Welcome to the Industrial Automation website!

NameDescriptionContent
HONG  KANG
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

Analysis of the development trend of China's iron ore mining technology in the "13th Five-Year Plan"

来源: | 作者:佚名 | 发布时间 :2024-02-01 | 720 次浏览: | Share:

With the continuous advancement of mining modernization, mineral resources are constantly consumed, and the scale of mining is constantly expanding, and the expansion of mining scale drives the continuous development of mining technology. At present, due to the continuous sharp decline in iron ore prices, the development of domestic iron ore enterprises is facing severe challenges, the deterioration of resource conditions makes it more difficult to mine, and the development of social environment also puts forward new requirements for mine development. Therefore, during the "13th Five-Year Plan" period, in order to cope with the changes in the industry situation and adapt to the requirements of The Times, it is necessary to continuously develop mining technology, reduce costs and increase efficiency through the application of new technologies and technological transformation measures, improve the competitiveness of enterprises, and steadily improve the level of mining technology in China.

1. Development status

After decades of development, especially more than a decade in the new century, the mining technology level of China's iron ore industry has made obvious progress.

(1) Open pit mining

In the open pit mining, the mining process is more mature, the mode of transportation is more diversified and efficient, with the application of steep mining, continuous semi-continuous mining process, mobile crushing station, steep slope railway transportation, vibration feeder loading station, automobile - elevator and other technologies, waste free mining technology, mining digitization, intelligent and other advanced technologies. Mine production efficiency has been significantly improved.

(1) Staging mining technology. Compared with full-range mining, phased mining has the advantages of provincial investment, quick effect, and less infrastructure investment to reach production as soon as possible. Some large steeply inclined open-pit mines in China have successfully realized the stage mining technology, such as Nanfen Iron mine, Shuichang Iron mine, Qidashan Iron Mine and so on.

(2) Intermittent continuous transportation technology. The discontinuous production process has been successfully applied in the deep concave open pit mine in China. The system is mainly composed of two parts, the discontinuous part refers to the automobile or locomotive transportation, and the continuous transportation part refers to the crusher tape machine and the soil discharge machine. With the development of open pit mining in China to deep mining, the significance of this technology is becoming more and more prominent. At present, the technology has been applied in Qidashan Iron ore, Shuichang Iron ore, Donganshan Iron ore, Dagushan Iron ore, Nanfen Iron ore and so on.

(3) High step mining. Step height is the main parameter of open-pit stope, increasing step height is conducive to improving the efficiency of penetration and explosion, simplifying and shortening the transportation line, increasing the amount of stage ore and improving the continuity of operation. In recent years, with the gradual popularization of large shovel equipment, high step mining technology is more and more favored by mining enterprises, the domestic open pit iron ore step height generally reaches 12 meters, Qidashan iron mine step height has reached 15 meters.

(4) Steep mining. Since the 1970s, metal mines in China began to carry out experimental research on steep mining technology. During the "Eighth Five-Year Plan" period, steep mining was included in the national science and technology research project, and carried out large-scale industrial test research in Nanfen open-pit mine, which comprehensively and systematically revealed the technological characteristics of steep mining, laid the technical foundation for the production and construction of Nanfen Iron mine, and provided practical experience for the technical transformation, new construction and expansion of large and medium-sized open-pit mines in China. Steep mining has been widely applied in open-pit iron mines in China because of its advantages such as small initial stripping amount, small amount of infrastructure works, short construction period and short final slope exposure time.

2. Underground mining

Underground mining technology is a technical field that has carried out the most extensive scientific research work and achieved the most scientific and technological achievements in more than 60 years since 1949. A large number of technical achievements have been made in the aspects of tunneling, mining methods, mine filling, etc. With these achievements as technical support, modern underground mines such as Meishan Iron Mine and Jingtieshan Iron Mine have been built. Therefore, it promotes the rapid development of underground mining technology in our country, and makes the technology of some mines reach the international advanced level.

