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The view of technological innovation in coal industry under the vision of carbon neutralization 被引量:14
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作者 Quansheng Li 《International Journal of Coal Science & Technology》 EI CAS CSCD 2021年第6期1197-1207,共11页
This paper analyzed the current situation and development trends of energy consumption and carbon emissions,and the current situation and development trend of coal consumption in China.In the context of recently estab... This paper analyzed the current situation and development trends of energy consumption and carbon emissions,and the current situation and development trend of coal consumption in China.In the context of recently established carbon peak and carbon neutralization targets,this paper put forward the main problems associated with the green and low-carbon development and utilization of coal.Five key technological innovation directions in mining were proposed,including green coal development,intelligent and efficient mining,low-carbon utilization and conversion of coal,energy conservation and emission reduction,carbon capture,utilization and storage(CCUS).Focusing on the above technological innovation directions,it is suggested to carry out three basic theories,including the theory of green efficient intelligent mining,clean and low-carbon utilization and transformation of coal,and CCUS.Meanwhile,it is proposed to develop 12 key technologies,including green coal mining and ecological environment protection,efficient coal mining and intelligent mine construction,key technologies and equipment for efficient coal processing,underground coal gasification and mining,ultra-high parameter and ultra-supercritical power generation technology,intelligent and flexible coal-fired power generation technology,new power cycle coal-fired power generation technology,the development of coal-based special fuels,coal-based bulk and specialty chemicals,energy conservation and consumption reduction,large-scale and low-cost carbon capture,CO_(2) utilization and storage.Finally,necessary measures from the governmental perspective were also proposed. 展开更多
关键词 Carbon neutralization Technological innovation Clean utilization of coal Clean transformation of coal CCUS
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Water protection in the western semiarid coal mining regions of China: A case study 被引量:5
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作者 Huang Hanfu Wang Changshen +1 位作者 Bai Haibo Wang Zihe 《International Journal of Mining Science and Technology》 SCIE EI 2012年第5期719-723,共5页
The coal industry in China has been moving from the semiarid eastern to the drier western regions since the beginning of this century.Water protection is of the utmost concern for coal mining in these regions.Lu'a... The coal industry in China has been moving from the semiarid eastern to the drier western regions since the beginning of this century.Water protection is of the utmost concern for coal mining in these regions.Lu'an,as one of the state coal mining bases in China,has been seeing increasingly heavier pressure for the protection of water resources.This article considers Lu'an as an example and describes the ways these concerns may be alleviated.High mine-water utilization rates have effectively reduced wasting of water and,consequently,have reduced water demand.Using the top layers of the Ordavician as aquifuge barriers can prevent floor karst water inrush into the longwall face and can protect the regional Ordovician karst water resources at the same time.The strength of the overlying Quaternary clay can protect against roof collapse and has successfully preserved the Quaternary porous water resource. 展开更多
关键词 Water-protection coal mining Mine water utilization rate Aquifuge barrier Arid region
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Lump coal used for COREX and a new method for detecting lump coal's pyrolysis characteristics
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作者 WANG Yuming 《Baosteel Technical Research》 CAS 2013年第2期30-34,共5页
The COREX process is a unique industrialized smelting reduction technology for iron-making presently in the world. One of its striking characteristics is its ability to directly utilize lump coal as its main fuel. The... The COREX process is a unique industrialized smelting reduction technology for iron-making presently in the world. One of its striking characteristics is its ability to directly utilize lump coal as its main fuel. Therefore, the COREX process uses little,or no coke at all. The requirements on lump coal for the COREX process were given in this paper. In order to reduce the coke consumption and give play to the advantages of directly using lump coal ,the appropriate ratio of coke to lump coal needs to be determined. This paper also summerized several advanced methods of using powdered coal generated by the transporting, loading and unloading of lump coal. In order to solve the lack of coal types for COREX and observe the cracking and devolatilization action of lump coal in the melter-gasifier, an experimental device and a new method were proposed to test the cracking and devolatilization characteristics of lump coal. By means of the new method, the devolatilization and cracking behaviors of lump coal can be investigated, which is helpful to the selection of lump coal for the COREX process. 展开更多
关键词 COREX process lump coal utilization of powdered coal thermal cracking
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Benefaction from Carbonation of Flue Gas CO_(2) as Coal Mining Filling
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作者 Yildirim I.Tosun 《Geomaterials》 2014年第2期64-72,共9页
