During last decades, there has been a growing interest of decreasing the environmental impact generated by humans. This situation has been approached from different perspectives being the integral use of raw materials as one of the best alternatives. It was estimated that 3.7 × 10 tonnes of agricultural residues are produced annually worldwide. Then, the integral use of feedstocks has been studied through the biorefinery concept. A biorefinery can be a promissory option for processing feedstocks in rural zones aiming to boost the techno-economic and social growth. However, many plants produced at small scale in rural zones without high industrial use contribute with residues usually not studied as raw materials for other processes. Cocoyam (Xanthosoma sagittifolium) is a plant grown extensively in tropical regions. Nigeria, China, and Ghana are the main producers with 1.3, 1.18, and 0.9 million tonnes/year, respectively. In Colombia, there are no technified crops, but it is used where it is grown mainly as animal feed. This plant consists of leaves, stem, and a tuber but the use is generally limited to the leaves, discarding the other parts. These discarded parts have great potential (lignocellulose and starch). This work proposes different processing schemes using the parts of the plant to obtain value-added products, and their techno-economic and environmental assessment. The simulation was performed with Aspen Plus and the economic package was used for the economic assessment. For the environmental assessment, Waste Algorithm Reduction of the U.S. EPA was implemented. The obtained results showed that the integral use of plants under a biorefinery scheme allows obtaining better techno-economic and environmental performance and that small-scale biorefineries can be a promissory option for boosting rural zones.
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http://dx.doi.org/10.1007/s11356-018-2313-7 | DOI Listing |
Introduction/purpose: Teleultrasound connects expert point-of-care ultrasound (POCUS) users with remote community and rural sites. Evolving technologies including handheld devices, upgraded image quality, and the ability to transmit over low bandwidth connections increase POCUS education, accessibility, and clinical integration. Potential teleultrasound venues include low-resource settings, prehospital care, and austere environments (high altitudes, microgravity, conflict zones, etc.
View Article and Find Full Text PDFPlants (Basel)
January 2025
Key Laboratory of Efficient Forage Production Mode, Ministry of Agriculture and Rural Affair, College of Grassland Science, Shanxi Agricultural University, Jinzhong 030801, China.
Grassland degradation is a serious ecological issue in the farming-pastoral ecotone of northern China. Utilizing native grasses for the restoration of degraded grasslands is an effective technological approach. is a superior indigenous grass species for grassland ecological restoration in northern China.
View Article and Find Full Text PDFPathogens
January 2025
Department of Microbiology and Immunology, Faculty of Pharmacy, "Ovidius" University of Constanta, Str. Căpitan Aviator Al. Șerbănescu, nr.6, Campus Corp C, 900470 Constanta, Romania.
Cystic echinococcosis (CE) is a neglected tropical parasitic disease linked with significant social and economic burdens worldwide. The scientific community has minimal information on echinococcosis in Romanian people, and hospital medical records are the only sources that may be used to investigate its status. A 7-year retrospective clinical study on pediatric patients with CE from Southeast Romania was performed, and 39 children and adolescents were included, aged 2-15 years old.
View Article and Find Full Text PDFAntibiotics (Basel)
January 2025
Laboratory of Quality Control, University of Brasília (UNB/FCE), Centro Metropolitano, Conjunto A, Lote 01, Ceilândia, Brasília 72220-900, DF, Brazil.
This study aimed to develop gel nanoemulsions (NEs) of Brazilian essential oils (EOs) from and , as well as to perform chemical characterization and investigate the antimicrobial activity of the EOs and NEs. : The main chemical compounds of EO were curzerene (34.80%) and germacrene B (11.
View Article and Find Full Text PDFAnimals (Basel)
January 2025
Scotland's Rural College, Roslin Institute Building, Easter Bush Campus, Midlothian EH25 9RG, UK.
This study aimed to identify if sensor technology could be used to detect sickness-type signs (caused by a live vaccine) in laying hens compared to physiological and clinical sign scoring and behaviour observation. The experiment comprised 5 replicate batches (4 hens and 12 days per batch) using previously non-vaccinated hens ( = 20). Hens were moved on day 1 to a large experimental room with various designated zones (e.
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