Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6639701 | Fuel | 2013 | 13 Pages |
Abstract
The global demand for energy is constantly on the rise because of population explosion, rapid urbanization, and industrial growth. Existing energy resources are struggling to cope with the current energy requirements. Aside from exploring renewable energy alternatives, available energy resources must be utilized to their maximum potential. Coke oven gas (COG) is highly rated as a valuable by-product of coal carbonization to produce coke in the steel industry. Typically, a single ton of coke generates approximately 360Â m3 COG. China annually produces 70Â billion NÂ m3 COG; however, only 20% of the gas produced is utilized as fuel. Disposing COG without an effective recovery and efficient utilization is a serious waste of an energy resource and results in environmental pollution. COG is regarded as a potential feedstock for hydrogen separation, methane enrichment, and syn-gas and methanol production. It can also be effectively utilized to produce electricity and liquefied natural gas. The availability, properties, purification, and utilization of COG are reviewed in the current study. COG utilization routes are summarized in detail, with focus on some major industrial projects in China and other countries that are based on COG utilization technology.
Keywords
HCsDRIEAFSNGBTXPSACPOGHGCoGFTSGHGsCCPPbFGWGSRLNGBenzene, Toluene and xyleneCHPCOXS/CSOxSulfur oxidePartial oxidationCatalytic partial oxidationCombined Heat and PowerGross domestic productGDPpressure swing adsorptionFischer Tropsch SynthesisMethanol synthesisMethanationCalorific valueCombined cycle power plantHydrocarbonsWater–gas shift reactionBlast furnaceelectric arc furnaceBlast furnace gasSyn-gasSynthesis gasLiquefied natural gasSynthetic natural gascoke oven gasGreen house gasGreen house gases
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Chemical Engineering (General)
Authors
Rauf Razzaq, Chunshan Li, Suojiang Zhang,