Welcome to the Industrial Automation website!

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

The method and suggestion of drawing up green mine construction plan

来源: | 作者:佚名 | 发布时间 :2023-11-28 | 477 次浏览: | 🔊 Click to read aloud ❚❚ | Share:

Third, the preparation of green mine construction planning methods and suggestions

 The planner should have correct epistemology, values and methodology.

In terms of epistemology, it is necessary to change or even subvert the existing cognition of the production, operation and development law of the "mine", and use the "living body" to abstract and understand the mine. The "living body" of the mine has digestive, respiratory, circulation, nervous and other systems, and has the ability of learning, feedback, immunity, adaptation, repair and regeneration. If the green mine is compared to a person, it is to be a civilized person and a modern person, to have face (the mining environment is clean and reasonable layout), to have a good organ function, to achieve less input, more output, less emissions), and to have a brain (high IQ and EQ, digital mines and mines are harmonious).

In terms of values, it is necessary to guide the ideal goal of "symbiosis, co-prosperity, sharing, mutual benefit and co-governance" in the new era of ecological civilization, change the concept of "mineral resources" as a single tool value, establish the concept of "living body" of mines, and actively fulfill corporate social responsibilities. To promote the economic, ecological, environmental and social benefits of resource development and maximize the comprehensive benefits.

In terms of methodology, this paper puts forward the following suggestions from the two aspects of working method and planning concept.

1. Working method -- goal oriented + problem oriented

1) Find gaps against industry standards. At the end of June 2018, the Ministry of Natural Resources issued the green mine construction specifications for nine major industries in the form of Announcement No. 18, which is a milestone event in the development process of China's green mining industry, marking the transformation of China's green mine construction from "administrative promotion" to "standard guidance", and strengthening the self-discipline of the mining industry and accelerating the formation of a new pattern of green mine construction. It is of great significance to deepen the construction of ecological civilization in the mining industry and improve the ability of mining management. Green mine construction industry standards from mining environment (mine capacity and mine appearance, mining greening), resource development and utilization mode (green development, ecological environmental protection and restoration), comprehensive utilization of resources (co-associated resource utilization, solid waste utilization, mineral processing wastewater utilization), energy saving and emission reduction (energy saving and consumption reduction, pollutant discharge), scientific and technological innovation and digital mine, enterprise management and corporate image (Enterprise culture, enterprise management, enterprise integrity, enterprise harmony) put forward specific requirements, clear a series of qualitative and quantitative index requirements, green construction should be compared with industry standards for systematic analysis, shortcomings, strengths and weaknesses, at the same time can choose domestic and foreign benchmarking enterprises field research, learn from experience, expand ideas, learning methods. On the basis of benchmarking, planning should be problem-oriented, focus on the core links, determine priorities, and improve the pertinence and effectiveness of planning.

2) Overall planning and positioning. The green mine construction plan shall implement the national economic and social development plan, the overall plan of mineral resources and the green mining development plan of the region, take the enterprise construction and development plan or strategy as the guidance, and connect with the existing micro-level planning or program design of mine environmental protection and management, mining land reclamation and so on. Among them, the planning of different mines belonging to the same mining enterprise should fully reflect the characteristics; Different enterprises, but the same type of mines in the same area, have great similarities and can draw lessons from each other.

3) Use planning as a platform to gather force. Green mine construction is a systematic project, green mine construction planning involves a wide range of professional fields, many categories, large span, long chain, what kind of organization to choose is also a problem faced by many mining enterprises. More and more scientific research institutions or social organizations participate in the construction of green mines, but no matter what kind of institutions to prepare green mine construction planning, it is necessary to open the door to prepare planning, through planning to build a platform for communication and information sharing, one is to invite relevant experts to "pulse consultation", Such as mine design, mine restoration, digital mine construction and other technical experts, as well as familiar with local policy standards and requirements of management experts; The second is to encourage enterprise employees to offer suggestions, the most familiar with the problems of the enterprise is the mining enterprise employees, especially the relevant technical management personnel, to open the way, brainstorm.

2 Planning concept - upper antenna + lower ground gas

The idea is the precursor of action. Green mine construction planning concept should not only connect the antenna, but also the ground gas.  Fully embodies "local adaptation, professional technology, economic feasibility, circular system and advanced consciousness".

