Impact of woody biomass in the composition of coal-water suspensions on their transportation and combustion

D. Malyshev, Zhanna A. Kostoreva, M. S. Tamashevich
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Abstract

Relevance. A promising fuel from an environmental point of view is coal-water suspensions. Multiple studies have shown that when they are burned, emissions of anthropogenic gases into the Earth's atmosphere are significantly reduced compared to emissions from coal burning. But the large-scale introduction of coal-water suspensions into the overall balance of energy production is difficult due to a significant delay in their ignition, which can reach several tens of seconds at relatively low oxidizer temperatures (Tg≤1073 K). One of the possible ways to solve this problem is the use of new technologies for preparation for combustion, for example, the use of additional microwave heating of fuel and the introduction of special additives into the composition of coal-water suspensions, which accelerate their ignition. The introduction of such additives into the fuel composition can lead to a significant change in the rheological characteristics. Aim. To determine the degree of impact of the concentration and type of wood additive in the composition of the coal-water suspension on the rheological characteristics of droplets of coal-water fuel, as well as the possibility of reducing the duration of thermal preparation of the latter when exposed to microwave heating. Object. Water-coal suspension based on long-flame thermal coal and on long-flame thermal coal with the addition of sawdust and pine needles (Bio-water-coal suspension). Methods. Experimental studies to determine the time characteristics of water-coal suspension ignition were carried out using a high-speed video camera FASTCAM. Fuel combustion was carried out in a flow-through combustion chamber equipped with magnetrons for additional microwave heating of the fuel. Dynamic viscosity was determined using a Brookfield RVDV-II + Pro viscometer. Results. It has been established that the addition of microwave heating can significantly (up to 15%) reduce the ignition delay of water-coal suspension and Bio-water-coal suspension at relatively low oxidizer temperatures (673 K). Experimental studies shown that the type of biomass affects the time characteristics of fuel ignition at ambient temperatures up to 753 K; with a further increase in the temperature of the oxidizer, the type of additive does not have a significant effect. It is shown that when studying the rheological characteristics of the water-coal suspension, the dynamic viscosity of Bio-water-coal suspension does not go beyond the characteristic value of 1200 Pa s at a shear rate of 100 rpm when no more than 2% of pine sawdust and no more than 6% of pine needles are introduced into the water-coal suspension.
水煤悬浮液成分中的木质生物量对其运输和燃烧的影响
相关性。从环保角度来看,水煤浆是一种很有前景的燃料。多项研究表明,与燃煤相比,水煤浆燃烧时向地球大气排放的人为气体显著减少。但是,在能源生产的总体平衡中大规模引入水煤浆是困难的,这是因为水煤浆的点火延迟时间很长,在相对较低的氧化剂温度(Tg≤1073 K)下,延迟时间可达几十秒。解决这一问题的可行方法之一是使用新技术进行燃烧准备,例如,使用额外的微波加热燃料,以及在煤-水悬浮液的成分中引入特殊添加剂,以加速其点燃。在燃料成分中引入此类添加剂会导致流变特性发生显著变化。目的是确定水煤悬浮液成分中木材添加剂的浓度和类型对水煤燃料液滴流变特性的影响程度,以及在微波加热时缩短后者热制备时间的可能性。研究对象以长焰煤和添加锯末和松针的长焰煤为基础的水煤悬浮液(生物水煤悬浮液)。方法使用高速摄像机 FASTCAM 进行了实验研究,以确定水煤悬浮液点火的时间特性。燃料燃烧是在配有磁控管的流动燃烧室中进行的,磁控管用于对燃料进行额外的微波加热。使用 Brookfield RVDV-II + Pro 粘度计测定动态粘度。结果。已经证实,在相对较低的氧化剂温度(673 K)下,添加微波加热可以显著(最多 15%)减少水煤悬浮液和生物水煤悬浮液的点火延迟。实验研究表明,在环境温度高达 753 K 时,生物质类型会影响燃料点火的时间特性;随着氧化剂温度的进一步升高,添加剂类型的影响并不明显。研究表明,在研究水-煤悬浮液的流变特性时,如果在水-煤悬浮液中引入不超过 2% 的松树锯屑和不超过 6% 的松针,在剪切速率为 100 rpm 时,生物水-煤悬浮液的动态粘度不会超过 1200 Pa s 的特性值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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