavy mineral sands and their economic potentialities are presented in the present paper. On an average, HMS deposits contain 23% total heavy minerals. In heavy fraction, average weight percentage of the economic minerals is: zircon
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21

Chu, Jianpeng. "Some Thoughts on the Teaching Content of Mineral Resources Economics." Review of Educational Theory 4, no. 1 (2021): 49. http://dx.doi.org/10.30564/ret.v4i1.2838.

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Based on the teaching practice of mineral resources economics, this article believes that a certain economic foundation is an indispensable condition for learning mineral resource economics well for the students of geology majors, and the teaching content of mineral resources economics must include the basic knowledge of economics; Mining resource management is an indispensable content for constructing a knowledge system of economic analysis and evaluation of mineral resources. The teaching content of mineral resource economics should include the sustainable use of mineral resources and the en
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22

Grigoryev, M. N. "Mineral resource centers: resources and transportation safety assessment." Neftyanoe khozyaystvo - Oil Industry, no. 2 (2021): 6–11. http://dx.doi.org/10.24887/0028-2448-2021-2-6-11.

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23

Uliganets, Serhii I., Sergii Yu Syrovets, Nataliia S. Koroma, and Mykola A. Molochko. "A geographical dimension of resource endowment of Ukrainian territories." Journal of Geology, Geography and Geoecology 30, no. 3 (2021): 589–96. http://dx.doi.org/10.15421/112154.

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 Given the multidisciplinary nature of this research, it is important to develop a common understanding of the security and complexity of the rational consumption of available minerals. Considerations for the availability and depletion of minerals are part of a diverse range of research focused on sustainable development, in areas such as resource critical shortage, life cycle assessment and material flow analysis. Mineral resources are non-renewable resources that provide humanity with a wide range of goods and services. Although their value has been recognized for millenn
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24

Hartana, Hartana. "EXISTENCE AND DEVELOPMENT GROUP COMPANIES IN THE MINING SECTOR (PT. BUMI RESOURCES Tbk)." Ganesha Civic Education Journal 1, no. 1 (2019): 12–23. http://dx.doi.org/10.23887/gancej.v1i1.60.

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 PT. Bumi Resources Tbk. has absolute controlling shares of its subsidiaries (subsidiaries), so PT. Bumi Resources Tbk. can control, coordinate and be absolutely responsible for the operational activities of its subsidiaries. To expand its network, PT. Bumi Resources Tbk. formed a subholding company, PT. Bumi Resources Mineral Tbk. (BRM). BRM focuses on being a holding company that manages several subsidiaries engaged in the non-coal business. The establishment of this subholding cannot be separated from the expansion carried out by PT. Bumi Resources Tbk. which has acquire
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25

Hartana, Hartana. "EXISTENCE AND DEVELOPMENT GROUP COMPANIES IN THE MINING SECTOR (PT. BUMI RESOURCES TBK)." Ganesha Law Review 2, no. 1 (2020): 54–69. http://dx.doi.org/10.23887/glr.v2i1.120.

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 PT. Bumi Resources Tbk. memiliki saham pengendali secara absolute terhadap anak-anak perusahaannya (subsidiaries), sehingga PT. Bumi Resources Tbk. dapat mengontrol, mengkoordinasikan dan bertanggung jawab secara mutlak terhadap kegiatan operasional anak-anak perusahaannya. Untuk memperluas jaringannya, PT. Bumi Resources Tbk. membentuk perusahaan subholding yaitu PT. Bumi Resources Mineral Tbk. (BRM). BRM memfokuskan diri sebagai induk perusahaan yang mengurusi beberapa anak usaha yang bergerak dalam bisnis non- batubara. Pembentukan subholding ini tak lepas dari ekspansi
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26

Zhang, Shuxian. "Study on Economic Significance of Rare Earth Mineral Resources Development Based on Goal Programming and Few-Shot Learning." Computational Intelligence and Neuroscience 2022 (May 9, 2022): 1–9. http://dx.doi.org/10.1155/2022/7002249.

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Rare earth is one of the most important strategic minerals in the world today. The wide application of new products and technologies in the global market has made the world’s demand for rare earth resources grow rapidly. As an important basic resource of high technology, rare earth plays a significant role in national security and strategy. As rare earth mineral resources are irreplaceable in civil, military, and nuclear industries, they have become national strategic resources of various countries in the world. Although China’s rare earth industry has occupied a leading position in the world,
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27

Noviks, Gotfrīds. "ECO-INNOVATIVE SOLUTIONS FOR THE PROCESSING OF TECHNOGENIC MINERAL RESOURCES." ENVIRONMENT. TECHNOLOGIES. RESOURCES. Proceedings of the International Scientific and Practical Conference 1 (June 20, 2019): 204. http://dx.doi.org/10.17770/etr2019vol1.4050.

