Nitric oxide absorption by hydrogen peroxide in airlift reactor: a study using response surface methodology

被引:0
作者
A. D. Bhanarkar
R. K. Gupta
R. B. Biniwale
S. M. Tamhane
机构
[1] National Environmental Engineering Research Institute,Air Pollution Control Division
[2] (Council of Scientific and Industrial Research),Environmental Materials Division
[3] National Environmental Engineering Research Institute,undefined
[4] (Council of Scientific and Industrial Research),undefined
来源
International Journal of Environmental Science and Technology | 2014年 / 11卷
关键词
Nitric oxide absorption; Response surface methodology; Box–Behnken experimental design; Hydrogen peroxide; Optimisation;
D O I
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学科分类号
摘要
Absorption of nitric oxide from nitric oxide /air mixture in hydrogen peroxide solution has been studied on bench scale internal loop airlift reactor. The objective of this investigation was to study the performance of nitric oxide absorption in hydrogen peroxide solution in the airlift reactor and to explore/determine the optimum conditions using response surface methodology. A Box–Behnken model has been employed as an experimental design. The effect of three independent variables—namely nitric oxide gas velocity, 0.02–0.11 m/s; nitric oxide gas concentration, 300–3,000 ppm and hydrogen peroxide concentration, 0.25–2.5 %—has been studied on the absorption of nitric oxide in aqueous hydrogen peroxide in the semi-batch mode of experiments. The optimal conditions for parameters were found to be nitric oxide gas velocity, 0.02 m/s; nitric oxide gas concentration, 2,246 ppm and hydrogen peroxide concentration, 2.1 %. Under these conditions, the experimental nitric oxide absorption efficiency was observed to be ~65 %. The proposed model equation using response surface methodology has shown good agreement with the experimental data, with a correlation coefficient (R2) of 0.983. The results showed that optimised conditions could be used for the efficient absorption of nitric oxide in the flue gas emanating from industries.
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页码:1537 / 1548
页数:11
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  • [1] Ahmad AL(2005)Optimization of coagulation-flocculation process for palm oil mill effluent using response surface methodology Environ Sci Technol 39 2828-2834
  • [2] Ismail S(2006)Response surface optimization of the removal of nickel from aqueous solution by cone biomass of Bioresour Technol 97 1761-1765
  • [3] Bhatia S(2005)Gas–liquid mass transfer in a novel forced circulation loop reactor Chem Eng J 112 73-80
  • [4] Can MY(2008)Assessment of the influence factors on in vitro testing of nasal sprays using Box–Behnken experimental design Euro J Pharm Sci 35 417-426
  • [5] Kaya Y(2005)Experimental study on the hydrodynamics and mass transfer characteristics of ultrasonic loop airlift reactor Can J Chem Eng 83 204-211
  • [6] Algur OF(2006)Modeling of batch phenol biodegradation in internal loop airlift bioreactor with gas recirculation by Chem Eng Sci 61 3463-3475
  • [7] Fadavi A(2006)Simultaneous removal of SO J Hazard Mater B 135 412-417
  • [8] Chisti Y(1996) and NO by wet scrubbing using aqueous chlorine dioxide solution J Air Waste Manage Assoc 46 127-133
  • [9] Guo C(2011)Control of nitrogen oxide emissions by hydrogen peroxide enhanced gas-phase oxidation of nitric oxide J Supercrit Fluids 55 944-948
  • [10] Stine KJ(2011)Optimization of process variables for essential oil components from Satureja hortensis by supercritical fluid extraction using Box–Behnken experimental design Mater Design 32 3586-3593