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Optimisation of the operation variables of a supercritical water oxidation process [Review]

机译:超临界水氧化工艺操作变量的优化[综述]

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The unique physical-chemical properties of water above its critical point (374.2 degreesC and 22.1 MPa) makes supercritical water (SCW) an effective reaction medium for oxidation of organic compounds. Gases and many organic compounds are miscible in SCW, so reaction between oxygen and waste is carried out without interface transport constraints. Supercritical water oxidation (SCWO) can give high destruction efficiencies for a wide variety of hazardous wastes, at low reactor residence times. To study the SCWO, experiments were carried out in a pilot plant equipped with a pressure shell and cooled wall reactor. Effect of operation variables oxidant excess, reaction temperature and residence time, is studied in order to optimise the contaminant removal efficiency. Aqueous solutions of isopropyl alcohol were used as feed, No effect of air excess and residence time higher than 1 minute on removal efficiency was found, so exclusive dependence of temperature is concluded. Whereas temperature is above 650 degreesC, reactor can work in a wide range of operation conditions with destruction efficiency over 99%. In addition, operation at optimal conditions is reported, using 10%(w) isopropyl alcohol - 1%(w) aniline as feed. Removal efficiencies higher than 99.9% and nitrite-nitrate concentrations less than 10 ppm were obtained. [References: 8]
机译:水在其临界点(374.2摄氏度和22.1 MPa)以上的独特物理化学性质使超临界水(SCW)成为有机化合物氧化的有效反应介质。气体和许多有机化合物可与SCW混溶,因此氧气和废物之间的反应不受界面传输限制。超临界水氧化(SCWO)可以在较短的反应器停留时间内为各种危险废物提供高销毁效率。为了研究SCWO,在配备压力壳和冷却壁反应器的中试装置中进行了实验。研究了操作变量氧化剂过量,反应温度和停留时间的影响,以优化污染物去除效率。使用异丙醇水溶液作为进料,未发现过量空气和停留时间超过1分钟对去除效率的影响,因此得出温度的唯一依赖性。尽管温度高于650摄氏度,但反应堆可以在广泛的运行条件下运行,破坏效率超过99%。此外,据报道在最佳条件下运行,使用10%(w)异丙醇-1%(w)苯胺作为进料。去除效率高于99.9%,硝酸亚硝酸盐浓度低于10 ppm。 [参考:8]

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