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Process engineering design of pathological waste incinerator with an integrated combustion gases treatment unit

机译:带有集成燃烧气体处理装置的病理废物焚化炉的工艺设计

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Management of medical wastes generated at different hospitals in Egypt is considered a highly serious problem. The sources and quantities of regulated medical wastes have been thoroughly surveyed and estimated (75 t/day from governmental hospitals in Cairo). From the collected data it was concluded that the most appropriate incinerator capacity is 150 kg/h.rnThe objective of this work is to develop the process engineering design of an integrated unit, which is technically and economically capable for incinerating medical wastes and treatment of combustion gases. Such unit consists of (ⅰ) an incineration unit (INC-1) having an operating temperature of 1100℃ at 300% excess air, (ⅱ) combustion-gases cooler (HE-1) generating 35 m~3/h hot water at 75℃, (ⅲ) dust filter (DF-1) capable of reducing particulates to 10-20 mg/Nm~3, (ⅳ) gas scrubbers (GS-1,2) for removing acidic gases, (ⅴ) a multi-tube fixed bed catalytic converter (CC-1) to maintain the level of dioxins and furans below 0.1 ng/Nm~3, and (ⅵ) an induced-draft suction fan system (SF-1) that can handle 6500 Nm~3/h at 250℃. The residence time of combustion gases in the ignition, mixing and combustion chambers was found to be 2 s, 0.25 s and 0.75 s, respectively. This will ensure both thorough homogenization of combustion gases and complete destruction of harmful constituents of the refuse.rnThe adequate engineering design of individual process equipment results in competitive fixed and operating investments. The incineration unit has proved its high operating efficiency through the measurements of different pollutant-levels vented to the open atmosphere, which was found to be in conformity with the maximum allowable limits as specified in the law number 4/1994 issued by the Egyptian Environmental Affairs Agency (EEAA) and the European standards.
机译:埃及不同医院产生的医疗废物的管理被认为是一个非常严重的问题。彻底调查和评估了管制医疗废物的来源和数量(开罗政府医院每天75吨)。根据收集的数据得出的结论是,最合适的焚化炉容量为150千克/小时。这项工作的目的是开发一种集成装置的工艺设计,该装置在技术上和经济上能够焚化医疗废物和处理燃烧。气体。该装置由(ⅰ)300%过量空气下运行温度为1100℃的焚烧装置(INC-1),(ⅱ)产生35 m〜3 / h热水的燃烧气体冷却器(HE-1)组成75℃,(ⅲ)能够将颗粒物降至10-20 mg / Nm〜3的灰尘过滤器(DF-1),(ⅳ)去除酸性气体的气体洗涤器(GS-1,2),(ⅴ)多种管固定床催化转化器(CC-1),以将二恶英和呋喃的水平保持在0.1 ng / Nm〜3以下;(ⅵ)感应吸风系统(SF-1),可处理6500 Nm〜3 /在250℃时。发现燃烧气体在点火,混合和燃烧室中的停留时间分别为2 s,0.25 s和0.75 s。这将确保燃烧气体彻底均质化,并完全销毁垃圾中有害成分。rn单个工艺设备的适当工程设计可带来有竞争力的固定和运营投资。通过测量排放到露天环境中的不同污染物水平,焚化炉证明了其高运行效率,发现该污染物水平符合埃及环境事务局第4/1994号法律规定的最大允许限值代理商(EEAA)和欧洲标准。

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