Stebeleva Olesya P, Kashkina Ludmila V, Minakov Andrey V, Vshivkova Olga A
Siberian Federal University, Svobodny pr., 79, 660041Krasnoyarsk, Russia.
Kutateladze Institute of Thermophysics, SB RAS, Ac. Lavrentieva Ave., 1, 630090Novosibirsk, Russia.
ACS Omega. 2022 Oct 17;7(42):37369-37378. doi: 10.1021/acsomega.2c03979. eCollection 2022 Oct 25.
It is common to use coal as raw material in heat power engineering. A number of shortcomings of coal such as ignitability cannot be easily eliminated. The use of water-slurry-based coal-water fuel instead of coal eliminates this problem. The coal-water fuel (CWF) is liquid fuel, which means that the main line of investigation is to study its sedimentation and rheological properties responsible for the transport and atomization in the boiler and thermal-physical properties which determine the expedience and efficiency of its application. The paper shows that the final performance properties of suspended coal fuel can be determined at the stage of CWF preparation by hydrodynamic treatment of aqueous coal slurry. The rheological and sedimentation properties and combustion parameters of water-coal fuel, ignition time of the drop, its completeness of combustion, and amount of man-made emissions, have been studied. Studies have been carried out on coals from the Kansk-Achinsk coal basin (Russia). The studies were performed under laboratory conditions with a hydrodynamic rotary mixer, making it possible to attain cavitation effects in the processed medium. Two CWF types have been considered: the first was produced by cavitation dispersion of the solid coal fraction in distilled water, and the second was produced in analogy, but the dispersion medium was water pretreated by cavitation. The paper shows that the cavitation method of producing CWF improves the rheological and sedimentation properties of the end-use fuel, reduces hazardous emissions in combustion, and affects the combustion parameters.
在热力工程中,使用煤炭作为原材料很常见。煤炭存在一些缺点,比如可燃性方面的问题不易消除。使用水煤浆基水煤燃料替代煤炭可消除此问题。水煤燃料(CWF)是液体燃料,这意味着主要的研究方向是研究其沉降和流变特性,这些特性决定了在锅炉中的输送和雾化,以及热物理特性,热物理特性决定了其应用的便利性和效率。本文表明,通过对水煤浆进行流体动力学处理,在水煤燃料制备阶段就可以确定悬浮煤燃料的最终性能特性。已经研究了水煤燃料的流变和沉降特性、燃烧参数、液滴点火时间、燃烧完全程度以及人为排放量。对俄罗斯坎斯克 - 阿钦斯克煤田的煤炭进行了研究。研究在实验室条件下使用流体动力学旋转混合器进行,使得在处理介质中能够实现空化效应。考虑了两种水煤燃料类型:第一种是通过将固体煤颗粒在蒸馏水中进行空化分散制得,第二种以类似方式制备,但分散介质是经过空化预处理的水。本文表明,通过空化方法生产水煤燃料可改善最终使用燃料的流变和沉降特性,减少燃烧过程中的有害排放,并影响燃烧参数。