2017121;The coke-oven-gas-to-methanol (CGTM) process is one of the most important coal-to-chemical processes. However, it suffers from ineffective hydrogen utilization, limiting
111;Substantial semi-coke has been produced through the industrialized low-temperature pyrolysis process, which has great potential as an alternative fuel for pulverized
Pulverized Coal Injection (PCI) using the dense-flow method. The Küttner developed and perfected dense-flow method offers several advantages over a lower-density system. Higher
610;LFC process is designed and developed by the United States. The coal is dried and retorted into semi coke by inert gas heat carrier in two steps in two rotary furnaces of
Pulverized coal injection is an essential instrument for modern blast furnace ironmaking. The benefits of reducing coke consumption and increasing production are recognized by the
Pulverized coal injection was developed in the 19th century, but was not implemented industrially until the 1970s. Rises in the cost of coke due to increased global demand and thus more
Metallurgical coke is produced by the destructive distillation of coal in coke ovens. Prepared coal is heated in an oxygen-free atmosphere (–coked–) until most volatile components in the coal
Pulverized coal injection was developed in the 19th century, but was not implemented industrially until the 1970s. Rises in the cost of coke due to increased global demand and thus more
1225;As the world''s largest coke producing country, China produces approximately 471 million tons of coke, and the production of coke-oven gas (COG), a by-product of the coal
20171115;There is considerable pulverized coke (PC) by-product in coking plant, which is excluded to be supplied to metallurgical industries because of its improper sizes, and thus is of
lowering of the coke:iron ratio used in the blast furnace (e. g., increased use of pulverized coal injection). There were 18 coke plants operating in the U. S. in 2007. 12.2.1 Process
pulverize:()(), 。。
215;A new scheme of pulverized coke (PC) chemical looping combustion (CLC) On the other hand, the metallurgical industry continuously depends on coal coking process, in
2017121;The coke-oven-gas-to-methanol (CGTM) process is one of the most important coal-to-chemical processes. However, it suffers from ineffective hydrogen utilization, limiting
916;In this study, pinch analysis is used to design the heat exchanger network (HEN) of pulverized coke (PC) chemical looping gasification coupled with coke-oven gas (COG) to
115;As the world’s largest coke producer with about 471 million tons of coke annually, China produces nearly 210 billion m 3 of COG as a by-product [6]. COG is a rich
Pulverized Coal Injection (PCI) using the dense-flow method. The Küttner developed and perfected dense-flow method offers several advantages over a lower-density system. Higher
201287;Li et al. 3 produced CaC 2 from pulverized coke and CaO at 1750°C by using an autothermal method. They were also successful in producing CaC 2 from fine biochars and
2024115;Hydrogen-rich gas injection is a promising technology to reduce the carbon emission from blast furnace ironmaking process. To compare the behavior of coke oven gas
Pulverized coal injection is an essential instrument for modern blast furnace ironmaking. The benefits of reducing coke consumption and increasing production are recognized by the
2020415;The optimal carbon and hydrogen balance for methanol production from coke oven gas and Linz-Donawitz gas: Process development and techno-economic analysis. Author
610;LFC process is designed and developed by the United States. The coal is dried and retorted into semi coke by inert gas heat carrier in two steps in two rotary furnaces of
Nevertheless, from a holistic perspective of the entire steel production process, the substitution of biochar for pulverized coal and coke in steel production can still result in cost reduction. (1)
20171215;As the penetration of CDQ technology in China is 36% in 2014 [2], the coke production process mainly uses CWQ technology and is characterized by significant heat
2020415;The optimal carbon and hydrogen balance for methanol production from coke oven gas and Linz-Donawitz gas: Process development and techno-economic analysis. Author