CFD-based investigation of NO x removal from industrial waste gas by selective catalytic reduction (SCR) and selective non-catalytic reduction (SNCR) process using NH3

选择性催化还原 催化作用 还原(数学) 过程(计算) 计算流体力学 化学 化学工程 工艺工程 材料科学 废物管理 工程类 有机化学 计算机科学 几何学 数学 操作系统 航空航天工程
作者
D. Subhas Bose,Kartik Chandra Ghanta,Abhiram Hens
出处
期刊:International Journal of Chemical Reactor Engineering [De Gruyter]
标识
DOI:10.1515/ijcre-2024-0033
摘要

Abstract The present study conducts a comparative analysis between selective catalytic reduction (SCR) using a Cu-zeolite catalyst and selective non-catalytic reduction (SNCR) for the removal of NO x from industrial waste gas. The primary objective of this investigation is to computationally explore the removal of NO x using NH 3 at various reactor conditions, along with the study of different hydrodynamic aspects. The study revealed the impact of different porosity of the catalyst (in SCR) and the number of baffles (in SNCR) on the reaction and fluid flow profile. Distinct geometries were employed to model each process, incorporating a turbulent model and kinetic parameters with an eddy-dissipation model (EDM) for simulations. Analyzing the effect of the NH 3 /NO ratio on NO conversion efficiency is a crucial component of the study. With diminishing efficiency at higher ratios, the SCR process demonstrated nearly complete NO conversion at a certain NH 3 /NO ratio, and this value changes with the inlet gas temperature. In contrast, SNCR produced less favorable conversion rates than SCR, indicating that the amount of NH 3 supply affects conversion efficiency. At the SCR system’s optimum NH 3 /NO ratio, SNCR achieved an 83 % conversion, and the conversion rate remained relatively constant as the ratio was increased. The results highlight the various possibilities for optimization of the reactor systems in terms of efficiency and economic feasibility.

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