首页> 外文期刊>Journal of analytical & applied pyrolysis >Influence of pyrolysis process on the production of bio-oil used as alternative green energy from Pistacia lentiscus L.
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Influence of pyrolysis process on the production of bio-oil used as alternative green energy from Pistacia lentiscus L.

机译:热解过程对Pistacia lentiscus L作为替代绿色能源的生物油生产的影响

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? 2022 Elsevier B.V.In the sector of industry, there are quite a few energy production processes but pyrolysis remains the simplest one owing to its proprieties in reducing gases that contribute to atmospheric pollution. The pyrolysis of Pistacia lentiscus L seeds was studied in pyrolysis reactors operating between 300 and 550 °C, the speed rates ranging from 5° to 30°C min?1 and grain size varies between 75 μm and 1200 μm. The thermal analysis (GTA and DTA) of the seeds indicates the presence of two peaks corresponding to important chemical transformations at 360 °C and 475 °C. The physicochemical analysis of the seeds bio-oil indicates a density of 887.6 mg cm?3, a dynamic viscosity equals 3.868 mPa.s and a kinematic viscosity equals 4.298 mm2 s?1. The elemental analysis shows that the seeds bio-oil, which has a big percentage of carbon and oxygen, shows a total absence of sulfur. The utmost yield of bio-oil of 63.86 was obtained at an optimum pyrolysis temperature of 475 °C, at a heating rate of 25 °C min?1 and therefore the calorific value of the bio-oil was 38.69 MJ kg?1. The FTIR-ATR is used for identifying the functional groups present in the bio-oil. Various compounds present in the bio-oil were identified by gas chromatography using GC-MS. The 96.28 of organic compounds are fatty acids, linear and branched alkanes with 2, and the rest is distributed between amines and alcohols, ketones, and ethers. Therefore, bio-oil can be a source of biofuel or a source of compounds for pharmaceutical and cosmetic uses.
机译:?2022 爱思唯尔 B.V.In 工业领域,有相当多的能源生产过程,但热解仍然是最简单的过程,因为它在减少导致大气污染的气体方面具有适当性。在300-550 °C的热解反应器中研究了Pistacia lentiscus L种子的热解过程,速度范围为5°-30°C min?1,晶粒尺寸在75 μm和1200 μm之间变化。种子的热分析(GTA和DTA)表明,在360 °C和475 °C下存在两个峰,对应于重要的化学转化。 对种子生物油的理化分析表明,该种子的密度为887.6 mg cm?3,动态粘度为3.868 mPa.s,运动粘度为4.298 mm2 s?1。元素分析表明,碳和氧含量高的种子生物油完全不含硫。在475 °C的最佳热解温度下,在25 °C min?1的升温速率下,生物油的最大收率为63.86%,因此生物油的热值为38.69 MJ kg?1。FTIR-ATR用于鉴定生物油中存在的官能团。使用GC-MS通过气相色谱法鉴定生物油中存在的各种化合物。96.28%的有机化合物为脂肪酸、直链烷烃和支链烷烃,占2%,其余分布在胺类和醇类、酮类和醚类之间。因此,生物油可以是生物燃料的来源,也可以是制药和化妆品用途的化合物来源。

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