Department of Mechanical Engineering, De La Salle University, 2401 Taft Avenue, 0922 Manila, Philippines; Center for Engineering and Sustainable Development Research, De La Salle University, 2401 Taft Avenue, 0922 Manila, Philippines; Thermomechanical Laboratory, De La Salle University, Laguna Campus, LTI Spine Road, Laguna Blvd, Biñan, Laguna 4024, Philippines.
Department of Mechanical Engineering, De La Salle University, 2401 Taft Avenue, 0922 Manila, Philippines.
Bioresour Technol. 2022 Sep;360:127615. doi: 10.1016/j.biortech.2022.127615. Epub 2022 Jul 15.
Microalgal biorefineries represent an opportunity to economically and environmentally justify the production of bioproducts. The generation of bioproducts within a biorefinery system must quantitatively demonstrate its viability in displacing traditional fossil-based refineries. To this end, several works have conducted life cycle analyses on microalgal biorefineries and have shown technological bottlenecks due to energy-intensive processes. This state-of-the-art review covers different studies that examined microalgal biorefineries through life cycle assessments and has identified strategic technologies for the sustainable production of microalgal biofuels through biorefineries. Different metrics were introduced to supplement life cycle assessment studies for the sustainable production of microalgal biofuel. Challenges in the comparison of various life cycle assessment studies were identified, and the future design choices for microalgal biorefineries were established.
微藻生物炼制厂代表了一种经济和环境上合理的生物制品生产机会。在生物炼制系统中生产生物制品必须在定量上证明其在替代传统基于化石的炼油厂方面的可行性。为此,一些研究已经对微藻生物炼制厂进行了生命周期分析,并由于能源密集型工艺而显示出技术瓶颈。本综述涵盖了通过生命周期评估研究微藻生物炼制厂的不同研究,并确定了通过生物炼制厂可持续生产微藻生物燃料的战略技术。不同的指标被引入以补充微藻生物燃料可持续生产的生命周期评估研究。确定了各种生命周期评估研究比较中的挑战,并为微藻生物炼制厂的未来设计选择奠定了基础。