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2,163 results for “sustainability”
FIGURE 4. Leptochiton lignatilis n in A new Miocene deep-sea chiton and early evidence for Teredinidae-sustained wood-fall communities
FIGURE 4. Leptochiton lignatilis n. sp., from the Miocene (Langhian) of Moncasale di Casina (Reggio Emilia, N Italy). 1. Paratype MZPD MAL-2077, dorsal view of a fragment of an intermediate valve. 2. Close-up of the specimen as in Figure 4.1 showing granules.
FIGURE 3. Leptochiton lignatilis n in A new Miocene deep-sea chiton and early evidence for Teredinidae-sustained wood-fall communities
FIGURE 3. Leptochiton lignatilis n. sp., from the Miocene (Tortonian) of Torrente Cinghio (Parma, N Italy, type locality). 1-2. Paratype MZB 32033, intermediate valve in dorsal (1) and profile view (2). 3-4. Paratype NHMW 2014/0451/ 0001, fragment of a tail valve showing apophysis (ap in 3) and close-up (white rectangle in 3) showing variation in granule shape (4) from circular (white triangles) to elongate (black triangles). 5-8. Paratype MZPD MAL-2076, detail of a fragment of an intermediate valve showing granule arrangement (5, 7) and macro and microaesthetes (6, 8).
FIGURE 2. Leptochiton lignatilis n in A new Miocene deep-sea chiton and early evidence for Teredinidae-sustained wood-fall communities
FIGURE 2. Leptochiton lignatilis n. sp. from the Miocene (Tortonian) of Torrente Cinghio (Parma, N Italy, type locality). 1-4. Holotype, tail valve MGPT-PU 108787 in dorsal (1), ventral (2) and lateral (3) views, and close up (white rectangle in 1) showing sculpture (4). 5. Paratype NHMW 2014/0451/0002, tail valve with a more protruding mucro. 6-7. Paratype MGPT-PU 108788, head valve in dorsal view (6) and close up (white rectangle in 6) showing sculpture (7). 8-9. Paratype MZPD MAL-2074, intermediate valve in dorsal view (8) and close up (white rectangle in 8) showing granules with aesthetes (9).
FIGURE 1 in A new Miocene deep-sea chiton and early evidence for Teredinidae-sustained wood-fall communities
FIGURE 1. Location of the study area and of the Torrente Cinghio and Moncasale sites (asterisks) in the structural map (1) of northern Italy (modified from Scrocca et al., 2003) and in their respective geological setting (2-3) as modified from Papani (2002) and Di Dio and Zanzucchi (2005).
FIGURE 3 in Diversity of Loricariidae (Actinopterygii: Siluriformes) assemblages in two Conservation Areas of the Middle Xingu River, Brazilian Amazon, and their suitability for sustainable ornamental fisheries
FIGURE 3 | Principal component analysis (PCA) for composition of ornamental fish species based on the method of capture (Hellinger transformation), considering the two extractive reserves.
FIGURE 4 in Diversity of Loricariidae (Actinopterygii: Siluriformes) assemblages in two Conservation Areas of the Middle Xingu River, Brazilian Amazon, and their suitability for sustainable ornamental fisheries
FIGURE 4 | Principal Component Analysis (PCA) of fish composition in the drainages of both the Xingu and Iriri River RESEXes (Hellinger transformation). Only species names that made greatest contributions to compositional differences are shown.
FIGURE 2 in Diversity of Loricariidae (Actinopterygii: Siluriformes) assemblages in two Conservation Areas of the Middle Xingu River, Brazilian Amazon, and their suitability for sustainable ornamental fisheries
FIGURE 2 | Venn diagram showing the compositions of the Loricariidae species found in both extractive reserves.
