Welcome to the Industrial Automation website!

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

Construction of comprehensive treatment of mine solid waste

来源: | 作者:佚名 | 发布时间 :2023-11-17 | 691 次浏览: | Share:


3. Backfill the mined-out area with tailings. The tailing is fine and uniform in size. It has the advantages of convenient transportation, no processing and easy cementation when used as filling material in underground stope. The backfilling of tailings can greatly reduce the footprint. Conventional hydraulic filling (including high-concentration filling) uses graded coarse tailings. As a filler; The all-tailing paste filling technology developed in recent years has a remarkable effect on reducing or eliminating tailing pollution to the surface or underground environment. Waste rock is used as underground filling: one is direct backfill, the waste rock in the upper middle section is directly poured into the goaf in the lower middle section, most mines have adopted this backfill method; The other method is to lift the waste rock to the surface, carry out appropriate crushing processing, and mix the tailings and cement to backfill the goaf. This method is safe, but the processing cost is high. In Zhaoyuan Gold Mine and Jiaojia gold mine in Shandong province, China, the method of backfilling gob with mixed cement is adopted.

4. Other uses of tailings. There are some trace elements required by plants in the tailings, and the tailings can be directly processed as micro-fertilizer, or used as a soil amendment. For example, potassium, manganese, phosphorus, zinc, tin and other components in the tailings may often be micronutrient components of plants. The door tailing contains calcite, feldspar or alum salt, which can produce flocculant and collector of industrial sewage. Granodiorite tailing to produce flocculant or water glass is widely used in industry. In addition, the tailings can also be used as pesticides for agricultural production.

5. Start from the source, carry out comprehensive utilization of resources, and reduce the production of solid waste. Start from the source, carry out the comprehensive utilization of primary resources to reduce the production of solid waste, especially the production of fine tailings. It is an effective and economical method. Therefore, in the process design and production practice, in addition to improving the recovery rate of the main elements in the ore, it is also necessary to consider the comprehensive recovery of the associated metal elements and non-gold elements to avoid the tail project behind the main process. For the composite polymetallic ore whose comprehensive recovery technology is not mature, the resource reserve method can be adopted to be exploited when the conditions are mature to avoid the waste of resources.


In fact, the comprehensive treatment of mine solid waste can not be completed by enterprises on the one hand, but also requires efforts from all aspects. First, we must adhere to the principle of developing mineral resources under protection and protecting them during development, raise the people's awareness of resources and the environment, and integrate environmental protection into the whole process of resource development and utilization; The second is to incorporate the pollution prevention and control of mine solid waste into the overall planning of comprehensive remediation of mine ecological environment, guided by the principles of ecology and ecological economics, to coordinate resource development, comprehensive utilization of solid waste and pollution prevention, to economic and social development and environmental protection and construction of mining areas as objects, through unified planning and comprehensive construction, to achieve ecological construction, environmental construction and mining areas Coordinated development of economic construction; The third is to adapt to local conditions, according to the actual situation of each mine, adopt a reasonable way to comprehensively control the environmental pollution caused by solid waste, such as the reclamation and greening of solid waste dumps, the suppression of tailings pond dust, and the treatment of acid water discharged by solid waste. In a word, I believe that through the efforts of all parties the solid waste from mines can be well managed.


Over the years, especially in recent years, people have realized that tailings treatment and disposal technology is a worldwide problem, the whole tail overall utilization technology has made progress, no waste or less waste mining technology of mines continue to emerge, the use of tailings to make building materials production products are increasingly recognized by the society, become the bright spot of new productivity, the development of non-mineral mining industry is increasingly trapped around the mine solid waste generation The characteristics, combined with the market needs to develop new products, high value-added products are becoming the pursuit of the hot spot, the comprehensive utilization of solid waste in China has a certain technical basis, we should follow the focus of solid waste resources industrialization, select waste composite materials, tailings glass-ceramics, new lightweight building materials and useful minerals and metal extraction and other products technology, the establishment of batch Representative industrial demonstration projects with high technical starting point, significant comprehensive benefits and able to reach a certain scale, gradually form applicable and advanced complete sets of resource-based equipment and processes, and establish complete management methods and technical standards; According to the requirements of resource utilization, minimum quantification and harmless management, a management system for the overall utilization of mine tailings should be established to promote the industrialization of the overall utilization of mine solid waste. Mining enterprises should also further emancipate their minds, establish a solid waste management and operation mechanism that is in line with the market economy, raise funds in many ways, realize enterprise management, take the road of industrialization, and strive to practice the "three represents", develop our country's mining economy and improve our mining environment.