3.2.1 Local conditions

Different regions, different scales, different production stages (new mines, production mines), different industries, different mining methods, facing different outstanding problems in green mine construction, environmental impact, capital requirements, technical means that should be taken are different. Therefore, in order to make a good plan, we must establish the concept of difference, according to the principle of adapting to local conditions and adapting to the time, one mine and one policy, according to the standard, and carry out targeted planning.

1) Different mining methods: The stripping project of open-pit mine has a large scope, and the construction focuses on solving the problems such as land destruction caused by the pressure of mining pit and external dump, geological disasters induced by the instability of open-pit slope, mining greening, dust suppression and so on. Underground mining mines are faced with problems such as ground collapse, ground cracks and destruction of underground aquifers. The planning focuses on filling mining, water retention mining or integration of mining, selection and charging.

2) Different regions: the terrain, geomorphology, climate and biological conditions around the mine are different, and the difficulty and application of technical modes are different in the mine environmental construction and geological environment restoration; In the warm and moist climate area of south China, the environmental restoration is less difficult, and the focus is on the protection and restoration of biological communities. The western and northern regions are more difficult. For example, Jinhui Mining in Qinghai Province is located in an ecologically fragile region on the plateau, exploring the cultivation of highland barley and other plants on the pulp of the dry beach of the tailings pond, and Dongming Mining in Hulunbuir is located in the east Arctic cold region, selecting and domesticating 26 kinds of seedlings suitable for growth in the cold region.

3) Different scales: Large mines have obvious advantages in team, technology, capital and management, while small mines are at a disadvantage. Large and medium-sized mines should pay attention to comprehensive construction of green mines, not only pay attention to overall resource benefits and environmental benefits, but also pay attention to scientific and technological innovation, personnel training, system construction and other capacity building as well as related ecological industry development, while small mines should focus on environmental restoration standards. Combine their own characteristics to solve specific problems.

4) Different stages: New mines are "incremental planning" mode, equivalent to painting on a blank sheet of paper, to pay attention to systematic and forward-looking; Production mines need to adopt the "stock planning" model, the core is to optimize and upgrade the existing production technology and equipment, economic model.

2.2 Professional and Technical

Green mine construction reflects the professional and technical requirements of many fields and disciplines, and has cross-border and integration. It is necessary to fully realize the important role of scientific and technological innovation driving in the construction of green mines.  It is necessary to fully realize that green mining and green mining are not only the application of high and new technology, but also the "source" of green new technology. The green mine construction industry standard puts forward specific qualitative and quantitative requirements for technological innovation from the aspects of innovation system construction, personnel training, key technology research and development, scientific research capital investment, and scientific and technological achievements transformation. In the preparation of the plan, it is necessary to attract relevant professional and technical experts to participate in the preparation of the plan, and more importantly, it is necessary to put forward effective and feasible concrete measures from the aspects of releasing the momentum of scientific and technological innovation and giving play to the drive of scientific and technological innovation.

2.3 Economic Feasibility

Green mine construction should be considered from the economic dimension. From the green mine construction experience, the production mine after green upgrading and transformation, its total industrial output value and comprehensive utilization output value will be greatly increased, green mine construction is a short-term investment, long-term benefit. For example, Qinghai Duran Jinhui Mining Company, 90% of the annual profits from green mine construction, with their own practical actions to prove to all sectors of society: the development of green mining, the construction of green mines not only do not suffer losses, but also considerable profits. But in the short term, the construction of "green mine" needs to invest a certain amount of funds. At present, the mining industry situation is depressed, mining enterprises have a certain survival pressure, we must scientifically evaluate the reasonable cost of "green mine" construction, find a meeting point, not only to ensure the survival of enterprises but also to promote the transformation of green development of enterprises.

In the planning, the first is to carry out input-output analysis and overall budget for the projects and projects to be carried out, and make overall arrangements in time series according to the priorities; Second, for some small mines or old mines, research and introduction of "advanced applicable technology" that ADAPTS to the economic conditions and development stage of the mine, and promote the transformation and upgrading of process technology and equipment, rather than unbearable "luxury technology"; Third, while clarifying the development direction of comprehensive utilization of resources and circular economy, fully study the market, and consider improving resource and environmental benefits at the same time, there must be a certain economic benefit output as the premise. For example, Chengde vanadium titanium magnetite tailings have stable performance and high strength, which can meet the performance requirements of concrete aggregates, and can provide sufficient and lasting resource guarantee for Beijing green sand and gravel. In some mines with the same resource conditions, but the location conditions and market demand conditions are not very superior, the tailings sand making project is not economically feasible to a certain extent.

