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Physicochemical characterizations for improving the slurryability of Philippine lignite upgraded through microwave irradiation

机译:理化特性提高微波辐照法提纯菲律宾褐煤的浆化性

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Philippine lignite with high inherent moisture and oxygen was upgraded by improving the slurryability through microwave irradiation. The physicochemical properties of the upgraded lignite were characterized through Fourier transform infrared spectroscopy, N-2 adsorption porosimetry, scanning electron microscopy, energy dispersive X-ray spectroscopy, and X-ray diffraction. The solid concentration of coal water slurry (CWS) that was prepared using the upgraded lignite increased from 51% to 53.4%, and the apparent CWS viscosity decreased from 862 mPa s to 687 mPa s at a shear rate of 100 s(-1). These results can be attributed to several reasons. (1) The inherent moisture and hydrophilicity of the upgraded lignite was reduced after microwave irradiation. (2) Hydroxyl and carboxyl, which had the strongest hydrophilicity among the oxygen functional groups, decreased, whereas the carbonyl and ether, which only slightly affected the hydrophilicity, increased. (3) The specific surface area of the upgraded lignite initially decreased because of particle expansion, which was then augmented with increasing microwave time. (4) The aluminosilicate crystalline phase was generated through the mineral interactions in the upgraded lignite, and the soluble alkali ions, such as Ca2+, Mg2+, and Na+, increased on the particle surfaces. It is promising to continuously upgrade Philippine lignite in a tunnel-type microwave irradiation system to improve its slurribility for industrial-scale application.
机译:通过提高微波辐射的可浆化性,提高了固有水分和氧气含量高的菲律宾褐煤。通过傅里叶变换红外光谱,N-2吸附孔隙率法,扫描电子显微镜,能量色散X射线光谱和X射线衍射对改性褐煤的理化性质进行了表征。在100 s(-1)的剪切速率下,使用升级的褐煤制备的水煤浆(CWS)的固体浓度从51%增加到53.4%,表观CWS粘度从862 mPa s减少到687 mPa s。 。这些结果可以归因于几个原因。 (1)微波辐射后降低了提质褐煤的固有水分和亲水性。 (2)在氧官能团中亲水性最强的羟基和羧基减少,而仅稍微影响亲水性的羰基和醚增加。 (3)由于颗粒膨胀,提质褐煤的比表面积最初下降,然后随着微波时间的增加而增大。 (4)铝硅酸盐结晶相是通过提质褐煤中的矿物相互作用而产生的,可溶性碱离子如Ca2 +,Mg2 +和Na +在颗粒表面增加。希望在隧道式微波辐照系统中连续升级菲律宾褐煤,以提高其可浆化性,以用于工业规模的应用。

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