Affiliation:
1. Chalmers University of Technology
2. Grontmij AB
Abstract
Corrosion/deposition field tests have been carried out in the superheater region of a commercial
waste-fired 75MW CFBC boiler using air cooled probes. The influence of material temperature
(450-500°C), flue gas temperature, temperature variations (i.e. thermal cycling) and additives to the
fuel (elemental sulphur and dolomite) on deposition and corrosion was studied. The results
presented here mainly consider the influence of sulphur additions to the fuel. The fuel was a
mixture of 50% household waste and 50% industrial waste. After exposure the samples were
analyzed by ESEM/EDX, XRD, AAS, FIB and IC. With no additional sulphur, alkali chlorides
made up a large part of the deposit/corrosion product layer and in some cases chromate (VI) was
detected. It is suggested that the chromate (VI) has formed by reaction of the protective oxide with
alkali chlorides in the deposit. Adding sulphur to the fuel changed the composition of the deposits,
alkali chlorides being largely replaced by alkali sulphates. No chromates(VI) were detected in the
sulphur-added runs. It is suggested that adding sulphur to the fuel may decrease fireside corrosion
because it changes the composition of the deposit. Alkali sulphates are much less corrosive than
alkali chlorides partly because they do not form chromate(VI).
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
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