2.4 Circulatory system

The construction of green mine is a systematic project, and the construction of green mine is to build the circular economy of mine. The construction of green mine should change the mining enterprises from a single mining mode to a diversified, comprehensive resource development and utilization industry chain development mode. First, it is necessary to establish the concept of circular economy, considering the strengthening of green mining, comprehensive utilization of resources, mining geological environment management +, coupling between multiple production systems or links, so that material and energy multi-level utilization, waste resources and products, waste heat and waste gas energy, forming a multi-level closed-circuit cycle without waste and pollution-free industrial system; Second, it is necessary to establish the concept of comprehensive regulation of "mountains, rivers, forests, fields, lakes and grasses", change the previous narrow concept of land reclamation in mining areas, and through the process of "geomorphic remodeling, soil reconstruction, vegetation reconstruction, landscape reproduction, biodiversity reorganization and protection" from the perspective of "mountains, rivers, forests, fields, lakes and grasses" life community. To realize the "overall protection, systematic restoration and comprehensive management" of the ecological environment in the mining area and the surrounding area.

2.5 Advanced consciousness

As a planner, it is necessary to be forward-looking and innovative in thinking, and make suggestions for the development of mines from a more macro vision and a longer time scale. For example, for new mines, based on the circular economy model from the source, develop technical routes and measures to control interference and damage, strengthen the comprehensive utilization of resources and waste resources, and strive to achieve "no waste" mining without building tailings ponds, no waste rock yards, and no substandard wastewater discharged. For example, the Dawudian graphite mine in Inner Mongolia, in accordance with the concept of green development, in the mine design stage, based on the advantage of "one mine and three resources", to create a green mine of the whole industrial chain, in addition to the development and utilization of main mineral graphite resources, the development of new materials such as high-purity graphite and graphene industries, but also make full use of surrounding rock to develop stone industries such as microcrystalline building materials. Development of assembly building materials industry by using tailings to make foamed ceramics. For open-pit mines that are about to be closed, industrial implantation can be considered while doing a good job in the restoration and management of the mine geological environment. If there are many ways to use abandoned mines at present, + agriculture, cultivation or animal husbandry or aquaculture; + Ecological industries to form reservoirs or wetlands; + Tourism and entertainment, forming mine park, mine hotel; + Social services or other emerging industries, the formation of landfill or photovoltaic power generation, according to the mine's own conditions, regional natural environmental conditions, traffic conditions, distance from the city, local cultural environment, etc., combined with the actual planning to give directional suggestions.

Second, formulate green mine construction planning safeguard measures

1) Strengthen organizational, financial and technical support. Qualified mines should set up a special green mine construction leading group and office, coordinate the relevant work, improve the green mine management system, responsibility system, clear the schedule of planning and implementation, road map, responsible person. The construction of green mines will be included in the production cost budget of enterprises, and actively expand funding channels, strive for green credit and other support, and ensure that the project and project funds are raised and used in place. Strengthen cooperation with universities and research institutes to provide technical support and guarantee for the construction of green mines.

2) Strengthen deployment assessment and follow-up evaluation. Combine the green mine construction planning and implementation with the overall deployment of mine development and production and operation, improve and improve the planning implementation organization and management system, build a driving system with green performance as the core, combine the planning objectives with the annual objectives of mine production assessment and management, and consolidate layer by layer. We will strengthen follow-up and evaluation of the implementation of the plan and correct problems in a timely manner.

3) Strengthen publicity training and local guidance. Thought is the forerunner of action, and concept is the key to success or failure. Enterprises should strengthen the promotion and guidance of green mine concept and policy, improve every employee's awareness of ecological civilization and green development concept, let everyone know what is green mine, and take the initiative to participate in green mine construction, local governments and competent departments should also strengthen work guidance, and summarize the best practice of green mine construction that can be promoted and replicated.


