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Location: 35 km SW from Karaganda, Kazakhstan. Republic Ave, 1, Karaganda region Temirtau Kazakhstan Stay on top of the latest gold discoveries. Examine the latest updates on drilling outcomes spanning various commodities. Mining scale, mining and mill throughput capaciites. Full profiles of select mines and projects. Shaft depth, mining scale, backfill type and mill throughput data. Equipment type, model, size and quantity. Camp size, mine location and contacts. The basin is more than 3, square kilometers and was formed by strata of Upper Devonian and Carbonic ages, Mesozoic and Cainozoic formations. Due to structural peculiarities, the coal basin is divided into three geology-based mining areas. ArcelorMittal Temirtau's coal mining operations are performed in the three distinct mining areas: Karagandinskiy Kostenko, Kuzembayeva, and Saranskaya mines , Sherubay-Nurinskiy Abayskaya and Shakhtinskaya mines and Tentekskiy Kazakhstanskaya, Lenina, and Tentekskaya mines. Karaganda basin is located on the area of the same name and in the center of this region. Four synclines are notable in the basin: Tentek, Sherubainur, Karaganda and Verkhnesokursk, first three of them make an industrial part of basin and are studied full enough up to the depths m. The most-widely spread are coals of types from hvBb to mvb. Gas weathering zone depth varies within the limits of m. Abaiskaya Coal Mine The geological structure of the Abaiskaya mine formerly the Kalinina mine is represented by sedimentations of carbonic, paleogene, neogene, and quarternary age. Lithological content of the strata is represented by interbedding of sandstones, siltstones, argillites, carbonaceous argillites, and coal seams. Thickness of the suite sedimentations is m. The field of the Abaiskaya mine is located in the Southern part of the northeastern flank of Sherubai-Nurinskaya synclinal as a big tectonic block limited by a series of overlap faultings. The area is complicated with folds and disjunctive imperfections. Results of exploratory works have indicated 91 disjunctive faults and 82 low-swing imperfections with amplitude distortion of m spreading from 50 to m. Zones of the imperfections have intensive cleavage of the strata with trace of drifts along sliding surfaces. Seams D6 and D11 are currently being developed, and D10 is being prepared for development. Seam D6 is the thickest and most stable seam of the Dolinskaya suite. Its effective thickness varies from 2. The seam has a complex structure where up to interlayers of strata of different thicknesses usually not exceeding 0. The most stable is the waste strata interlayer of 0. The other strata interlayers are lens-shaped. Seam D11 is relatively stable and of moderately complex structure. Its effective thickness varies from 0. Thin strata interlayers of 0. The seam has a complex, easy-breaking roof, with a thickness of 0. Seam D10 is relatively stable and has a complex structure and thickness of 1. The formation interlayer of 0. Lenina Coal Mine The field of Lenina mine is represented by an asymmetrical synclinal fold that is complicated by plicative and disjunctive imperfections and faults. The geological structure of coal-bearing strata is represented by argillites, siltstones and sandstones of carbonic age. All of the seams are considered dangerous with outbursts. Geological structure of the mine field is represented by sedimentations of over-karaganda, dolinskaya, and tentekskaya suites of carbonic age, overlaid by neogene, paleogene, and quaternary sedimentations of overall thickness from 7 to 86 m. Over-karaganda suite is represented by argillites, siltstones, fine-grained sandstones, and lenses of coal interlayers. Dolinskaya suite of overall thickness m is composed of argillites, siltstones, sandstones and coal seams D1-D The field of the mine is complicated by a significant number of disjunctive faults and plicative folding and limited by the big Churubai-Nurinskiy fault. The Tentekskaya mine is considered dangerous with spontaneous coal and gas outbursts. Coal seams T1 and D6 south, center are dangerous at a depth of m and seam D6 north — at a depth of m. The mine is noted for danger from dust. Coals of the seam D6 are noted for spontaneous combustions. The seam D6 is a subject to fire risk. Data Access. Keep me signed in. Forgot Your Password? Enter the email you signed up with and we'll email it to you. User Name is required. Overview Click for more information. Largest mines in the Americas Mining scale, mining and mill throughput capaciites. Deepest underground mines Shaft depth, mining scale, backfill type and mill throughput data. Mines with autonomous mobile equipment Equipment type, model, size and quantity. Largest mines with remote camps Camp size, mine location and contacts. Click for more information. Mine Life It includes eight underground coal mines located in and around Karaganda in Kazakhstan and the Vostochnaya coal preparation plant. The mines produce primarily metallurgical coal. Owners Source. Qazaqstan Steel Group and its founder Andrey Lavrentiev became the new investor. ArcelorMittal Temirtau was later renamed Qarmet. Deposit type Sedimentary. Mining Methods - subscription is required. Comminution Crushers and Mills Milling equipment has not been reported. Processing - subscription is required. Production production for Karaganda Coal Mines Complex is included through the transaction closing date on December 7, Commodity Units Coal metallurgical Mt All production numbers are expressed as clean coal. Operational metrics Metrics Coal tonnes mined Production Costs Commodity production costs have not been reported. Heavy Mobile Equipment Fleet data has not been reported. Personnel Mine Management. Job Title Name Profile Ref. Jun 20, Employees Contractors Total Workforce Year Aerial view:. Data Access Keep me signed in. Forgot your password? Coal metallurgical Coal thermal. Qarmet JSC operator. Qazaqstan Steel Group. Coal metallurgical. Coal tonnes mined.

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