Thermal Decomposition Dew Point Method for Determining the Trace Moisture in Ultra-Purity Ammonia

Author:

Ma Xiao Xuan1,Li Zeng He1,Cai Tij Je2,Liu Ya Zhen2

Affiliation:

1. Beijing University of Chemical Technology

2. Pujiang Specialty Gases

Abstract

This article introduced a fast and stable method on measuring the batches of trace moisture in ultra-purity ammonia gas .This method is based on ammonia decomposited reaction ,which occurs completely and irreversibly when ammonia is passed over nickel catalyst at high temperatures. While the trace water wapor passes though the catalyst unchanged. And the moisture of ammonia may be determined by measuring the dew point of the steam of hydrogen and nitrogen produced by decomposition of ammonia,combined with the trace oxygen content measured by GC,the content of trace moisture in ultra-purity ammonia gas can be got. Contrasted with Cavity Ring-down Spectroscopy (CRDS) and Infrared Absorption Spectroscopy (IR),Thermal Decomposition Dew Point method (TDDP) has high accuracy,good repeatability, stability and environmentally friendly.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference10 articles.

1. Nationaltechnologyroadmapforsemiconductors(2006)http: /www. itrs. net/reports. html.

2. S. Suresh,S. Lourdudoss,G. Landgren,K. Baskar, Studies on the effect of ammonia flow rate induced defects in gallium nitride grown by MOCVD, Journal of Crystal Growth. 312 (2010) 3151–3155.

3. V.N. Bogomolov and T.M. Pavlova, Semiconductors. 29(1995) 826.

4. Sun FuNan, Feng, QingXiang, The Study and Production of Ultra-purityAmmonia, Low Temperature and Special Gas, 20(2002)25-31.

5. S. Suresh,S. Lourdudoss,G. Landgren,K. Baskar. Studies on the effect of ammonia flow rate induced defects in gallium nitride grown by MOCVD, Crystal Growth, 12 (2010) 3151–3155.

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