Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Decomposition of Dioxins in Gas and Water Using Photocatalytic Silica-Gel

View through CrossRef
Dioxins are extremely toxic, and it is difficult to treat them with the conventional method. When irradiated by light, photocatalysts generate strong oxidative potential and decomposes almost all organic substances containing dioxins to water, carbon dioxide and others. Silica-gel has high adsorptive activity as well as large surface area, and it is transparent to ultraviolet light. Photocatalytic silica-gel was prepared by a dip coating method using TiO2 sol obtained by hydrolyzing titanium tetraisopropoxide on silica-gel bead (about 3mm in diameter) and heat-treated at 550°C. Since the surface area of the photocatalytic silica-gel is 300m2/g, the reaction area is large and allows the highly efficient decomposition of harmful organic substances, unpleasant odors and colored matters contained in waste water. The photocatalytic apparatus for decomposition of dioxins in emission gas from waste incinerators is composed of the catalyst layer consisting of 95dm3 photocatalytic silica-gel and 16 units of UV lamp. The photocatalytic apparatus was connected to the bypass line led from the outlet duct of cyclone, and the concentration of dioxins in the exhaust gas was measured. Decomposition test of dioxins in scrubber water was also performed using a photocatalytic apparatus with 150g photocatalytic silica-gel and 8 units of UV lamp. After 0.5dm3 of scrubber water containing dioxins was circulated in the photocatalytic apparatus for 1, 2 and 24 hour, each concentration of dioxins in the water was measured. As a result, the removal efficiency over 99% of dioxins in emission gas and scrubber water from waste incinerators has been obtained.
Trans Tech Publications, Ltd.
Title: Decomposition of Dioxins in Gas and Water Using Photocatalytic Silica-Gel
Description:
Dioxins are extremely toxic, and it is difficult to treat them with the conventional method.
When irradiated by light, photocatalysts generate strong oxidative potential and decomposes almost all organic substances containing dioxins to water, carbon dioxide and others.
Silica-gel has high adsorptive activity as well as large surface area, and it is transparent to ultraviolet light.
Photocatalytic silica-gel was prepared by a dip coating method using TiO2 sol obtained by hydrolyzing titanium tetraisopropoxide on silica-gel bead (about 3mm in diameter) and heat-treated at 550°C.
Since the surface area of the photocatalytic silica-gel is 300m2/g, the reaction area is large and allows the highly efficient decomposition of harmful organic substances, unpleasant odors and colored matters contained in waste water.
The photocatalytic apparatus for decomposition of dioxins in emission gas from waste incinerators is composed of the catalyst layer consisting of 95dm3 photocatalytic silica-gel and 16 units of UV lamp.
The photocatalytic apparatus was connected to the bypass line led from the outlet duct of cyclone, and the concentration of dioxins in the exhaust gas was measured.
Decomposition test of dioxins in scrubber water was also performed using a photocatalytic apparatus with 150g photocatalytic silica-gel and 8 units of UV lamp.
After 0.
5dm3 of scrubber water containing dioxins was circulated in the photocatalytic apparatus for 1, 2 and 24 hour, each concentration of dioxins in the water was measured.
As a result, the removal efficiency over 99% of dioxins in emission gas and scrubber water from waste incinerators has been obtained.

Related Results

A New IPR Curve Of Gas-Water Well In Gas Reservoirs Undergoing Simultaneous Water Production
A New IPR Curve Of Gas-Water Well In Gas Reservoirs Undergoing Simultaneous Water Production
Abstract Based on principle of mass conservation, this paper sets up a new mathematical model of gas-water two-phase underground percolation, and the model includ...
Controlling Undesirable Water by Applying a Composite of Nanosheet and Viscoelastic-Surfactant Based Foamed Gel
Controlling Undesirable Water by Applying a Composite of Nanosheet and Viscoelastic-Surfactant Based Foamed Gel
Abstract Excessive water production is one of the significant phenomena of reservoirs worldwide that influence oil production and costs. At the same time, a comprehe...
Gas Water Deliverability Considerations
Gas Water Deliverability Considerations
Abstract When natural gas from high pressure and temperature reservoir is produced, due to cooling of gas in wellbore tubing and in gas gathering pipelines, the a...
Liquid Loading of Horizontal Gas Wells in Changbei Gas Field
Liquid Loading of Horizontal Gas Wells in Changbei Gas Field
The Changbei gas field, which initially exhibited high gas-production performance, is dominated by large-displacement horizontal wells. With the decrease in reservoir pressure, the...
Analysis of Factors Affecting the Gel Point of Methanol-Water-Sodium Stearate Mixed Gel
Analysis of Factors Affecting the Gel Point of Methanol-Water-Sodium Stearate Mixed Gel
<div class="section abstract"><div class="htmlview paragraph">This study determined the gel point of methanol-water-sodium stearate mixed gels at va...

Back to Top