2014年1月19日星期日

Something about lihuachemical.com

Product Overview
Inert ceramic balls with high strength, high chemical and thermal stability properties, inert ceramic balls can be high temperature, high pressure and corrosive acid, alkali , salt and various organic solvents , inert ceramic balls are widely used in petroleum , chemical, fertilizer, natural gas and environmental protection industries. Inert ceramic balls as the catalyst in the reactor and the cover of the support material, into the buffer liquid and the gas in the reactor catalyst impact , protecting the catalyst in the reactor and improve the distribution of liquid and gas.
Product features
Inert ceramic ball has high strength, high chemical stability, thermal stability and resistance to high temperature, high pressure and acid, alkali, salt and the characteristics of various organic solvent corrosion.
Range of application
Inert ceramic balls are widely used in petroleum, chemical industry, fertilizer industry, natural gas and environmental protection and other industries.
Ammonia decomposition catalyst by the high temperature roasting MgO style carrier, load active component Ni and other growth substance composition, has the very high catalytic activity, high mechanical strength, excellent heat resistance and resistance to coking properties, is mainly used in coke oven gas purification recovery unit in ammonia decomposition furnace, will all of NH3 and HCN in the coke oven gas and other toxic gases into N2 and H2 and CO2, effectively solves the problem of equipment corrosion and environment pollution in coke oven gas.
De-oxygenation catalyst takes precious metal as active component basis loading on activated alumina carrier, which is mainly used to remove oxygen from hydrogen gas, also for nitrogen, CO, CO2, Argon and inert gas.
Operation for hydrogen gas and Argon gas could be done under normal temperature while space velocity (3~10)×103 h1 and residual oxygen could be 0.2ppm. For synthesis gas, coal gas and coking dry gas, operation have to be done at temperature 110~140, pressure>0.1Mpa, space velocity (1~4)×103 h-1, and residual oxygen could be <1ppm




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