Veriansyah Bambang, Kim Jae-Duck, Lee Jong-Chol, Lee Youn-Woo
Supercritical Fluid Research Laboratory, Clean Technology Research Center, Korea Institute of Science and Technology (KIST), 39-1 Hawolgok-dong, Seongbuk-gu, Seoul 136-791, Republic of Korea.
J Hazard Mater. 2005 Sep 30;124(1-3):119-24. doi: 10.1016/j.jhazmat.2005.04.019.
Supercritical water oxidation can effectively destroy a large variety of high-risk wastes resulting from munitions demilitarization and complex industrial chemical. An important design consideration in the development of supercritical water oxidation is the information on the oxidation rate. In this paper, the oxidation rate of isopropyl amine (OPA), one of high-risk wastes resulting from munitions demilitarization, was investigated under supercritical water oxidation (SCWO) conditions in an isothermal tubular reactor. H2O2 was used as the oxidant. The reaction temperatures were ranged from 684 to 891 K and the residence times varied from 9 to 18s at a fixed pressure of 25 MPa. The conversion of OPA was monitored by analyzing total organic carbon (TOC) on the liquid effluent samples. The initial TOC concentrations of OPA varied from 7.21 to 143.78 mmol/l at the conversion efficiencies from 88.94 to 99.98%. By taking into account the dependence of reaction rate on oxidant and TOC concentration, a global power-law rate expression was regressed from 38 OPA experimental data. The resulting pre-exponential factor was 2.46(+/-0.65)x10(3)l(1.37)mmol(-0.37)s(-1); the activation energy was 64.12+/-1.94 kJ/mol; and the reaction orders for OPA (based on TOC) and oxidant were 1.13+/-0.02 and 0.24+/-0.01, respectively.
超临界水氧化能够有效销毁弹药非军事化及复杂工业化学品产生的各类高风险废物。超临界水氧化技术开发中的一个重要设计考量因素是氧化速率信息。本文在等温管式反应器中,研究了超临界水氧化(SCWO)条件下弹药非军事化产生的高风险废物之一异丙胺(OPA)的氧化速率。使用过氧化氢作为氧化剂。在25MPa的固定压力下,反应温度范围为684至891K,停留时间为9至18秒。通过分析液体流出物样品中的总有机碳(TOC)来监测OPA的转化率。在88.94%至99.98%的转化效率下,OPA的初始TOC浓度范围为7.21至143.78mmol/l。考虑到反应速率对氧化剂和TOC浓度的依赖性,从38个OPA实验数据中回归出一个全局幂律速率表达式。所得的指前因子为2.46(±0.65)×10³l¹·³⁷mmol⁻⁰·³⁷s⁻¹;活化能为64.12±1.94kJ/mol;OPA(基于TOC)和氧化剂的反应级数分别为1.13±0.02和0.24±0.01。