(1) Develop modes of transportation. After years of development, the domestic underground iron ore is mainly developed by the joint development of shaft and slope. At the same time, some mines still adopt other development methods in combination with their own characteristics. Taking Dahongshan Iron Mine as an example, the mine adopts the joint development mode of inclined shaft taping machine - trackless ramp - blind shaft to replace shaft upgrading, reduce infrastructure investment, and be innovative, reaching the international advanced level.

  • FOXBORO L0130AD L0130AE-0H Digital Input Module
  • FOXBORO 0399085B 0303440C+0303458A combination control module
  • FOXBORO SY-0399095E SY-0303451D+SY-0303460E DC power module
  • FOXBORO 0399071D 0303440C+0303443B Combination Control Board
  • FOXBORO RH924UQ controller module
  • FOXBORO E69F-TI2-S dual line temperature transmitter
  • FOXBORO 0399144 SY-0301059F SY-1025115C/SY-1025120E Combination Control Board
  • FOXBORO SY-60399001R SY-60301001RB SY-60702001RA/SY-61025006RA/SY-61025004RA/SY-61025001RA High performance industrial control module
  • FOXBORO 0399143 SY-0301060R SY-1025115C/SY-1025120E Sensor
  • FOXBORO 873EC-JIPFGZ Industrial Control Module
  • FOXBORO FBM230 P0926GU Communication Module
  • FOXBORO P0916PH P0916JS Input/Output Module
  • FOXBORO P0916PH P0916AL I/O module
  • FOXBORO 870ITEC-AYFNZ-7 Intelligent Electrochemical Transmitter
  • FOXBORO FBM207 P0914TD Voltage Monitor
  • FOXBORO FBM201D Discrete Input Module
  • FOXBORO P0923ZJ switch I/O interface module
  • FOXBORO P0923NG Intelligent Differential Pressure Transmitter
  • FOXBORO P0916KN power module
  • FOXBORO P0916KM I/A series module
  • FOXBORO P0916WE Terminal Cable
  • FOXBORO P0916VB power supply module
  • GE Hydran M2-X Transformer Condition Monitoring Device
  • FOXBORO P0916VL control module
  • FOXBORO P0916VC High Performance Terminal Cable
  • FOXBORO P0916WG system module
  • FOXBORO P0972ZQ interface channel isolation 8-input module
  • FOXBORO P0973BU high-frequency fiber optic jumper
  • FOXBORO P0926MX Splasher Confluencer
  • FOXBORO P0961S connector module
  • FOXBORO P0903NU system module
  • FOXBORO CM902WM control module
  • FOXBORO P0972VA ATS Processor Module
  • FOXBORO P0916Js digital input terminal module
  • FOXBORO PO961BC/CP40B control module
  • FOXBORO PO916JS Input/Output Module
  • FOXBORO PO911SM Compact Monitoring Module
  • FOXBORO P0972PP-NCNI Network Interface Module
  • FOXBORO P0971XU Control System Module
  • FOXBORO P0971DP Controller
  • FOXBORO P0970VB control module
  • FOXBORO P0970BP (internal) cable assembly
  • FOXBORO P0961EF-CP30B High Performance Digital Output Module
  • FOXBORO P0961CA fiber optic LAN module
  • FOXBORO P0926TM Modular I/O PLC Module
  • FOXBORO P0916BX series control system input/output module
  • FOXBORO P0916AG Compression Period Component
  • FOXBORO P0916AC I/A series module
  • FOXBORO P0912CB I/O Terminal Module
  • FOXBORO P0911VJ high-precision control module
  • FOXBORO P0911QC-C 8-channel isolated output module
  • FOXBORO P0911QB-C High Performance Industrial Module
  • FOXBORO P0903ZP Embedded System Debugging Module
  • FOXBORO P0903ZN control module
