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Biodiesel quality associated with biochemical components of Chlorella pyrenoidosa and Scenedesmus obliquus under different nitrate levels were investigated. The highest lipid contents of 54.5% for C. pyrenoidosa and 47.7% for S. obliquus were obtained in nitrate absence. Carbohydrate peaked at 0.3gL(-1) with values of 40.7% for C. pyrenoidosa and 42.5% for S. obliquus. Protein content seemed species dependent, which decreased substantially to 11.2% in C. pyrenoidosa and 8.8% in S. obliquus under nitrate absence in present research. Better biodiesel quality (e.g. cetane number >58, iodine value <69) could be obtained from C. pyrenoidosa in nitrate absence and S. obliquus in 0.3gL(-1), where the highest saturated fatty acids (39.5 for C. pyrenoidosa, 31.2 for S. obliquus) and the lowest unsaturated fatty acids (60.5 for C. pyrenoidosa, 68.8 for S. obliquus) were obtained. These results suggest that microalgae grown in the presence of nitrogen may limit biodiesel quality.
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http://dx.doi.org/10.1016/j.biortech.2014.08.017 | DOI Listing |
RSC Adv
August 2025
Department of Chemistry, Faculty of Science, Cairo University Cairo Egypt
This study aims to valorize hazardous industrial marble machining and shaping waste powder as a precursor to prepare a heterogeneous nano-catalyst (CaO/KCO) employing the wet-impregnation method for producing biodiesel the transesterification of waste cooking oil (WCO). Surface and morphological characterization of the thus-prepared nano-catalyst has been performed employing various analytical tools, , XRD, BET, CO-TPD, FT-IR, HR-TEM, and FE-SEM & mapping EDX. The impact of calcination treatment on the catalytic performance is investigated together with the weight percentage (wt%) of CaO compared to KCO.
View Article and Find Full Text PDFAppl Biochem Biotechnol
September 2025
Institute of Engineering and Management, University of Engineering and Management, Kolkata, India.
Peat moss (Sphagnum) plays a crucial role in extenuating the environmental toxicity by swaying the microbial activity and acting as a natural filter for removing pollutants. The peatlands help in the purification of water by filtering out the contaminants and decomposing organic matter by creating anaerobic conditions that create impacts on microbial communities. Additionally, Sphagnum pays for carbon sequestration that makes a positive impact in the carbon sinks process for peatlands.
View Article and Find Full Text PDFMicroorganisms
August 2025
Laboratory of Wastewater Management and Treatment Technologies, Department of Environmental Engineering, Democritus University of Thrace, Vas. Sofias 12, 67132 Xanthi, Greece.
The citrus processing industry is an economically important agro-industrial sector worldwide; however, it produces significant amounts of waste annually. The biorefinery concept and the recovery of bio-based materials from agro-industrial residues, including citrus processing waste, are emphasized in the European Green Deal, reflecting the EU's commitment to fostering circularity. Biotreatment of citrus processing waste, including bioconversion into biomethane, biohydrogen, bioethanol and biodiesel, has been applied to valorize biomass for energy recovery.
View Article and Find Full Text PDFJ Environ Manage
August 2025
Department of Basic and Applied Sciences, University of Basilicata, Via dell'Ateneo Lucano 10, 85100, Potenza, Italy; Spinoff XFlies s.r.l, University of Basilicata, Via dell'Ateneo Lucano 10, 85100, Potenza, Italy. Electronic address:
Waste management and rising energy demand are two of the most pressing global challenges facing humanity. The Black Soldier Fly (BSF) offers a promising dual solution to both issues. As a key organism within the circular bioeconomy, BSF larvae (BSFL) convert organic waste into valuable biomass, producing high-value compounds such as lipids, proteins, and chitin.
View Article and Find Full Text PDFBioresour Technol
August 2025
Department of Forest Biomaterials, College of Natural Resources, North Carolina State University, 2820 Faucette Dr, Raleigh, NC 27607 USA. Electronic address:
The worldwide demand for graphite, as the main anode material for Li-ion batteries, is expected to double by 2028 since it supports the use of electricity, including transient renewable sources, for energy storage, sustainable mobility, and automation. However, the dependence on non-renewable and external resources jeopardizes the world supply chain. This study explores the technical and economic performance of transforming lignocellulosic biomass into biographite and fuel-grade hydrocarbons through pyrolysis bio-oil upgrading.
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