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The inorganic wastes and residues formed during the production and operation process are valuable technogenic minerals, the rational treatment of which can reduce the amount of non-renewable natural mineral resources. The relatively low reuse of technogenic mineral resources is currently associated with specific characteristics of these resources. They have a wide and multiplex diversity in composition and structure, and hence a wide, uneven range of physical and chemical properties that require a complex approach to assessing the potential for developing each resource. In addition, it is nece
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28

Lee, Sunjin, Yujeong Kim, and Saro Lee. "Statistical Data of Mineral Commodity." GEO DATA 3, no. 3 (2021): 16–34. http://dx.doi.org/10.22761/dj2021.3.3.003.

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The advanced countries, including the United States of America, Japan, the United Kingdom, etc., struggle to secure mineral resources for their development of economy and industry themselves. We, the Republic of Korea need to respond to come up with an effective counterplan for the resource supply and demand accordingly. The Korea Institute of Geological Resources (KIGAM) is a state-designated approval statistic institution and has been building the mineral commodity statistic data of the minerals, officially defined by the mining act of the Korean government since 1986. The statistical data o
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29

Beydik, O. "INDIGENOUS MINERAL DEPOSITS IN THE TABLE D. I. MENDELEEV: WORLD DIMENSION." Bulletin of Taras Shevchenko National University of Kyiv. Geography, no. 74 (2019): 13–17. http://dx.doi.org/10.17721/1728-2721.2019.74.3.

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Geography of mineral deposits and the distribution of chemical elements on the globe are characterized by heterogeneity. Mineral resources of the world, mineral deposits are devoted to a large array of publications of domestic and foreign specialists – geologists, geographers, geochemists, economists. During the mastering of the material, comparative-geographical, cartographic (analysis of maps of mineral resources, mineral resources in the context of continents and regions of the world), monographic (fundamental works of leading domestic and foreign geologists and resource scientists, geologi
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30

Singer, Donald A. "Mineral Deposit Densities for Estimating Mineral Resources." Mathematical Geosciences 40, no. 1 (2007): 33–46. http://dx.doi.org/10.1007/s11004-007-9127-3.

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31

Sun, Bo Xue, Zuo Ren Nie, Yu Liu, Zhi Hong Wang, and Xian Zheng Gong. "Exergy-Based Model of the Depletion of Mineral Resources." Materials Science Forum 650 (May 2010): 1–8. http://dx.doi.org/10.4028/www.scientific.net/msf.650.1.

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The primary problem of eco-materials is how to judge whether a material is environmentally friendly or not, and the method of life cycle assessment is usually used to evaluate it. The depletion of mineral resources is a very important indicator of LCA, but its characterization is still filled with dispute. At present, the most commonly used method is CML, which is put forward by Leiden University, and its core idea is that using the ratio of exploitation amount and reserves of mineral resources as the degree of scarcity. Although being accepted by most of the scholars at work on LCA, CML doesn
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32

Beydik, Oleksandr O., Sergii Yu Syrovets, Nataliia S. Koroma, and Mykola A. Molochko. "World mineral deposits in the table of periodic chemical elements." Journal of Geology, Geography and Geoecology 29, no. 4 (2020): 637–46. http://dx.doi.org/10.15421/112057.

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The distribution of mineral deposits and the distribution of chemical elements on the globe are characterized by heterogeneity. A wide range of publications of domestic and foreign specialists - geologists, geographers, geochemists, economists - were dedicated to mineral resources of the world, mineral deposits. During processing the material the comparative-geographical, cartographic (analysis of minerals maps, mineral resources in the context of continents and regions of the world, cartographic interpretation of Mendeleev periodical table), monographic (analysis of fundamental works of leadi
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33

Li, Xue Mei, Xiao Lei Zhang, and Hong Ru Du. "Economic Effect Analysis on the Development of Mineral Resources in Tarim River Basin." Advanced Materials Research 268-270 (July 2011): 383–88. http://dx.doi.org/10.4028/www.scientific.net/amr.268-270.383.

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Analysis of characteristics of mineral resources industrial development in Tarim River Basin, and taking the Bayingolin Mongol Autonomous Prefecture for example, from the contribution of the total amount and economic growth of mineral resources development, industrial development potential, the scale of employment, investment of fixed asset and resources tax analysis effect of economic of mineral resource development in Tarim River Basin. It find that economic effects of mineral resource development is also not fully played important role, in particular, the development potential of mineral re
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34

Дадыкин, Валерий, and Valeriy Dadykin. "EVALUATION OF MINERAL RESOURCES POTENTIAL OF THE BRYANSK REGION BY OF GEOLOGICAL AND ECONOMIC MONITORING METHOD." Bulletin of Bryansk state technical university 2016, no. 5 (2016): 107–14. http://dx.doi.org/10.12737/article_58f9c4d95f7940.05754497.

