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超临界水氧化DNT废水动力学及影响因素研究 被引量:4

Kinetics and Influence Factors of Dinitrotoluene Wastewater Oxidation in Supercritical Water
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摘要 采用半连续化的超临界水氧化装置处理了二硝基甲苯(DNT)炸药废水,发现DNT去除率及其化学需氧量(COD)去除率随温度升高、停留时间延长而提高。在550℃、20s、24MPa、过氧量300%的条件下,DNT去除率和COD去除率分别能达98.89%、98.99%。而在425~550℃、时间0~20s范围内,温度、时间对DNT去除率及COD去除率影响显著。在425~550℃、24MPa、过氧量300%条件下,DNT反应级数为3.630,反应活化能为24.19kJ·mol^-1,指前因子为7.109×10^5s^-1。 The dlnitrotoluene (DNT) wastewater treatment was investigated in a semi-continuous supercritical water oxidation system with the temperatures from 425 ℃ to 570 ℃ and the resident time from 0 s to 60 s at 24 MPa and 300% excess oxygen. Results show that increasing temperature and resident time can increase the DNT and chemical oxygen demand (COD) removal efficiencies. Treatment for approximately 20 s at a pressure of 24 MPa, temperature of 550 ℃ and oxygen excess of 300% , results in destruction efficiencies of over 98.89% for DNT and 98.99% for COD. The DNT and COD removal efficiencies are strongly dependent on temperature and resident time during 425 - 550 ℃ and 0 - 20 s. Under the treatment condition of 425 - 550 ℃ , 24 MPa and 300% excess oxygen, the reaction order respect to DNT is 3. 630, the activation energy is 24. 19 kJ · mol^-1, and the Arrhenius pre-exponential factor is 7. 109 × 10^5 s^-1.
出处 《含能材料》 EI CAS CSCD 2008年第4期406-409,共4页 Chinese Journal of Energetic Materials
基金 教育部科学技术研究项目(2004020) 太原市科技兴市专项项目(20061046)
关键词 物理化学 二硝基甲苯(DNT) 超临界水 火炸药 反应动力学 废水处理 physical chemistry dinitrotoluene (DNT) supercritical water explosive kinetics wastewater treatment
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