Abstract:
Disclosed is an apparatus and method for decomposing an ultra-low concentration of volatile organic compounds, which may effectively remove ultra-low concentration of volatile organic compounds by a batch process for separating ultra-low concentration of volatile organic compounds present in an indoor air or the like and oxidizing the corresponding volatile organic compounds at a low temperature. The apparatus includes a contaminated air source for supplying a contaminated air containing volatile organic compounds, two or more absorption/desorption modules connected to the contaminated air source in parallel, a heating device provided at a circumference of each absorption/desorption module, and an oxidation decomposing catalyst device for reacting volatile organic compounds discharging from the absorption/desorption modules with oxygen atoms (O*) in an activated state so that the volatile organic compounds are oxidized and decomposed, wherein each absorption/desorption module alternately performs an absorption process and a desorption process.
Abstract:
Provided are an apparatus and method for preparing a silica-titania catalyst. The apparatus for preparing a silica-titania catalyst, comprising: precursor supplying units; an oxygen supplying line; a reaction unit; and a recovering unit, wherein the precursor supplying units vaporize a silica precursor and titania precursor and supply them to the reaction unit, wherein the oxygen supplying line supplies an oxygen source to the reaction unit, wherein the reaction unit converts vaporizates of the silica precursor and titania precursor supplied from the precursor supplying units to produce a silica-titania catalyst, wherein the recovering unit cools, condenses and collects the silica-titania catalyst produced at the reaction unit, wherein the recovering unit comprises a cooler for cooling the silica-titania catalyst introduced from the reaction unit, and the cooler comprises a turbulence-forming section on a flow path of the silica-titania catalyst.