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Ignition of promising coal-water slurry containing petrochemicals: Analysis of key aspects

机译:点燃有前景的含石化水煤浆:关键方面的分析

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An experimental study of the macroscopic laws of the ignition of coal-water slurry containing petrochemicals (CWSPs) based on coal and flammable liquids processing waste is presented. Investigations have been performed to determine the prospects for burning such fuel mixtures prepared from raw materials in power plants at temperatures ranging from minimal (700-800 K) to high (not <1000 K). Oxidizer flow velocities varied between 0.5 and 5 m/s. The study specifies the main stages of the processes at different heating rates and heat flows through a fuel surface element (a droplet or a particle). Investigations have been conducted on a single droplet (radius from 0.25 mm to 1.5 mm) of a specified fuel composition (we have considered over 20 different compositions). With the use of cross-correlation and high-speed video cameras coupled with software applications Tema Automotive, Actual Flow, we have examined the interactions of oxidizer flow with a fuel droplet surface. The ignition delay time and durations up to complete combustion of CWSP droplets have been measured. The experimental results allowed us to elaborate the heat and mass transfer mathematical model including phase transitions and chemical reactions in the main stages of the processes under study, which are: the inert heating up of the sample, the evaporation of moisture from a superficial layer (water and flammable liquid), the thermal decomposition of coal in the superficial layer of a droplet, the mixing of volatiles with an oxidizer, the combustion initiation of the emerging gas mixture, the heating up of coke, and its heterogeneous ignition. From the mathematical model and experimental data, we have defined the necessary and sufficient conditions for the ignition of CWSP. (C) 2016 Elsevier B.V. All rights reserved.
机译:提出了基于煤和易燃液体处理废物的含石化水煤浆点火的宏观规律的实验研究。已经进行了研究以确定在最低(700-800 K)到最高(不<1000 K)的温度下燃烧发电厂中由原材料制备的这种燃料混合物的前景。氧化剂的流速在0.5至5 m / s之间变化。研究指定了不同加热速率下过程的主要阶段,热量流经燃料表面元件(液滴或颗粒)。已经对指定燃料成分(我们考虑了20多种不同成分)的单个液滴(半径为0.25 mm至1.5 mm)进行了研究。通过使用互相关和高速摄像机以及软件应用程序Tema Automotive(实际流量),我们检查了氧化剂流量与燃料滴表面的相互作用。已经测量了点火延迟时间和直至CWSP液滴完全燃烧的持续时间。实验结果使我们能够详细阐述所研究过程的主要阶段的热与质量传递数学模型,包括相变和化学反应,这些过程包括:样品的惰性加热,表层水分的蒸发(水和易燃液体),煤在液滴表层的热分解,挥发物与氧化剂的混合,新兴气体混合物的燃烧引发,焦炭的加热及其异质着火。根据数学模型和实验数据,我们定义了CWSP点火的必要条件和充分条件。 (C)2016 Elsevier B.V.保留所有权利。

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