OPTIMASI LAJU ALIR MASSA DALAM PURIFIKASI PENDINGIN RGTT200K UNTUK PROSES KONVERSI KARBONMONOKSIDA

Authors

  • Sumijanto Pusat Teknologi dan Keselamatan Reaktor Nuklir, BATAN
  • Sriyono Pusat Teknologi dan Keselamatan Reaktor Nuklir, BATAN

DOI:

https://doi.org/10.17146/tdm.2016.18.1.2339

Keywords:

Carbonmonoxide, conversion, purification, mass flow rate, RGTT200K

Abstract

Carbonmonoxide is a species that is difficult to be separated from the reactor coolant helium because it has a relatively small molecular size.  So it needs a process of conversion from carbonmonoxide to carbondioxide. The rate of conversion of carbonmonoxide in the purification system is influenced by several parameters including concentration, temperature and mass flow rate. In this research, optimization of the mass flow rate in coolant purification of RGTT200K for carbonmonoxide conversion process was done. Optimization is carried out by using software Super Pro Designer. The rate of reduction of reactant species, the growth rate between the species and the species products in the conversion reactions equilibrium were analyzed to derive the mass flow rate optimization of purification for carbonmonoxide conversion process. The purpose of this study is to find  the mass flow rate of purification for the preparation of the basic design of the RGTT200K coolant helium purification system. The analysis showed that the helium mass flow rate of 0.6 kg/second resulted in an unoptimaconversion process. The optimal conversion process was reached at a mass flow rate of 1.2 kg/second. A flow rate of 3.6 kg/second – 12 kg/second resulted in an ineffective processFor supporting the basic design of the  RGTT200K helium purification system, the mass flow rate for carbonmonoxide conversion process is suggested to be1.2 kg/second .

 

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Published

2016-03-11

How to Cite

Sumijanto, & Sriyono. (2016). OPTIMASI LAJU ALIR MASSA DALAM PURIFIKASI PENDINGIN RGTT200K UNTUK PROSES KONVERSI KARBONMONOKSIDA. Jurnal Teknologi Reaktor Nuklir Tri Dasa Mega, 18(1), 11–20. https://doi.org/10.17146/tdm.2016.18.1.2339