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Studies on the characterization of Indian coals using FE-SEM and EDS and its relevance to coal washability

机译:使用Fe-SEM和EDS的印度煤的特征及其与煤炭剥洗性的相关性研究

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Clean coal technology is a very important area of research and development as it has enormous potential to reduce harmful emissions, improves fuel efficiency which meets the present and future energy requirements. Indian coals are known for drift origin, the associated mineral matter is responsible for formation of ash in the coal, which are intimately mixed with coaly matter during the time of formation. The mineral matter present in the coal has detrimental impact on different end uses. Gradual increase in ash percentage and deterioration of good quality Indian coals have attracted the researchers to look inside the coal for its judicious utilization. Coal is extremely complex and the most heterogeneous fuel, composed of a number of distinct organic entities called macerals and inorganic entities called minerals. The term, "mineral matter", usually applies to all inorganic, non-carbonaceous material, includes those inorganic elements which may occur in organic combination. The inorganic mineral matter divided into two groups-inherent which is grown with plant life and seldom exceeds 2-3 per cent of whole mass while extraneous mineral matters generally consists of large bits and pieces of inorganic material typical of the surrounding geology. These extraneous mineral matters so finely divided and uniformly dispersed within the coal and enter into the coal matrices and behave like inherent mineral matter which cannot be removed by any means of physical washing. The coal at below -500 micron is density separated using centrifuge and studied with FE-SEM and EDS. Knowledge of the morphological relationship between the inorganic phases and organic matter is helpful to devise suitable schemes for cleaning coals containing such particles. The surface morphology, presence of pore and their sizes were carried out using scanning electron microscopy; while EDS analysis helps to determine the elemental composition of the mass of a particular area, advantage is simplicity with accuracy and speed.
机译:清洁煤炭技术是一个非常重要的研发领域,因为减少有害排放具有巨大潜力,提高了符合当前和未来能源要求的燃油效率。印度煤是漂移起源而闻名的,相关的矿物质负责在煤中形成灰烬,这在形成时与同性恋物质紧密混合。煤中存在的矿物质对不同的最终用途产生了不利影响。灰烬百分比的逐步增加和优质印度煤炭的恶化吸引了研究人员在煤炭内部以其明智的利用而言。煤材非常复杂,最异质的燃料,由许多称为麦克林和矿物质的无机实体组成。该术语“矿物质”通常适用于所有无机非碳质材料,包括这些无机元素,其在有机组合中可能发生。无机矿物质分为两组固有的固有,在植物寿命中生长,并且很少超过全部质量的2-3%,而无关的矿物质法通常由典型的周围地质典型的大石器和无机材料组成。这些无关的矿物质如此精细地分开并均匀地分散在煤中并进入煤基质并表现出类似的矿物质,不能通过任何物理洗涤方式除去。低于-500微米的煤是使用离心机分离的密度,并用Fe-SEM和EDS研究。知识无机阶段和有机物质之间的形态学关系是有助于设计含有这种颗粒的清洁煤的合适方案。使用扫描电子显微镜进行表面形态,孔隙的存在及其尺寸;虽然EDS分析有助于确定特定区域质量的元素组成,但优点是简单地简单,精度和速度。

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