  • REXRTOH VT-HNC100-1-22/W-08-C-0 Industrial Touch Monitor
  • Rexroth MSK060C-0600-NN-S1-UP1-NNNN IndraDyn S Servo Motor
  • REXRTOH VT3024 Industrial Monitor
  • Rexroth MHD041B-144-PG1-UN Synchronous Servo Motor
  • Rexroth VT-HNC100-1-23/W-08-S-0 Digital Axis Control
  • Rexroth VT-HNC100-1-23/M-08-P-0 Controller
  • REXRTOH VT-HNC100-1-22/W-08-0-0 | Hydraulic Valve Block Assembly
  • Rexroth 4WE6Y62/EG24N9K4 + HSZ10-26916-AA/G24N9K4M01 Assembly
  • Rexroth MHD095C-058-NG1-RN Hydraulic Motor
  • Rexroth 4WE6Y62/EG24N9K4 + HSZ10-26916-AA/G24N9K4M01 Assembly
  • Rexroth SYHNC100-NIB-2X/W-24-P-D-E23-A012 Controller
  • REXRTOH BTV04.2GN-FW | Bus Terminal Valve with PROFINET
  • Rexroth BGR DKC02.3-LK SCK02/01 ECODRIVE3 Control Assembly
  • Rexroth MKD025B-144-KG1-UN Servo Motor
  • REXRTOH R901325866+R900775346+R901273425A | Drive System Component Set
  • Rexroth CSH01.1C-SE-EN2-NNN-NNN-NN-S-XP-FW Drive Controller
  • REXRTOH DDS2.1W200-D | Digital Servo Drive
  • Rexroth VT3002-2X/48F Card Holder for Proportional Amplifiers
  • Rexroth VDP40.2BIN-G4-PS-NN Proportional Valve
  • REXRTOH MSK070D-0450-NN-M1-UP1-NSNN Servo Motor
  • Rexroth MSK070C-0150-NN-S1-UG0-NNNN IndraDyn S Servo Motor
  • Rexroth MSK050C-0600-NN-M1-UP1-NSNN Servo Motor
  • Rexroth MSK030C-0900-NN-M1-UP1-NSNN Servo Motor
  • Rexroth TV 3000HT PUMF Hydraulic Pump Module
  • REXRTOH R911259395 | Drive System Control Module
  • Rexroth VT-VSPA1-1-11 Proportional Amplifier Card
  • Rexroth VT3006S35R1 Proportional Valve Module
  • REXRTOH VT3006S34R5 Hydraulic Valve | Directional Control Valve
  • Rexroth VT3000S34-R5 Proportional Amplifier Card
  • Rexroth SL36 Servo Motor Controller
  • REXRTOH SE200 0608830123 | Inductive Proximity Sensor
  • Rexroth RAC 2.2-200-460-A00-W1 Main Spindle Drive Controller
  • Rexroth PSM01.1-FW Power Supply Module
  • REXRTOH PIC-6115 | Programmable Industrial Controller
  • Rexroth MDD112D-N030-N2M-130GA0 Digital AC Servo Motor
  • Rexroth HDS03.2-W075N Drive Controller Module
  • REXRTOH DKC03.3-040-7-FW Servo Drive | Digital Motion Controller
  • Rexroth DKC02.3-200-7-FW ECODRIVE3 Servo Drive Controller
  • Rexroth CSB01.1N-AN-ENS Control System Module
  • REXRTOH 0608830222 | Genuine Automation Component
  • Rexroth 0608830174 ErgoSpin Tightening System Control Module
  • Rexroth 0608820103 Industrial Hydraulic Control Component
  • REXRTOH 0608820069 Industrial Automation Component
  • Rexroth 0608800048 ErgoSpin Tightening System Control Module
  • Rexroth 0608801006 Industrial Hydraulic Control Component
  • REXRTOH SYHNC100-NIB-24-P-D-E23-A012 Encoder | Synchronous Serial Interface
  • Rexroth 0608720040 ErgoSpin Tightening System Control Module
  • REXRTOH SYHNC100-NIB-2X/W-24-P-D-E23-A012 Controller
  • ABB CP555 1SBP260179R1001 HMI Operator Terminal
  • HIMA K9212 Fan Assembly | Safety System Cooling Unit
  • WATLOW CLS208 Digital Temperature Controller
  • Watlow CLS2163C1-110200000-CLS204204-C10000AA-CLS208208-C10000AE Multi-Loop PID Controllers
  • WATLOW PPC-TB50 Power Controller
  • WATLOW PPC-TB50 30280-00 Temperature Controller
  • Watlow NLS300-CIM316 Communication Interface Module
  • WATLOW MLS300 Limit Controller
  • WATLOW CAS 16CLS/CAS Temperature Controller
  • Watlow CAS200 CLS216 16-Loop Thermal Controller Module
  • WATLOW CLS208 C10000CP Power Controller
  • WATLOW ANAFAZE LLS200212 CLS208 Temperature Control System
  • Watlow ANAFZE PPC-TB50 CLS208 Multi-Loop Controller
  • WATLOW ANAFZE 997D-11CC-JURG Power Controller
  • WATLOW ANAFAZE PPC-TB50 Temperature Controller
  • ABB SUE3000 1VCF750090R0804 High-Speed Transfer Device
  • ABB TET106 11355-0-6050000 Temperature Module
