利用微藻油生产生物柴油:重要综述

Mukesh Kumar, Vinod K Singh, Ravikant Ravi, Vikas Verma, Akhilesh Arora, Tabish Alam, Anil S Yadav, Abhishek Sharma
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引用次数: 0

摘要

由于生活水平提高、人口增长和城市化,全球能源需求预计将上升。这凸显了探索替代能源的必要性。从可再生原料中提炼出的生物柴油被认为是一种很有前景的解决方案,既能满足未来的能源需求,又能解决人们对化石燃料储量不断减少和环境问题的担忧。微藻油被认为是生物燃料生产的第三代原料,因为与传统的可食用作物和非食用油相比,微藻油具有优势,而传统的可食用作物和非食用油在可用性和产量方面都受到限制。微藻油尤其重要,因为食用油是食物来源,而非食用油资源生长缓慢,产油量较少。对于从任何原料中提炼出的生物柴油来说,都必须满足特定的物理和化学特性,以符合生物柴油标准。因此,有必要深入研究微藻油到生物柴油的转化过程。本研究探讨了微藻油作为生物柴油原料的各个方面,包括不同的微藻种类及其含油量、利用微藻油和生物质生产生物柴油的技术,以及其他国家的生物柴油标准和特征。本研究采用技术经济学和生命周期评估来评估基于微藻的工艺的经济可行性和环境影响,解决了数据可用性、不确定性和利益相关者参与等挑战。本综述强调了利用微藻原料生产生物柴油的重大机遇,这将有助于未来的生物柴油生产,并为传统柴油燃料提供可持续的替代品。
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Biodiesel production from microalgae oils: A critical review
The global energy demand is expected to rise due to improved living standards, population growth, and urbanization. It underscores the need to explore alternative energy sources. Biodiesel, derived from renewable feedstock, is considered a promising solution to meet future energy needs while addressing concerns about dwindling fossil fuel reserves and environmental issues. Microalgal oils are identified as third-generation feedstock for biofuels production due to their advantages over conventional edible crops and non-edible oils, which face limitations in availability and yield. Microalgal oils are particularly significant because edible oils serve as food sources, and non-edible oil resources have slow growth rate as well as less oil yields. For biodiesel derived from any feedstock, meeting specific physical and chemical properties to comply with biodiesel standards. Therefore, thoroughly examining the conversion process from microalgal oil to biodiesel is necessary. This study explores various aspects of microalgal oils as biodiesel feedstock, including different microalgal species and their oil content, technologies used for biodiesel production from microalgal oils and biomass, and biodiesel standards and characterization across other countries. Techno-economics and Life Cycle Assessment are applied in this study to evaluate the economic viability and environmental impact of microalgae-based processes, addressing challenges such as data availability, uncertainty, and stakeholder engagement. This review highlights a significant opportunity to produce biodiesel from microalgal feedstock, which could contribute to future biodiesel production and provide a sustainable alternative to conventional diesel fuels.
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