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Pyrolysis of Delonix Regia and Characterization of Its Pyrolytic Products: Effect of Pyrolysis Temperature

机译:Delonix Regia的热解及其热解产品的表征:热解温的影响

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Pyrolysis of a rarely researched biomass feedstock, Delonix regia (DR), at different pyrolysis temperatures carried out in a tubular reactor at an atmospheric pressure of one bar. In addition to the fuel and physical properties of produced bio-oil and bio-char, extensive advanced characterization of these products, viz. Fourier transformation infrared (FTIR), GC-MS, proton (~1H) nuclear magnetic resonance (~1H NMR), X-ray diffraction (XRD), etc. is also performed as applicable to different products. The main emphasis of this work is on both quantitative and qualitative analysis of pyrolytic bio-oil and bio-char obtained from DR at 500-700 °C. In this range of temperature, higher heating value (HHV) of bio-oil found to be varying between 20.88 MJ/kg and 25.70 MJ/kg following increasing trend with the temperature. However, HHV of bio-char observed to be almost unaffected by pyrolysis temperature, and it is approximately 36 MJ/kg. The density of bio-oil found to be decreasing from 0.95 g/cc to 0.88 g/cc as the pyrolysis temperature increases from 500 to 700 °C; however, pH is found to be almost unaffected by the pyrolysis temperature changing only slightly from 3.4 to 3.3. Furthermore, the moisture content of bio-oil is also found to be unaffected by the temperature variations. From the GC-MS chro-matograms of bio-oils, it is found that benzene is highest area % (with 14.6%) and phenol, 2,6-dimethoxy is the second-highest area % occupying component (with 10.5%) in bio-oil obtained at 600 °C of pyrolysis temperature. This result indicates that the DR feedstock is also an excellent resource for producing value-added green chemicals.
机译:一种很少研究的生物质原料,Delonix Regia(Dr)的热解,在不同的热解温度下在一个棒的大气压力下在管状反应器中进行。除了生产生物油和生物炭的燃料和物理性质外,这些产品的广泛先进的表征,VIZ。傅里叶变换红外(FTIR),GC-MS,质子(〜1H)核磁共振(〜1H NMR),X射线衍射(XRD)等也适用于不同的产品。这项工作的主要重点是对从500-700℃的DR获得的热解生物油和生物炭的定量和定性分析。在这种温度范围内,在增加温度趋势之后,发现生物油的更高的加热值(HHV)的生物油的加热值(HHV)在20.88mJ / kg和25.70mJ / kg之间发生变化。然而,生物炭的HHV观察到几乎不受热解温的影响,它约为36 mJ / kg。发现的生物油的密度从0.95g / cc降至0.88g / cc,因为热解温度从500升至700℃;然而,发现pH值几乎不受热解温度变化的影响,仅略微从3.4到3.3。此外,还发现生物油的水分含量不受温度变化的影响。从生物油的GC-MS CHRO-丙酰甲术中,发现苯是最高的面积%(含14.6%)和苯酚,2,6-二甲氧基是第二高的区域%占用组分(10.5%)生物油在600℃下获得的热解温。该结果表明DR Feedstock也是生产增值绿色化学品的优异资源。

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