CO2 capturing, transport and sequestration by pressurized water dissolution and reacting by natural alkali lime and magnesia in coal fly ash or other sources become an industrial advantageous sequestration option resu... CO2 capturing, transport and sequestration by pressurized water dissolution and reacting by natural alkali lime and magnesia in coal fly ash or other sources become an industrial advantageous sequestration option resulting in green waste solutions or solid fines. Mg and Ca containing minerals are reacting with CO2 to form carbonates. Various types of fly ash materials may react with CO2 to form carbonate regarding ash composition and reaction parameters. Mineral sequestration of CO2 will also allow using the products in cement industry or as cement material in constructions with low cost. This paper discussed progress on coal mining filling by carbonation method using coal fly ash of Soma, Yatagan, Afsin Elbistan Power Stations. Other filler materials containing coal mine waste shale, fly ashes and foam concrete, and additives were searched for pretreatment methods to enhance cement reactivity;and in analyzing the structural changes to identify reaction paths and potential barriers. 展开更多
关键词 Carbon Sequestration coal Fly Ash utilization Mineral Carbonation MINERALIZATION Fly Ash
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CLEAN PRODUCTION AND SMELTING REDUCTION TECHNOLOGY
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作者 Wang Lixin, Xu Zhihong and Yang Zhangyuan (Laboratory of Computer Chemistry (LCC), Institute of Chemical Metallurgy, Chineses Academy of Sciences, Beijing 100080) 《化工学报》 EI CAS CSCD 北大核心 2000年第S1期159-162,共4页
Clean Production is the best method for iron-steel making industry to eliminate pollution thoroughly. In order to achieve this object, smelting reduction technology should play the key role. Furthermore, process integ... Clean Production is the best method for iron-steel making industry to eliminate pollution thoroughly. In order to achieve this object, smelting reduction technology should play the key role. Furthermore, process integration method can be used to solve the problem of residual gas utilization by integrating smelting reduction process with direct reduced iron unit, gasoline, methanol or dimethyl ether synthesis unit, etc. A new smelting reduction process has been proposed which can be constructed on the present plant site. Since this process can directly treat the lump coal and iron ore fines, it reduces st6ps necessary in traditional blast furnace process and Corex smelting reduction process. 展开更多
关键词 Clean production Smelting reduction Process integration Multi-layer fluidized moving bed coal gas utilization Blast furnace
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COMPREHENSIVE UTILIZATION OF COAL ASH How To use foe 740 Mt of fly ash produced in China's coal fired power plants in 1996 is a major proiect
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作者 Wang Zhuokun(Department of Safety and ansportation , The National Electricity Company ) 《China Coal》 1997年第S1期40-41,共2页
关键词 COMPREHENSIVE utilization OF coal ASH How To use foe 740 Mt of fly ash produced in China’s coal fired power plants in 1996 is a major proiect
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Technological innovations on direct carbon mitigation by ordered energy conversion and full resource utilization
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作者 Liejin Guo Zhisong Ou +6 位作者 Ya Liu Zhiwei Ge Hui Jin Guobiao Ou Mengmeng Song Zihao Jiao Wenhao Jing 《Carbon Neutrality》 2022年第1期598-619,共22页
Coal consumption leads to over 15 billion tons of global CO_(2) emissions annually,which will continue at a considerable intensity in the foreseeable future.To remove the huge amount of CO_(2),a practically feasible w... Coal consumption leads to over 15 billion tons of global CO_(2) emissions annually,which will continue at a considerable intensity in the foreseeable future.To remove the huge amount of CO_(2),a practically feasible way of direct carbon mitigation,instead of capturing that from dilute tail gases,should be developed;as intended,we developed two innovative supporting technologies,of which the status,strengths,applications,and perspective are discussed in this paper.One is supercritical water gasification-based coal/biomass utilization technology,which orderly converts chemical energy of coal and low-grade heat into hydrogen energy,and can achieve poly-generation of steam,heat,hydrogen,power,pure CO_(2),and minerals.The other one is the renewables-powered CO_(2) reduction techniques,which uses CO_(2) as the resource for carbon-based fuel production.When combining the above two technical loops,one can achieve a full resource utilization and zero CO_(2) emission,making it a practically feasible way for China and global countries to achieve carbon neutrality while creating substantial domestic benefits of economic growth,competitiveness,well-beings,and new industries. 展开更多
关键词 Carbon neutrality coal utilization Direct carbon mitigation Supercritical water gasification Renewable energy CO_(2)reduction
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The Major Root Causes of Smog in China and Technologies and Solutions to Reduce It 被引量:1
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作者 Ke Liu 《Frontiers of Engineering Management》 2016年第4期343-348,共6页
This paper discusses the two major root causes of smog in China.The first one is the distributed coal combustion in many small and medium sized boilers which have no emission control systems installed.To resolve this ... This paper discusses the two major root causes of smog in China.The first one is the distributed coal combustion in many small and medium sized boilers which have no emission control systems installed.To resolve this problem,there are several ways,such as increasing the centralized coal combustion for heat and power cogeneration;or converting coal to SNG in areas where there is enough water resource and removing the pollutants of the coal in the centralized coal to SNG plant,or refining the coal and making it cleaner first before combustion.The second major cause of smog is the low quality diesel and outdated diesel engines used in China.To solve this problem,there are some ways,such as improving the diesel quality to meet the national V standard,and meanwhile,enhancing the law enforcement to eliminate these outdated diesel engines that do not meet the national emission standards;in addition,combusting cleaner and cheaper fuel such as methanol or DME in the diesel engines is also an option for certain areas where there are abundant alternative fuels such as methanol to replace diesel. 展开更多
关键词 SMOG emissions coal refining coal utilization SOLUTIONS
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