  • FOXBORO P0903ZL High Frequency Industrial Module
  • FOXBORO P0903ZE I/A series fieldbus isolation module
  • FOXBORO P0903NW Industrial Control Module
  • FOXBORO P0903NQ control module
  • FOXBORO P0903AA Industrial Control Module
  • FOXBORO FBM205 cable
  • FOXOBORO P0960HA I/A series gateway processor
  • FOXBORO P0926TP high-performance control module
  • FOXBORO P0926KL control module
  • FOXBORO P0926KK PLC system functional module
  • FOXBORO P0924AW wireless pressure transmitter
  • FOXBORO P0916NK differential pressure transmission cable
  • FOXBORO P0916JQ PLC module
  • FOXBORO P0916JP I/A series control module
  • FOXBORO P0916GG Digital Input Module
  • FOXBORO P0916DV I/A series digital input module
  • FOXBORO P0916DC Terminal Cable
  • FOXBORO P0916DB I/A series PLC module
  • FOXBORO P0914ZM recognition module
  • FOXBORO P0902YU control module
  • FOXBORO P0901XT Process Control Unit
  • FOXBORO P0800DV fieldbus extension cable
  • FOXBORO P0800DG Standard Communication Protocol Module
  • FOXBORO P0800DB Universal I/O Module
  • FOXBORO P0800DA Industrial Control Module
  • FOXBORO P0800CE control module
  • FOXBORO P0700TT Embedded System
  • FOXBORO P0500WX Control System Module
  • FOXBORO P0500RY Terminal Cable Assembly
  • FOXBORO P0500RU control module
  • FOXBORO P0500RG Terminal Cable
  • FOXBORO P0400ZG Node Bus NBI Interface Module
  • FOXBORO P0400GH fieldbus power module
  • FOXBORO FBM207B Voltage Monitoring/Contact Induction Input Module
  • FOXBORO FBM205 Input/Output Interface Module
  • FOXBORO FBM18 Industrial Controller Module
  • FOXBORO FBM12 Input/Output Module
  • FOXBORO FBM10 Modular Control System
  • FOXBORO FBM07 Analog/Digital Interface Module
  • FOXBORO FBM05 redundant analog input module
  • FOXBORO FBM02 thermocouple/MV input module
  • FOXBORO FBI10E fieldbus isolator
  • FOXBORO DNBT P0971WV Dual Node Bus Module
  • FOXBORO CP30 Control Processor
  • FOXBORO CM902WX Communication Processor
  • FOXBORO AD202MW Analog Output Module
  • FOXBORO 14A-FR Configuration and Process Integration Module
  • FOXOBORO 130K-N4-LLPF Controller
  • FUJI FVR004G5B-2 Variable Frequency Drive
  • FUJI FVR008E7S-2 High Efficiency Industrial Inverter
  • FUJI FVR008E7S-2UX AC driver module
  • FUJI RPXD2150-1T Voltage Regulator
  • FUJI NP1PU-048E Programmable Logic Control Module
  • FUJI NP1S-22 power module
  • FUJI NP1AYH4I-MR PLC module/rack
  • FUJI NP1BS-06/08 Programmable Controller
  • FUJI NP1X3206-A Digital Input Module
  • FUJI NP1Y16R-08 Digital Output Module
  • FUJI NP1Y32T09P1 high-speed output module
  • FUJI NP1BS-08 Base Plate​
  • FUJI A50L-2001-0232 power module
  • FUJI A50L-001-0266 # N Programmable Logic Control Module
  • GE GALIL DMC9940 Advanced Motion Controller
  • GE DMC-9940 Industrial Motion Control Card
  • GE IS200AEADH4A 109W3660P001 Input Terminal Board
  • GE IC660HHM501 Portable Genius I/O Diagnostic Display
  • GE VMIVME 4140-000 Analog Output Board
  • GE VMIVME 2540-300 Intelligent Counter
  • GE F650NFLF2G5HIP6E repeater
  • GE QPJ-SBR-201 Circuit Breaker Module
  • GE IC200CHS022E Compact I/O Carrier Module
  • GE IC695PSD140A Input Power Module
  • GE IC695CHS016-CA Backboard
  • GE IC800SS1228R02-CE Motor Controller