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In the article the application method of geological and economic monitoring for the problem solution of mineral and mineral resources potential evaluation of the territory is described by means of the cost method taking into account the expediency and perspectives of investing into additional exploration and shifting of field reserves to the industrial A+B+C1 categories and transferring forecast resources under P1+P2+P3 cate-gories into geological reserves of C2 category regarding nonmetallic minerals. Having executed the mineral resources potential evaluation of the Bryansk region by means of
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35

Paudyal, Kabi Raj, Naba Raj Neupane, Sunil Lamsal, et al. "Mineral resources of the Gandaki Province of Nepal: present status and prospect." Journal of Nepal Geological Society 65 (August 22, 2023): 157–74. http://dx.doi.org/10.3126/jngs.v65i01.57775.

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Mineral resources serve as the foundation of prosperity for any country or community. However, the process of prospecting and exploring these resources is time-consuming and involves financial risks. It requires the combined expertise of both geoscientists and mining engineers, encompassing academic knowledge and professional skills. In this research, we provide an overview of the mineral resources within the Gandaki province of Nepal and evaluate their present status. The main objective is to examine the current status and potential of mineral resources in the province. To achieve this, we ex
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36

Abay, Asmelash, Mabel Imbuga, Chandara Malik, Kumar Singh, and Dmitriy Borodin. "Geo-Resources Recycling as the Way of Mining Wastes Disposing." E3S Web of Conferences 41 (2018): 02010. http://dx.doi.org/10.1051/e3sconf/20184102010.

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Scientific and technological progress envisages the solving the most important problems in the main areas of mineral processing, leading to the perfection of technological processes, improving quality indicators and reducing the cost of production. Rational use of minerals at the stages of their extraction and enrichment is a single indivisible problem, the main task of which is the fullest use of basic and rare minerals. Geo-resources include mineral deposits and subsurface materials (solid, liquid, gaseous, mixtures), underground space (cavity), subsurface energy (static, geo-dynamic, geomag
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37

Germakhanov, Aslambek A., Alexander I. Chernykh, Mikhail M. Girfanov, Valery A. Istomin, and Andrey S. Svatkov. "The state and prospects of development of the mineral resource base of solid minerals of the Bolivarian Republic of Venezuela." Ores and metals, no. 4 (January 11, 2023): 10–31. http://dx.doi.org/10.47765/0869-5997-2022-10020.

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The status and prospects of the mineral resource base of solid minerals of the Bolivarian Republic of Venezuela, as well as possibilities for developing the RussianVenezuelan cooperation in the field of geology and mineral resource management are considered. Venezuela has world's largest oil reserves and a wide range of solid minerals (gold, diamonds, nickel, bauxite, iron ores, tantalum and niobium, other rare and base metals, various industrial minerals), which resource base retains significant growth prospects. The main direction of intensification of the mining industry is associated with
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38

Yan, Shuang, and Li Yan Wang. "Alberta Management of Mineral Resources and its Reference to China." Applied Mechanics and Materials 737 (March 2015): 800–804. http://dx.doi.org/10.4028/www.scientific.net/amm.737.800.

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Alberta, known as the “Energy Province”, has abundant natural resources with the largest reserve among all other provinces in Canada. The mining rights in Alberta are mainly taken charge by the Alberta Energy and separated from land rights. The rights are divided into three forms-Permit, leases and Licence, and can be divided further into different kinds according to different mineral resources. The electronic information management mode is applied to the management of mineral rights, which offers a significant reference to the category of mineral rights, the management of energy minerals and
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39

GUROVA, Ol’ga Nikolaevna. "Regional aspects of the development of mineral resources (using the Trans-Baikal Territory as an example)." NEWS of the Ural State Mining University 1, no. 2 (2020): 188–95. http://dx.doi.org/10.21440/2307-2091-2020-2-188-195.

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Relevance. The Trans-Baikal Territory is one of the richest in Russia in terms of reserves of mineral resources. Explored reserves of mineral resources of the region for many types of minerals are of national and strategic importance and are sources of meeting the country’s needs. The region’s work is aimed at attracting investors, including foreign ones, for the development of mineral resources and the development of infrastructure. The border neighborhood with China contributed to the fact that it became the main foreign economic partner of the Trans-Baikal Territory. The development of mini
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40

An, Jing Wen, and Lin Feng Zhao. "Risk Management and Risk Aversion Model Design for Mineral Resource Development in the West of China." Advanced Materials Research 452-453 (January 2012): 312–15. http://dx.doi.org/10.4028/www.scientific.net/amr.452-453.312.