  • ABB DSAI130DK01 3BSE020828R1 Analog Input Module
  • Parker 466966-0001-3820 Industrial Component Data
  • PARKER ZETA6104 Microstepping System
  • PARKER COMPAX 2500S/F3 Servo Drive Manual Details
  • PARKER CX-DH Indexer Drive Technical Specifications
  • PARKER 6K8 Motion Controller Features and Specifications
  • PARKER EVM32-BASE I/O Module Base Technical Specification
  • ABB Pb PN-112718 Digital Input Module
  • Pb PN-45734 PN-73899 Industrial Automation Module
  • Control Techniques Pb PN-40856 Industrial Control Module
  • Pb PN-104412 4002910956 Industrial Control Module
  • Siemens Pb PN-41513 Industrial Ethernet Module
  • Pelco PA30-0065-00-A1 PTZ Decoder Module
  • Pentek FILTER 3F11 800000919 Pleated Filter Cartridge
  • Pepperl+Fuchs RSD-TI-EX8 Temperature Input Module
  • PERITEK AC7-00712-1113 Industrial Interface Module
  • PFEIFFER EVR116 Vacuum Control Module
  • Pepperl+Fuchs RSD-CI-EX8 Hazardous Area Interface Module
  • PEPPERL+FUCHS 2108HAT Intrinsic Safety Barrier Module
  • Philips 958481320201 PROC+ Processing Unit
  • Philips 958481321300 PSB Power Supply Board
  • Philips 958481321220 PD208 Power Module
  • PHILIPS 958481321200 PD216 Control Module
  • PHILIPS 958481320201 PROC PLUS Control Module
  • Philips 958481320400 PIF Interface Module
  • Philips 958481320100 LCB Control Board
  • PHILIPS 958481223220 Industrial Control Module
  • PHILIPS 958481223223 Industrial Control Module
  • PHILIPS 958481321300 Industrial Control Module
  • PHILIPS SCM040 Digital Output Synchronization Module
  • PHILIPS DSI020 Data Storage Interface Module
  • PHILIPS OPM010 Optoelectronic Control Module
  • PHILIPS VBM010 Industrial Automation Module
  • PHILIPS VBM030 Turbine Supervisory Instrumentation
  • PHILIPS PR1613 Industrial Control Module
  • PHOENIX PATG1/23 1013847 Ground Terminal Block
  • Phoenix Contact IB ST 24 AI 4/SF Analog Input
  • Phoenix Contact OPC5315-004-AB Industrial PC
  • Phoenix Contact UMK-SE11.25-1 Side Element
  • PHOENIX 2961192 Relay Module
  • PHOENIX IB ST ZF 24 AI 4/SF Analog Input Module
  • Phoenix Contact PLC-BSC-24DC/21 Relay Base
  • Phoenix Contact UK6N Feed-Through Terminal Block
  • Phoenix Contact UK4-T Disconnect Terminal Block
  • Phoenix UK3N Screw Terminal Block
  • Phoenix QUINT-PS-100-240AC/10 Power Supply
  • Phoenix QUINT PS-100-240AC/24DC/10 Power Supply
  • Phoenix UT 6-HE SI Surge Protection Terminal Block
  • Phoenix UT 4-MTD Feed-through Terminal Block
  • Phoenix UT 4-HE SI Surge Protection Terminal Block
  • Phoenix IBS 24BK-I/O-T Bus Coupler
  • Phoenix Contact HDFK4 High-Current Terminal Block
  • PHOENIX ST-SI-UK4 Fuse Terminal Block
  • PHOENIX FLMC10BASE-T/FO G850 Fiber Media Converter
  • PHOENIX CONTACT QUINT-PS-100-240AC/24DC/40 Power Supply
  • PHOENIX CONTACT QUINT-DIODE/40 Redundancy Module
  • Phoenix Contact 2884208 Wireless I/O MUX
  • Photonetics 3646 HE 1540 Tunable Laser Source
  • PI C-663.12 Mercury Multi-Axis Step Motor Controller
  • PI C-663.10 Mercury Step Motor Controller
  • Pillar CB6687-2L Industrial Communication Board
  • Pilz DE-106712 A.F.051.5/01 Safety Module
  • Pilz 680003 Safety Relay Module Set
