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Hydrothermal dewatering of lower rank coals. 1. Effects of process conditions on the properties of dried product

机译:低等级煤的水热脱水。 1.工艺条件对干品性能的影响

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The hydrothermal dewatering of a Loy Yang Low Ash Victorian brown coal has been studied under a wide range of process conditions. The intra-particle porosity (< 1 μm pore radius) determined by mercury porosimetry of the resulting dried products, a proxy for the maximum solids concentration of coal―water slurries, is reported as a function of reaction time, processing temperature, autoclave size and configuration and slurry concentration. Of these variables only the process temperature had a significant influence on the product intra-particle porosity, which decreased with increasing temperature. Other product variables were affected by a wider range of process conditions; increase in temperature and residence time and decrease in slurry concentration led to marked increase in loss of organic material to waste water, and the elemental composition of the product changed significantly with e.g. residence time. Drying of coal samples of particle sizes >50 μm gave products of constant intra-particle porosity but smaller coal particles gave products with higher intra-particle porosities as a result of agglomeration. Milling of the coal reduced the porosity of the dried coal at constant particle size.
机译:在广泛的工艺条件下,对Loy Yang低灰维多利亚时代褐煤的水热脱水进行了研究。通过汞孔隙率法测定的干燥产品的颗粒内孔隙度(<1μm半径)是反应时间,处理温度,高压釜尺寸和反应时间的函数,该孔隙度是水煤浆最大固体浓度的代表。构型和浆料浓度。在这些变量中,仅工艺温度对产物颗粒内孔隙率有显着影响,其随温度升高而降低。其他产品变量受更广泛的工艺条件影响;温度和停留时间的增加以及浆液浓度的降低导致有机材料向废水的损失显着增加,并且产物的元素组成随着温度的升高而显着变化。停留时间。干燥粒径> 50μm的煤样品,可获得的颗粒内孔隙率恒定,但由于团聚,较小的煤颗粒可得到较高的颗粒内孔隙率。煤的研磨降低了恒定粒径下干燥煤的孔隙率。

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