Advancements in biofuel research: Understanding the physical and chemical characteristics of green diesel

Luis Verduzco, G. Marroqu´ın-Sanchez, M. J. Hernández Sánchez
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Abstract

Green diesel is a potential biofuel that offers certain advantages over traditional fossil diesel, such as low environmental pollution and no sulfur. However, there is little information available regarding the density and viscosity of green diesel, which is crucial for the quality control of biofuels and their performance in engines. In this study, the properties of green diesel produced from palm and soybean oils hydrotreatment were investigated, and models were developed to predict the physical properties of green diesel and n-alkanes. The experimental measurements had uncertainties of 1×10-4 g/cm3 and 1×10-2 mPa s in density and viscosity, respectively. The models were found to be in good agreement with the experimental values. The study highlights the importance of density and viscosity for quality control and engine performance of biofuels. The developed models for predicting the physical properties of green diesel and n-alkanes can be useful for quality control and optimization of biofuel production processes. The findings can be useful for researchers, engineers, and policymakers working in the field of biofuels and renewable energy. Further research is needed to explore the applicability of the developed models to other types of biofuels and to investigate the environmental and economic sustainability of green diesel production.
生物燃料研究取得进展:了解绿色柴油的物理和化学特性
绿色柴油是一种潜在的生物燃料,与传统的化石柴油相比具有某些优势,如环境污染小和不含硫。然而,有关绿色柴油密度和粘度的信息却很少,而这对于生物燃料的质量控制及其在发动机中的性能至关重要。本研究调查了棕榈油和大豆油加氢处理生产的绿色柴油的特性,并建立了模型来预测绿色柴油和正构烷烃的物理性质。实验测量结果在密度和粘度方面的不确定性分别为 1×10-4 g/cm3 和 1×10-2 mPa s。研究发现,模型与实验值十分吻合。这项研究强调了密度和粘度对生物燃料的质量控制和发动机性能的重要性。所开发的绿色柴油和正构烷烃物理性质预测模型可用于生物燃料生产过程的质量控制和优化。这些发现对生物燃料和可再生能源领域的研究人员、工程师和政策制定者非常有用。还需要进一步研究开发的模型对其他类型生物燃料的适用性,并调查绿色柴油生产的环境和经济可持续性。
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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