Tiwari Harshit, Prajapati Sanjeev Kumar
Environment and Biofuel Research Lab (EBRL), Department of Hydro and Renewable Energy, Indian Institute of Technology (IIT) Roorkee, Uttarakhand, 247667, India.
Heliyon. 2024 Sep 10;10(18):e37539. doi: 10.1016/j.heliyon.2024.e37539. eCollection 2024 Sep 30.
Hydroponic effluent (HE), enriched with inorganic nutrients, presents a viable, low-cost cultivation medium for microalgal biomass production and subsequent resource recovery. However, downstream processing, particularly biomass harvesting, remains a critical challenge for microalgal biorefineries. Therefore, the present study explored the potential of microalgal-fungal pellets (MAFP) in HE recycling for the production of biochemical-rich biomass. The optimized fungi-to-microalgae ratio (F:A) of 1:3 resulted in 100 % microalgal pelletization within 6 h. Surface characteristics suggested that metabolically active fungi with opposite charges facilitate microalgal pelletization. Further, MAFP exhibited a packed porous structure that was resilient to shear forces and had a high capacity for nutrient uptake. MAFP cultivation in HE demonstrated complete removal of ammonia-nitrogen (NH₃-N), phosphate (PO₄³⁻), and nitrate-nitrogen (NO₃⁻-N) within 7-9 days. The produced biomass was rich in biomolecules, including lipids (18.36 ± 0.12 % TS), protein (52.06 ± 2.1 % TS), and carbohydrates (28.95 ± 0.05 % TS). Besides, the high methane potential of MAFP (SMP ≈ 502.74 ± 19.1 mL CH g VS, and TMP ≈ 817.68 ± 12.5 mL CH g VS) indicated its suitability for biogas production. In essence, MAFP offers efficient HE recycling and biochemically rich biomass production, advancing towards a green and circular bioeconomy.
富含无机营养物的水培废水是一种可行的低成本微藻生物质生产及后续资源回收的培养基。然而,下游加工,尤其是生物质收获,仍然是微藻生物精炼厂面临的关键挑战。因此,本研究探索了微藻-真菌颗粒(MAFP)在水培废水循环利用中生产富含生物化学物质的生物质的潜力。优化后的真菌与微藻比例(F:A)为1:3,可在6小时内实现100%的微藻造粒。表面特性表明,带相反电荷的代谢活跃真菌有助于微藻造粒。此外,MAFP呈现出一种紧密的多孔结构,对剪切力具有弹性,且具有高营养吸收能力。在水培废水中培养MAFP可在7-9天内完全去除氨氮(NH₃-N)、磷酸盐(PO₄³⁻)和硝酸盐氮(NO₃⁻-N)。所产生的生物质富含生物分子,包括脂质(18.36±0.12% TS)、蛋白质(52.06±2.1% TS)和碳水化合物(28.95±0.05% TS)。此外,MAFP的高甲烷潜力(SMP≈502.74±19.1 mL CH g VS,TMP≈817.68±12.5 mL CH g VS)表明其适合用于沼气生产。从本质上讲,MAFP可实现高效的水培废水循环利用和生产富含生物化学物质的生物质,朝着绿色循环生物经济迈进。