  • Pilz 301140 PNOZ X3 Safety Relay
  • Pilz P1U-1NB Safety Relay
  • Pioneer PM3398B-6-1-3-E Power Supply
  • Pioneer Magnetics PM3326B-6-1-2-E Power Supply
  • Pioneer Magnetics HYRSP-1500-56 Power Supply
  • Pioneer Magnetics PM3398B-6-1-3-E Power Supply
  • Pioneer Magnetics PM3328BP-6 Power Supply
  • Potter & Brumfield SDAS-01-7Y2S1024 Relay
  • Powec PMP10.48 SIC High-Efficiency Rectifier
  • Powerbox PU200-31C Industrial DC-DC Converter
  • PIONEER MAGNETICS PM3398BP-6-1-3-E Power Supply Module
  • PIONEER MAGNETICS PM1253AL-6-3-Z03 Power Supply Module
  • Powerex PD411811 Rectifier Diode Module
  • Power-One MAP55-1024 AC-DC Power Supply
  • ProSoft MVI56-MDA4 ControlLogix Multi-Protocol
  • POLYSPED PRD2-200 Industrial Drive Module
  • P-OPEN P-OPEN-P4-150 PAC-OP150 Operator Panel
  • ABB Processor 958481321210 350211080320 Rugged CPU
  • ABB Processor 958481320201 350211080460 Safety CPU
  • ABB Processor 958481321200 350211080320 CPU Module
  • ABB Processor 958481321220 350211080320 CPU Module
  • ABB Processor 958481320100 350211080090 CPU Module
  • Pro-Face PL5901-T42-24V HMI Touch Panel
  • PROFIBUS PB3-VME-1-E V1.2.2 Interface Card
  • PROMESS 850040060P Force Displacement Monitor
  • PROSOFT AN-X2-AB-DHRIO DH+ and Remote I/O Gateway
  • PROSOFT RLX2-IFH24E Industrial Wireless Radio Module
  • PROSOFT 5202-DFNT-MCM4 DF1 to EtherNet/IP Gateway
  • PROSOFT PLX35-NB2 EtherNet/IP to Modbus TCP Gateway
  • ProSoft 5201-MNET-MCM-WEB Modbus TCP/Serial Gateway
  • ProSoft 5304-MBP-PDPMV1 Modbus Plus to PROFIBUS DP Master
  • ProSoft 5302-MBP-MCM4 Modbus Plus to Modbus Master/Slave
  • ProSoft 5301-MBP-DH485 Modbus Plus to DH485 Gateway
  • ProSoft 6104-WA-PDPM Wireless PROFIBUS DP Master
  • ProSoft MVI56-LTQ ControlLogix Limitorque Master
  • Prosoft 5304-MBP-PDPM PROFIBUS Master Module
  • Prosoft 1452-25M Relay Output Module
  • Prosoft MVI56-MNETR Modbus TCP/IP Module
  • Prosoft MVI69L-MBS Modbus Serial Module
  • Prosoft PLX32-EIP-SIE Ethernet Gateway
  • Prosoft MVI56-PDPS PROFIBUS DP Slave Module
  • Prosoft PMF1327205 Gateway Module
  • Prosoft PMF1216D61 FOUNDATION Fieldbus Module
  • PROSOFT MVI56-GSC Generic Serial Communication Module
  • PROSOFT 5601-RIO-MCM Remote I/O Communication Module
  • PROSOFT 1454-9F Communication Interface Module
  • PROTECH SYSTEMS PBI-6SA Industrial Single Board Computer
  • PRSTECH DMP10.24-20 DIN-Rail Power Supply
  • PRT PSA300R-81 Industrial Power Supply Module
  • PULS SLA8.100 AS-Interface Power Supply
  • QSI QTERM-K65 Industrial Operator Interface
  • R-2528Z R-2528Z Industrial Specialized Component
  • Radisys SBC486DX66 Single Board Computer
  • Radisys EPC-5 with EXM-13 Embedded System
  • Radisys EPC-16 Embedded Computer
  • Ramix PMC676TX PMC Ethernet Adapter
  • Ramix PMC008A PMC-to-VME Adapter
  • Ramix PMC237C-008EMI PMC Carrier
  • Ramix PMC661J PMC Carrier Board
  • Renata CR2450N Lithium Battery
  • Renault Circuit CU-8593-IND.A Control Module
  • Reotron 567LH-DP24 Voltage Regulator
  • RIFA IC693PWR321U GE Fanuc Series 90-30 Power Supply
  • RKC REX-B871NN-CS1B Intelligent Controller
  • RKC B871-RCU Digital Temperature Control Unit