Determination of Selected Engineering Properties of Jathropha Seed

Oyebanre Olufemi David, Folorunsho Segun Israel, Badmus Islamiat Toyosi, Olayemi kazeem Oladipo
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Abstract

Jatropha (Jatropha curcas L.) is a prominent renewable energy plant with great potential for biodiesel production from its seeds. This research project aimed to investigate the engineering properties of Jatropha seeds to evaluate their suitability for biodiesel production and various industrial applications. By reducing reliance on fossil diesel, Jatropha biodiesel offers the prospect of enhanced energy security and reduced environmental pollution resulting from fossil fuel combustion (Werby and Mousa, 2016). The study focused on understanding the physical, mechanical, and aerodynamic properties of Jatropha seeds. Knowledge of these properties is crucial for the design of efficient machines and equipment used in processing, handling, cleaning, transporting, and storage of agricultural products like Jatropha seeds. Specifically, the research investigated the physical characteristics of the seeds, including size, shape, color, and texture. Moisture content was analyzed using standard drying methods, while bulk density and true density were measured through displacement techniques. Results indicated that Jatropha seeds possess favorable physical properties for handling and processing. In conclusion, this research contributes valuable insights into the engineering properties of Jatropha seeds, making them a promising bioresource for biodiesel production and diverse industrial applications. Addressing the identified challenges can further enhance their potential utilization and contribute to sustainable energy practices.
麻疯树种子部分工程性状的测定
麻疯树(Jatropha curcas L.)是一种重要的可再生能源植物,其种子具有生产生物柴油的巨大潜力。本研究旨在研究麻疯树种子的工程特性,以评价其在生物柴油生产和各种工业应用中的适用性。通过减少对化石柴油的依赖,麻疯树生物柴油提供了增强能源安全和减少化石燃料燃烧造成的环境污染的前景(Werby和Mousa, 2016)。这项研究的重点是了解麻疯树种子的物理、机械和空气动力学特性。这些特性的知识对于设计高效的机器和设备用于加工、处理、清洁、运输和储存像麻疯树种子这样的农产品至关重要。具体来说,该研究调查了种子的物理特性,包括大小、形状、颜色和质地。水分含量分析采用标准干燥方法,而容重和真密度测量通过位移技术。结果表明,麻疯树种子具有良好的物理特性,便于处理和加工。总之,本研究为麻风树种子的工程特性提供了有价值的见解,使其成为生物柴油生产和各种工业应用的有前途的生物资源。解决已确定的挑战可以进一步提高其利用潜力,并有助于可持续能源实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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