摘要
对生物强化法烟气同时脱硫脱氮的动力学进行探讨研究,结果表明:生物强化前后,生物膜中的SO_2、NO_X的生化降解反应均为一级反应,且SO_2、NO_X在生物膜中的生化降解反应均为快速生化反应;依据吸附-生物膜理论及其动力学模型,对生物强化前后NO_X的出口气体浓度、生化去除量及净化效率进行模拟及对比验证表明,利用该理论建立的动力学模型模拟的理论值与实验值之间均具有较好的相关性(相关系数在0.95~0.99)。
The study on kinetics of simultaneous desulfurization and denitrification from flue gas by bioaugmentation was conducted. The results indicated that the biodegradation reactions of SO2 and NOxin the biofilm were first-order reactions and fast biodegradation reactions before and after bioaugmentation. The simulation research results and contrast verifications for simulating the concentration in outlet,bio-elimination capacity,and purification efficiency by applying the Adsorption-Biofilm Theory and its kinetic model before and after bioaugmentation indicated that there were good relativities between simulated theoretical data and experimental data by applying this theory and its kinetic model(the interrelation coefficients were in the range of 0. 95 ~ 0. 99).
出处
《环境科学导刊》
2017年第6期68-72,共5页
Environmental Science Survey
基金
国家自然科学基金资助项目(51278447
51168046
51008264)
云南省高校低纬高原大气环境与边界层过程重点实验室资助
关键词
生物强化法
生物膜填料塔
烟气同时脱硫脱氮
动力学模型
bioaugmentation
biofilm-packing tower
simultaneous desulfurization and denitrification from flue gas
kinetics model
作者简介
郑超群(1990-),男,湖北省孝感市人,硕士研究生,主要从事生物法烟气脱硫脱氮方面研究工作.
通信作者:张艮林(1978-),男,副研究员,博士,研究方向:环境污染治理技术基础与应用研究.