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Characterization and pyrolysis of Chlorella vulgaris and Arthrospira platensis: potential of bio-oil and chemical production by Py-GC/MS analysis

机译:小球藻和Arthrospira Platensis的表征和热解:Py-GC / MS分析的生物油和化学生产的潜力

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摘要

Biofuels have been seen as potential sources to meet future energy demand as a renewable and sustainable energy source. Despite the fact that the production technology of first-generation biofuels is consolidated, these biofuels are produced from foods crops such as grains, sugar cane, and vegetable oils competing with food for crop use and agricultural land. In recent years, it was found that microalgae have the potential to provide a viable alternative to fossil fuels as source of biofuels without compromising food supplies or arable land. On this scenario, this paper aims to demonstrate the energetic potential to produce bio-oil and chemicals from microalgae Chlorella vulgaris and Arthrospira platensis. The potential of these biomasses was evaluated in terms of physical-chemical characterization, thermogravimetric analysis, and analytical pyrolysis interfaced with gas chromatograph (Py-GC/MS). The results show that C. vulgaris and A. platensis are biomasses with a high heating value (24.60 and 22.43 MJ/kg) and low ash content, showing a high percentage of volatile matter (72.49 and 79.42%). These characteristics confirm their energetic potential for conversion process through pyrolysis, whereby some important aromatic compounds such as toluene, styrene, and phenol were identified as pyrolysis products, which could turn these microalgae a potential for biofuels and bioproduct production through the pyrolysis.
机译:生物燃料被视为潜在来源,以满足未来的能源需求作为可再生和可持续的能源。尽管第一代生物燃料的生产技术巩固了,但这些生物燃料由食品作物,如谷物,甘蔗和植物油竞争为作物使用和农业用餐。近年来,发现微藻有可能为化石燃料提供可行的替代品作为生物燃料的来源,而不会影响食品供应或耕地。在这种情况下,本文旨在展示从微藻藻藻和arthospira platensis生产生物油和化学品的能量潜力。在与气相色谱仪(PY-GC / MS)接合的物理化学表征,热重分析和分析热解方面评价这些生物质的潜力。结果表明,v语文和A.铂是具有高加热值(24.60和22.43mJ / kg)和低灰分含量的生物量,显示出高挥发物质(72.49和79.42%)。这些特性通过热解鉴定了转化过程的能量电位,从而鉴定出一些重要的芳族化合物,例如甲苯,苯乙烯和苯酚作为热解产物,这可能会使这些微藻和通过热解产生生物燃料和生物产物产生的潜力。

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