There are millions of tons of post-food processing residues discarded annually. Currently, these waste materials are discarded to landfill, used as animal feed or incinerated. This suggests that there are potential uses for these materials in value-added applications. This work focuses on the characterization and valorization of peanut hulls through the generation of green composites. Peanut hulls were pyrolyzed at 500 °C and analyzed to discover their unique surface morphology and relatively low ash content. Raman spectral analysis determined I/I values of 0.74 for the samples, suggesting greater graphitic content than disordered carbon content. Such results were confirmed in X-ray diffraction analysis by the presence of (002) and (100) planes. Partially biobased engineering thermoplastic, poly(trimethylene terephthalate) (PTT), was combined with 20 wt.% biocarbon. The tensile and flexural moduli improved with the addition of biocarbon, and the bio-content increased from 35 to 48 wt.% as compared to neat PTT. The higher temperature biocarbon was found to have superior performance over the lower temperature sample. The enhanced sustainability of these materials suggested that peanut hulls can be valorized via thermochemical conversion to generate value-added products. Future works could focus on the optimization of these materials for non-structural automotive components or electrical housings.
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http://dx.doi.org/10.1038/s41598-020-59582-3 | DOI Listing |
Int J Biol Macromol
December 2024
Key Laboratory of Ecology and Environment in Minority Areas, Minzu University of China, National Ethnic Affairs Commission, Beijing 100081, China; Beijing Engineering Research Center of Food Environment and Public Health, College of Life and Environmental Sciences, Center for Bioimaging & System Biology, Minzu University of China, Beijing 100081, China. Electronic address:
Lignin represents a potentially significant natural sunscreen alternative due to its good UV-absorbing ability, but its poor UVA absorption and dark colour are still obstacles. Numerous methods have been developed to whiten the colour of lignin, mainly including aromatic ring interruption and hydroxyl group blocking. However, these complicated procedures would weaken the UV-blocking and radical scavenging abilities.
View Article and Find Full Text PDFAnimals (Basel)
September 2024
State Key Laboratory of Animal Nutrition and Feeding, College of Animal Science and Technology, China Agricultural University, Beijing 100193, China.
Front Nutr
August 2024
Geisel School of Medicine, Dartmouth College, Hanover, NH, United States.
J Environ Qual
September 2024
Savannah River Ecology Laboratory, University of Georgia, Aiken, South Carolina, USA.
Major weather events contribute to the mobility and remobilization of legacy mercury (Hg) contamination and sequestration within sediments. Remediation using biochar as a soil amendment is a useful technique to immobilize and decrease Hg toxicity. This study explored whether biochar application is effective at stabilizing labile mercury (LaHg) from floodplain sediment.
View Article and Find Full Text PDFInt J Environ Health Res
June 2024
Laboratoire des Plantes Aromatiques et Médicinales, Centre de Biotechnologie de Borj Cédria (CBBC), Hammam-Lif, Tunisia.
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