Environmental monitoring systems

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SCS-900D Waste Incineration Monitoring System

This is a multicomponent flue gas continuous monitoring and extraction system including high temperature sampling and analysis. The SCS900L uses the most advanced photometry technology and sample gas collection system. The system is highly reliable, has a long run-time, and low repair rate. It is especially suitable for situations with low concentration, high humidity, and when sample gases are dissolved in water. The gas composition analyzer is from the German Fodisch, which can simultaneously measure up to 10 gas parameters.

Applications

Monitoring of emission sources of pollution gases in industrial processes such as:

Exhaust gas concentration monitoring in combustion plants

Combustion optimization of small boilers

Monitoring & control of process management

Waste incinerator

Power plant (denitrification)

Metallurgy plant

Cement plant

Industrial waste gas

Papermaking plant

Glass plant

 

Features

·         The world’s first set of gas analyzers working in hot and moist conditions.

·         The modular design of the analyzers means each independent module can be replaced at site.

·         Each measuring component is respectively TUV certified for measurement of emissions.

·         Remote diagnosis of analysis system through a modem.

·         Analyzer composed of advanced components, passed pre-calibration for immediate use.

·         Less maintenance work and maintenance costs.

·         Automatic zero calibration, zero gas with air to reduce maintenance costs, and excellent stability and sensitivity of the zero point.

·         Completely eliminating the effect of cross-sensitivity in measurement of multi-component

·         Good performance to cost ratio.

  

Technical parameters

Measurement composition

Maximum 8 infrared gas components + O2 + TOC (optional)

TUV certification

TI Air, 13th,17th and 27th BlmSchV

TUV report

                  936/21203173/A

Measurement composition

Minimum range

Measurement principle

CO

075mg/m3

Respectively gas filter correlation

NO

0200mg/m3

Respectively gas filter correlation

NO2

0100mg/m3

Single-beam dual-wavelength

SO2

075mg/m3

Single-beam dual-wavelength

HCl

015mg/m3

Respectively gas filter correlation

NH3

030mg/m3

Respectively gas filter correlation

H2O

040Vol%

Single-beam dual-wavelength

CO2

020Vol%

Single-beam dual-wavelength

O2

025Vol%

Zirconium oxide

TOC, CnHm

015Vol%

FID