The ReFuelEU Aviation Regulation introduces mandatory targets for sustainable aviation fuels (SAF) from 2025 to 2050. However, hydrotreated esters and fatty acids (HEFA) technology based on waste oils alone is insufficient to meet targets beyond 2030, highlighting the need for alternative biocrude feedstocks to increase SAF production in the EU. Microalgae are promising feedstocks due to their biochemical composition and CO2-utilization potential, although their high moisture content and nitrogen and oxygen levels require energy-efficient conversion technologies. Hydrothermal liquefaction (HTL) is a suitable process for converting wet microalgal biomass into biocrude, with an optimal temperature window of approximately 300–330 °C and typical biocrude yields ranging from 20 to 70 wt%, depending on feedstock composition and operating conditions. However, microalgal HTL remains at TRL 5–7 and faces challenges related to the high heteroatom content of the resulting biocrude. Hydrodeoxygenation (HDO) is a key upgrading step for converting biocrude into drop-in aviation fuels and commonly operates at approximately 250–400 °C and 10–30 MPa H2 pressure. Nevertheless, few studies have addressed the HDO of microalgae-derived biocrude. This review examines microalgal HTL, pilot and demonstration facilities, biocrude yields and quality, and upgrading strategies for producing synthetic drop-in aviation biofuels.
Algal biorefineries provide a platform for producing fuels, biodegradable materials, and higher-value co-products from the same biomass resource. This review examines integrated pathways that connect microalgal and macroalgal cultivation with biodiesel production, hydrothermal liquefaction (HTL), anaerobic digestion (A...
S. S., B. S, S. J et al.· Biotechnology and applied bi...· 0 citations
The urgent need for bio-based functional materials has driven a shift away from fossil-fuel-sourced materials toward renewable lignocellulosic biomass (LCB). This comprehensive review explores the advancements in LCB carbonization between 2020 and 2026, marking a shift from traditional, low-yield combustion processes t...
H. Appiah, Sang Hyeok Park, J. V. Tongco· C++ Conference· 1 citation
The increasing global energy demand and the urgent necessity to mitigate greenhouse gas emissions have driven the exploration of renewable energy alternatives to fossil-based fuels, such as biofuels derived from sustainable biological sources. Among various potential feedstocks, microalgae have gained considerable atte...
R. P. Anugraha, Adelia Melita Sari, Habib Nurrohim et al.· Reaktor· 0 citations
The increasing demand for sustainable aviation fuel (SAF) is driving the development of integrated pathways for renewable fuel production. Algae-based biocrude produced through hydrothermal liquefaction (HTL) represents a promising route due to the high productivity of microalgae, flexible feedstock utilization, and mi...
E. Iboustaten, Oussama Bayssi, Loubna Bousselamti et al.· Biomass Conversion and Biore...· 0 citations
Abstract
The escalating global energy demand and environmental concerns associated with fossil fuels have intensified the search for sustainable alternatives. Agro solid waste offers a large volume of lignocellulosic material, a sustainable, underutilized resource material to develop a wide portfolio of renewable ener...
I. Bassey, J. Babatola, O. M. Ojo et al.· FUTA JOURNAL OF ENGINEERING...· 0 citations
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