  • ABB PPD512 A10-15000 Power Panel Display
  • ABB PPD113B01 3BHE023784R1023 AC 800PEC Control Module
  • ABB PFEA113-65 Tension Controller 3BSE050092R65
  • ABB PFEA112-20 3BSE050091R20 Fieldbus Adapter Module
  • ABB PFEA111-65 3BSE050091R65 Tension Electronics PFEA111
  • ABB PFEA111-65 Tension Controller 3BSE050090R65
  • ABB PDD500A101 Operator Display Panel | Industrial HMI Interface
  • ABB KP2500 Process Control System Controller
  • ABB CP405 A0 Operator Panel 1SAP500405R0001
  • ABB AX411/50001 Digital Input Module
  • ABB 500TRM02 1MRB150011R1 Procontrol P13 Bus Terminal Module
  • ABB 500TTM02 Temperature Module 1MB150021R0116
  • ABB 500TRM02 1MRB150011R0001 Terminating Resistor Module
  • ABB 500SCM01 1MRE450004R1 Control Module
  • ABB 500SCM01 1MRB200059/C 1MRB150044R0001 Station Control Module
  • ABB 500SCM01 1MRB150004R00011MRB200059/C Control Module
  • ABB 500PSM03 1MRB 150038 R1 894-030375D 136-011100H Power System Module
  • ABB 500PSM03 1MRB150038 R1 894-030375D 136-011100H Power Supply Module
  • ABB 500PSM02 1MRB150015R1 AD-272.100.20-01 AZ:C Power Supply Module
  • ABB 500PB101 1MRB178009R00011MRB200064/C Power Supply Module
  • ABB 500MTM02 1MRK001967-AA 1HDF 930512 X010 Module
  • ABB 500MTM02 1MRB150020R1102 1HDF 930512 X010 Motor Module
  • ABB 500MTM02 1MRB150020R0712 Touch Module
  • ABB 500MBA02 1MRB150003R0003 1MRB200053/M Bus Coupling Module
  • ABB 500MBA01 1MRB150003R00021MRB200053/L Motor Control Module
  • ABB 500MBA02 1MRB150003R000/B Analog Output Module
  • ABB 500CSP04 HE401314/0002 1MRB150051R2 Control Processor Module
  • ABB 500CPU05 1MRB150081R1/E CPU Module
  • ABB 500CPU03 1HDF700003R5122 Central Processing Unit
  • ABB 500CMP04 HE401314/0001 1MRB150051R1 Central Processor Module
  • ABB 500CIM05 1MRB150077R1/B PROFIBUS DP Interface Module
  • ABB 500BI001 1MRB150005R0001 1MRB200060/E Binary Input Module
  • ABB 500BI001 1MRB150005R1/J Procontrol P13 Bus Interface Module
  • ABB 500BOM01 1MRB150023R0002 Binary Output Module
  • ABB 500BIM01 Binary Input Module
  • ABB 500BIM01 1MRB150024R0002 Binary Input Module
  • ABB 500AIM02 1MRB150022R001 Analog Input Module
  • ABB 500AIM02 1MRB150022 R0002 Analog Input Module
  • ABB 500AIM02 Analog Input Module
  • ABB 3BHE050077R0102 UNS0881b-PV2 Control Module
  • ABB 3BHE023784R1023 PP D113 B01-10-150000 Power Controller
  • ABB 216EA62 1MRB150083R1/F 1MRB178066R1/F Protection and Control Module
  • ABB 1SVR011718R2500 CM-ENS Time Relay
  • REXRTOH VT-HNC100-2-30/P-I-00/G02 Digital Servo Drive
  • REXROTH SYHNC100-NIB-24-P Hydraulic Controller
  • REXROTH SYHNC100-NIB-2X/W-24-P-D-E23-A012 R900978416 Hydraulic System Digital Control
  • REXRTOH VT-HNC100-2-30/P-I-00/G02 Servo Drive
  • REXROTH SYHNC100-NIB-22A Hydraulic Controller
  • REXROTH SYHNC100-NIB-23/W-24-P-D-E23-A012 Digital Hydraulic Control Unit
  • REXRTOH SYHNC100-NIB-22A/W-24-P-D-E24-A012 Synchronous Servo Motor
  • REXROTH VT-MVTW-1-16/D Hydraulic Valve Amplifier
  • REXROTH VTS0234-47/AP025 Control Module
  • REXRTOH SYHNC100-NIB-23/W-24-P-D-E23-A012 Synchronous Motor
  • SIEMENS 6ES7952-0KH00-0AA0 SIMATIC S7 RAM Memory Card
  • SIEMENS 6ES7416-3XL00-0AB0 SIMATIC S7-400 CPU 416-3 PLC Module
  • SIEMENS 6ES7626-2DG04-0AE3 Industrial Automation Module
  • SIEMENS 6ES7414-3XJ04-0AB0 Central Processing Unit
  • SIEMENS 6ES7414-3XM05-0AB0 PLC CPU Module
  • SIEMENS 6ES7414-3XJ00-0AB0 CPU 414-3
  • SIEMENS 6ES7412-2XJ05-0AB0 SIMATIC S7-400 CPU 412-2 Central Processing Unit Module
  • SIEMENS 6ES7318-3EL00-0AB0 CPU 318 Controller
  • SIEMENS 6ES7193-1CL10-0XA0 Terminal Module
  • SIEMENS 6ES7193-0CB20-0XA0 ET 200S Base Unit