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The impregnation effect on low and middle rank coals structure reorganization and their behavior during pyrolysis

机译:浸渍对中低阶煤结构的热解作用及其行为

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Main structural parameters of low and middle rank coals and genesis (C~daf = 64.3--87.2/100) were determined by method of X-ray diffraction. The interrelation between structural parameters (L_c L_a hll_002) and carbon content (C~daf) of coal was found. It is determined that impregnating of coals by l M of inorganic substance solution (KOH, CaO, HCl) and water leads to a change in the initial coal structure and is determined by a reagent nature. Data of IR-spectroscopy and X-ray diffraction for parent and impregnated coals suggest that the effect of inorganic substances on coal involves substitution of free acid group protons with metal (K, Ca) cations and a rupture of C--O--C and C--C bonds takes place as well as a rupture of organo-mineral bonds (O--Me--O), sulfide bridges and a destruction of cation-forming complexed (HCl). The influence of extraplanar deformational vibrations of CH_2-- and CH_3-bonds of carbon skeleton with a successive redistribution of aromatic and aliphatic fragments in coal structure is increased. The correlation between the degree of interlayer ordering (hll_002) of parent and impregnated coals and the pyrolysis liquid products at a temperature of 500deg.C was found. It was shown that coals impregnated in the course of pyrolysis increases the liquid products yield, l.5--2.0 times, in comparison with untreated coals. Thermogravimetric analysis (TGA) data were used to determine the energies of activation (E_ef) for some coals. The correlation between TGA and X-ray diffraction data was found.
机译:通过X射线衍射法确定了中低阶煤的主要结构参数和成因(C〜daf = 64.3--87.2 / 100)。发现了煤的结构参数(L_c L_a hll_002)与碳含量(C〜daf)之间的相互关系。可以确定的是,用1 M的无机物溶液(KOH,CaO,HCl)和水浸渍煤会导致初始煤结构发生变化,并取决于试剂的性质。母体煤和浸渍煤的红外光谱和X射线衍射数据表明,无机物质对煤的影响包括游离酸基质子被金属(K,Ca)阳离子取代以及C–O–C断裂发生C-C键以及有机-矿物键(O-Me-O)断裂,硫键和阳离子形成络合物(HCl)的破坏。碳骨架CH_2--和CH_3-键的平面外形变振动对煤结构中芳香族和脂肪族碎片相继重新分布的影响增加。发现母体和浸渍煤的层间有序度(hll_002)与温度为500℃的热解液体产物之间的相关性。结果表明,与未经处理的煤相比,在热解过程中浸渍的煤将液体产品的收率提高了1.5--2.0倍。使用热重分析(TGA)数据来确定某些煤的活化能(E_ef)。发现了TGA和X射线衍射数据之间的相关性。

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