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September 2015 (published: 14.09.2015)
Number 3(22)
Home > Issue > Features energy saving technology and thermal-oxidative
deactivation of chlorinated wastes
Buryak I.V. , Rachmanov Y.A.
The basic parameters of dioxins in flue gases from waste incineration plants. The features of the technology of high-thermal-oxidative deactivation of chlorinated waste using methods of "wet" scrubbing in the application of the alkaline solution. Also presents methods of neutralization adsorption of dioxins using classic materials such as activated carbon mixed with calcium hydroxide and the use of modern materials such ADIOX®, and discussed in more detail the method of catalytic purification of exhaust gases from dioxins using fiberglass catalysts. The recommendations for the recovery of heat formed in the process used to obtain steam and hot water by using such methods as installing the recovery boiler and the plate heat exchanger.
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Keywords: chlorinated wastes, dioxins, thermo-oxidative decontamination, "wet" cleaning, adsorption, catalysis, recuperator
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License
UDC 623.459:351.753:66.045.12:504.3.054
Features energy saving technology and thermal-oxidative
deactivation of chlorinated wastes
The basic parameters of dioxins in flue gases from waste incineration plants. The features of the technology of high-thermal-oxidative deactivation of chlorinated waste using methods of "wet" scrubbing in the application of the alkaline solution. Also presents methods of neutralization adsorption of dioxins using classic materials such as activated carbon mixed with calcium hydroxide and the use of modern materials such ADIOX®, and discussed in more detail the method of catalytic purification of exhaust gases from dioxins using fiberglass catalysts. The recommendations for the recovery of heat formed in the process used to obtain steam and hot water by using such methods as installing the recovery boiler and the plate heat exchanger.
Read the full article
Keywords: chlorinated wastes, dioxins, thermo-oxidative decontamination, "wet" cleaning, adsorption, catalysis, recuperator