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Based upon analysis of environmental and resource risks in development of mineral resources in the western area of China, the research has proposed five ways to avert risks in development of mineral resources from systematic perspective. Firstly, green mineral industry shall be developed to avert environmental risks. Secondly, group enterprises in the field shall be developed to avert market risks. Thirdly, technical chain shall be developed to avert resource risks. Fourthly, urban development and prospection of mineral resources shall be incorporated to avert the risk of city declining due to
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41

Murayama, Yusuke. "Mineral resources in Hokkaido." Journal of the Japanese Association for Petroleum Technology 63, no. 4 (1998): 293–300. http://dx.doi.org/10.3720/japt.63.293.

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42

Thompson, John F. H. "Deep-Ocean Mineral Resources." Elements 14, no. 5 (2018): 298. http://dx.doi.org/10.2138/gselements.14.5.298.

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43

KUNAREV, A. "Earth Mineral Resources Cadastre." Natural Resources Forum 11, no. 3 (1987): 291–92. http://dx.doi.org/10.1111/j.1477-8947.1987.tb00319.x.

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44

Showstack, Randy. "Assessing Afghanistan's mineral resources." Eos, Transactions American Geophysical Union 88, no. 49 (2007): 541. http://dx.doi.org/10.1029/2007eo490005.

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45

Mainardi, Stefano. "Mineral resources and growth." Resources Policy 21, no. 3 (1995): 155–68. http://dx.doi.org/10.1016/0301-4207(96)89786-8.

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46

Burtseva, I. "Economic assessment of mineral resources of the Arctic zone of the region taking into account the environmental factor." Proceedings of the Komi Science Centre of the Ural Division of the Russian Academy of Sciences, no. 3 (July 13, 2022): 27–34. http://dx.doi.org/10.19110/1994-5655-2022-3-27-34.

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The aim of the study was the economic assessment of promising mineral resources of the Arctic zone. The objectives of the work included the assessment and ranking of deposits and occurences of minerals in the Arctic regions of the republic according to the degree of investment attractiveness for the formation of programs for the development of the mineral resource base of the region, taking into account environmental restrictions. As a result of the study, an economic assessment of the mineral resource potential of the Arctic zone of the Komi Republic was carried out, a new methodological appr
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47

Bendahmane, N., N. Gondran, and J. Chevalier. "AESA approach applied to mineral and metal resources use sustainability in the building sector: The MiMOSA method." IOP Conference Series: Earth and Environmental Science 1078, no. 1 (2022): 012124. http://dx.doi.org/10.1088/1755-1315/1078/1/012124.

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Abstract Considering the increase of natural resource use, humanity is facing the problem of resource depletion. The building sector is a major consumer of resources. The most consumed resources are mineral and metal resources. Thereby, the identification, and then optimisation, of mineral and metal resource use in the building sector appears as a necessity. One tool to quantify the use of those resources is LCA. Currently, several authors develop absolute environmental sustainability assessment (AESA) methods, combined with LCA, to compare the pressures of the studied project with the global
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48

KOROLEV, V. А. "THE ECOLOGICAL ROLE OF CLAYS AND CLAY MINERALS." Engineering Geology World 14, no. 1 (2019): 60–71. http://dx.doi.org/10.25296/1993-5056-2019-14-1-60-71.

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The article considers the ecological role played by clays and clay minerals in the ecosystem and the biosphere as a whole. The value of clays and clay minerals in the origin of life on Earth and the formation of RNA are analyzed, due to the periodicity of the microstructure of these minerals, their physicochemical activity and sorption capacity with respect to amino acids, nucleotides, proteins and RNA. The processes of interaction of clay minerals with organic matter are considered, including under conditions of hydrothermal conditions, which have specific features that contribute to the orig
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Kornilkov, SV. "Mineral resources strategy and scientific-based management." IOP Conference Series: Earth and Environmental Science 991, no. 1 (2022): 012021. http://dx.doi.org/10.1088/1755-1315/991/1/012021.

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Abstract The paper discusses the issues of implementation of the Mineral Resources Strategy of the Russian Federation till 2035. The main objective is to develop a coordinated regional strategy that takes into account the planned structural changes in industry for the implementation of priority programs of engineering, metallurgy, industry of building materials and other industries, based on Russian and the world trends of minerals consumption in conditions of deterioration of quality and availability of raw materials. The paper formulates the main regional organizational and technological con
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50

Ashraf, Hamid, and Frederick Cawood. "Mineral development for growth: the case for a new mineral policy framework for Pakistan." Journal of Science and Technology Policy Management 8, no. 3 (2017): 246–74. http://dx.doi.org/10.1108/jstpm-11-2016-0033.

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Purpose The fundamental purpose of this research is to compare Pakistan’s mineral policy instrument with that of leading developing minerals-based economies and to highlight the gaps. Mineral resources development can act as an engine for country growth and have the potential to transform economies and societies. The extent to which such transformation takes place varies depending upon the method of their use. Design/methodology/approach This paper conducts a gap analysis between Pakistan and leading developing minerals-based economies to identify key policy gaps. Two basic principles were kep
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