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Comparative indexes, fuel characterization and thermogravimetric-Fourier transform infrared spectrometer-mass spectrogram (TG-FTIR-MS) analysis of microalga Nannochloropsis Oceanica under oxidative and inert torrefaction

机译:比较指标,燃料表征和热重分析红外光谱谱谱谱分析氧化和惰性烘焙术下微观藻壬二酰氯虫草的分析

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摘要

The torrefaction performances of microalga Nannochloropsis Oceanica under oxidative and inert atmospheres are characterized and compared with each other based on several operating parameters. By conducting several comparative indexes, the results suggest that oxidative torrefaction is more capable of upgrading microalgae due to its relatively lower solid yield and energy input, as well as relatively higher enhancement factor and upgrading energy index. Compared to inert torrefaction, the indexes indicate that oxidative torrefaction at 250 degrees C for 30 min has higher energy yield (1.02 times) and energy efficiency (2.2 times) but whereas lower energy input (0.4 times). With increasing torrefaction severity, the pyrolysis curve gradually becomes smooth and shift to a high-temperature zone. The peak temperatures of torrefied microalgae present an increasing trend, especially in the oxidative atmosphere. After oxidative torrefaction, microalgal solid biofuel is upgraded as peat and lignite, from the viewpoint of elemental composition. Furthermore, oxidative torrefaction is more suitable than inert torrefaction for producing bio-oil which mainly contains dianhydromannitol, neophytadiene, and palmitoleic acid. The TG-FTIR-MS results uncover the pyrolysis characteristics and reactivity of torrefied microalgae, and elucidate that oxidative torrefied microalgae is more reactive. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在氧化和惰性气氛下微凝球菌Oceanica的Torrefaction性能表征并基于几种操作参数相互比较。通过进行几种比较指标,结果表明,由于其相对较低的固体产率和能量输入,以及相对较高的增强因子和升级能量指数,氧化的烘焙术更能升级微藻。与惰性的Torrefaction相比,指数表明,250℃氧化滞后30分钟的能量产量(1.02次)和能量效率(2.2次),但较低的能量输入(0.4倍)。随着渗流严重程度的增加,热解曲线逐渐变得光滑并转向高温区。撕裂的微藻的峰值温度呈现出越来越大的趋势,特别是在氧化气氛中。从元素组成的观点来看,在氧化造成的烘焙后,微藻固体生物燃料作为泥炭和褐煤升级。此外,氧化的烘焙术比惰性的烘焙液更适合于生产主要含有二氢胺醇,新苯二烯和棕榈药酸的生物油。 TG-FTIR-MS结果揭示了滴落微藻的热解特征和反应性,并阐明氧化雾化微藻更具有反应性。 (c)2021 elestvier有限公司保留所有权利。

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