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Comparison of Byproduct and Heat-recovery Cokemaking Technologies

机译:副产品和热回收制焦技术的比较

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Both byproduct and heat-recovery coke plant technologies are capable to produce high quality coke suitable for high productivity blast furnaces. The decision as to which type of plant to build looked at from a return on investment viewpoint comes down to how the coke plant is integrated into the overall steel plant and what external energy sources are available to the plant.In Case 1 due to the lack of available of electricity from the grid, and reliance on an expensive alternative fuel source, fuel oil required to generate the electricity, the heat-recovery coke plant was preferred. In Case 2, when both electricity and natural gas were available at a low cost, the byproduct plant was shown to be the preferred option, although the sensitivity analysis showed that increases in electricity and gas prices could change this outcome.From an environmental viewpoint the heat-recovery technology had a smaller footprint than the byproduct technology. Due its negative pressure operation and incineration of all the volatile matter in the coal, the heat-recovery process is less susceptible to toxic gas releases. The coal bed configuration also means particulate emissions are reduced. The US Environmental Protection Agency (EPA) recognizes the heat-recovery process as meeting the Maximum Achievable Control technology (MACT). The byproduct process has some technologies that can improve upon the standard design such as individual oven pressure control and Coke Stabilisation Quenching (CSQ), which can minimize particulate and toxic emissions.The selection of the coke making technology must be made on a case-by-case basis. Many different factors can affect the decision including for example, available land and energy sources, steel plant configuration and energy consumers, environmental issues and the capital cost of equipment.
机译:副产品和热回收焦炉技术均能够生产适用于高生产率高炉的高质量焦炭。从投资回报率角度看待建设哪种类型的工厂的决定取决于焦炭工厂如何整合到整个钢铁工厂中以及工厂可以使用哪些外部能源。在案例1中,由于缺乏考虑到电网的可用电能,并依靠昂贵的替代燃料,发电所需的燃料油,热回收焦炭厂是首选。在案例2中,当电力和天然气价格低廉时,副产物工厂被证明是首选方案,尽管敏感性分析显示,电力和天然气价格的上涨可能会改变这一结果。热回收技术的占地面积比副产品技术小。由于其负压运行和焚烧煤中所有挥发性物质,因此热回收过程不易释放有毒气体。煤床配置还意味着减少了颗粒物排放。美国环境保护局(EPA)认为热回收过程符合最大可实现控制技术(MACT)。副产物工艺具有一些可以在标准设计上进行改进的技术,例如独立的烤箱压力控制和焦炭稳定淬火(CSQ),可以最大程度地减少颗粒物和有毒物质的排放。必须根据具体情况选择焦炭制造技术案例的基础上。许多不同的因素都会影响决策,例如,可用的土地和能源,钢铁厂的配置和能源消费者,环境问题以及设备的资本成本。

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