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两种表型种子油的物理化学变异性及生物柴油潜力

Physicochemical Variability and Biodiesel Potential of Seed Oils of Two Phenotypes.

作者信息

Bothon Fifa T D, Montcho Papin S, Nonviho Guevara, Agbangnan Dossa Cokou P, Tchiakpe Léopold, Adomou Alain A, Avlessi Félicien

机构信息

Institut National Supérieur de Technologie Industrielle, Université Nationale des Sciences Technologies Ingénierie et Mathématiques, Lokossa BP 133, Benin.

Laboratoire d'Etude et de Recherche en Chimie Appliquée, Ecole Polytechnique d'Abomey Calavi, Université d'Abomey-Calavi, 01 BP 2009 Cotonou, Bénin.

出版信息

ACS Omega. 2020 Oct 2;5(40):25561-25567. doi: 10.1021/acsomega.0c01838. eCollection 2020 Oct 13.

Abstract

Considerable interest is being focused on vegetable oils as fuel. Due to their characteristics being close to diesel and their renewable potential, studies recommend their use for agricultural applications. var. is widely studied for the nutritional properties of its calyces. Although the seeds of this species are known to be rich in fatty acids, their use is little known in Benin Republic. Similarly, a few studies have attempted to characterize the seeds of the green phenotype of this plant species. By following standard methods, the fatty acid profiles of oils extracted from the seeds of the two varieties (red phenotype, sabdariffa (HSS), and green phenotype, altissima (HSA)) of were established. A comparative study of their physicochemical properties was also performed to highlight their potential use as fuel. It follows that HSS seed oil is yellow while HSA seed oil is dark green. For the two varieties, values obtained for the kinematic viscosity (∼4 mm/s), cetane number (∼55), and density (0.87 g/cm) are in accordance with the U.S. and European standards. However, it is observed that HSA oil is significantly more acidic (23.10 ± 0.22 for HSS vs 18.20 ± 0.40 mg KOH/g oil for HSS) with a higher peroxide value (HSA: 0.280 ± 0.002 vs HSS: 0.140 ± 0.001). The major fatty acids are the following: palmitic (HSA: 27.09 vs HSS: 25.48%), oleic (HSA: 31.81 vs HSS: 35.21%), and linoleic (HSA: 31.43 vs HSS: 29.70%) acids. These fatty acid profiles give to the two oils calorific values (∼39.45 MJ/kg) lower than that of diesel but good oxidative stability and cold filter plugging. The two oils could be used as fuel oil, after their transesterification to improve their properties.

摘要

植物油作为燃料正受到广泛关注。由于其特性与柴油相近且具有可再生潜力,研究建议将其用于农业应用。锦葵科的玫瑰茄变种因其花萼的营养特性而受到广泛研究。尽管已知该物种的种子富含脂肪酸,但在贝宁共和国,其用途鲜为人知。同样,也有一些研究试图对该植物物种绿色表型的种子进行表征。通过遵循标准方法,建立了锦葵科两个变种(红色表型,玫瑰茄(HSS)和绿色表型,高茎玫瑰茄(HSA))种子所提取油的脂肪酸谱。还对它们的物理化学性质进行了比较研究,以突出其作为燃料的潜在用途。结果表明,HSS种子油呈黄色,而HSA种子油呈深绿色。对于这两个变种,运动粘度(约4mm/s)、十六烷值(约55)和密度(0.87g/cm)所获得的值符合美国和欧洲标准。然而,可以观察到HSA油的酸性明显更强(HSS为23.10±0.22,而HSA为18.20±0.40mg KOH/g油),且过氧化值更高(HSA:0.280±0.002,而HSS:0.140±0.001)。主要脂肪酸如下:棕榈酸(HSA:27.09,而HSS:25.48%)、油酸(HSA:31.81,而HSS:35.21%)和亚油酸(HSA:31.43,而HSS:29.70%)。这些脂肪酸谱使这两种油的热值(约39.45MJ/kg)低于柴油,但具有良好的氧化稳定性和冷滤堵塞性能。这两种油在进行酯交换以改善其性能后可作为燃料油使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67a0/7557216/74edf376204f/ao0c01838_0002.jpg

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