A parametric life cycle framework to promote sustainable-by-design product development: Application to a hydrogen production technology
<p>The European Ecodesign Directive is an effective normative framework that has been extensively proven to support the energy transition of numerous European industrial sectors. From an analytical standpoint, it provides practitioners with the EcoReport tool, a simplified life cycle spreadsheet that is aimed at guiding the development of ecodesign measures of mandatory compliance in European countries. In this regard, several studies have highlighted the limitations of the EcoReport tool when addressing emerging technologies like those tied to the hydrogen sector. These works also propose to further integrate material criticality and social metrics in order to enlarge the scope of the European Directive and foster the shift from ecodesign to sustainable-by-design product development. In this situation, building upon the principles of the EcoReport tool and recognizing the outcomes of the aforementioned critical analyses, the conceptualization of a novel sustainable-by-design framework is presented and applied to a Solid Oxide Electrolysis Cell (SOEC) stack for hydrogen production. The operationalization of the framework is conducted, for the first time in the context of sustainable design, by combining the use of the <em>Brightway2</em> and <em>lca_algebraic</em> Python packages. Overall, the proposed approach succeeds in providing a complete sustainability perspective to the design of emerging technologies. Regarding the tangible lessons learned on the hydrogen-related case study, product concepts are proven to progressively improve the sustainability performance of the technology. It is noticeable that the enhancement of the economic competitivity is more limited than that achieved at the remaining sustainability indicators (i.e., environmental, social and material criticality metrics). In line with the outcomes of the life cycle contribution assessment, multi-criteria decision analysis ratings lead to concluding that a sustainable-by-design SOEC stack product concept should prioritize limiting its material intensity.</p>
Dataset on THE INFLUENCE OF INNOVATION, KNOWLEDGE MANAGEMENT, AND E-COMMERCE ADOPTION ON MSME PERFORMANCE, AND ITS IMPACT ON MSMEs SUSTAINABILITY
<p>Dataset on THE INFLUENCE OF INNOVATION, KNOWLEDGE MANAGEMENT, AND E-COMMERCE ADOPTION ON MSME PERFORMANCE, AND ITS IMPACT ON MSMEs SUSTAINABILITY</p>
Eumelanin-Enhanced Photothermal Disinfection of Contact Lenses Using a Sustainable Marine Nanoplatform Engineered with Electrospun Nanofibers_(antibacterial study - S.aureus)
<p>Eumelanin-Enhanced Photothermal Disinfection of Contact Lenses Using a Sustainable Marine Nanoplatform (antibacterial study - S.aureus)</p>
Fig. 2 in A sustainable mass rearing method for western flower thrips, Frankliniella occidentalis (Thysanoptera: Thripidae)
Fig. 2. Diagram of life cycle, rearing procedures, and label coding for Frankliniella occidentalis. (A) Frankliniella occidentalis male (lef) and female (right) adults; (B) egg-infested cotyledon; (C) nymph-infested cotyledon; (D) pupae under filter paper in rearing container; cots = cotyledons.
Fig. 1 in A sustainable mass rearing method for western flower thrips, Frankliniella occidentalis (Thysanoptera: Thripidae)
Fig. 1. (A) Shirofumi soybean sprout with cotyledons ready to harvest (circled). (B) Metal tray housing immature stages of Frankliniella occidentalis in insect rearing containers with secondary standard Petri dish lids on top of ventilated mesh lids. Records of dates maintained and life stages present in containers are kept on each colony lid.
Exploring the Synergy of Enhanced Weathering and Bacillus subtilis: A Promising Strategy for Sustainable Agriculture
<p>Data: Exploring the Synergy of Enhanced Weathering and Bacillus subtilis: A Promising Strategy for Sustainable Agriculture</p>
Public Procurement: a systemic approach to sustainability and technology – SAPIENS Network Webinar Series
<p>On the 5th of June 2024, the SAPIENS Network Early Stage Researchers <a href="https://sapiensnetwork.eu/research/early-stage-researcher-projects/sap-in-construction/">Alexandru Buftic</a> (Babeș-Bolyai University), <a href="https://sapiensnetwork.eu/research/early-stage-researcher-projects/delivering-sap-through-collaboration/">Felippe Vilaça</a> (University of Gävle), <a href="https://sapiensnetwork.eu/research/early-stage-researcher-projects/measuring-lcc/">Haitham Ghaida</a> (Hasselt University) and <a href="https://sapiensnetwork.eu/research/early-stage-researcher-projects/industry-4-for-sp/">Nadia Sava</a> (Babeș-Bolyai University) delivered a scientific webinar on the topic of <em>Public Procurement: a systemic approach to sustainability and technology</em>.</p> <p>The webinar was moderated by <a href="https://sapiensnetwork.eu/dacian-dragos/">Dacian C. Dragoș</a>, Professor of Administrative and European Law with the Public Administration and Management Department at Babes-Bolyai University, <a href="https://sapiensnetwork.eu/sebastien-lizin/">Sebastien Lizin</a>, Assistant Professor at the Faculty of Business Economics and vice-chair of the Department of Economics at Hasselt University and <a href="https://www.linkedin.com/in/roxana-vornicu-phd-49470347/">Roxana Vornicu</a>, PhD, Senior Lecturer at King´s College London, Centre of Construction Law, and Managing Partner of Sirbu & Vornicu Law.</p> <p>The webinar tackled various current challenges related to sustainability in public procurement. The presentations covered different topics, united by the concepts of sustainability and digitalisation in public procurement. The speakers highlighed the value of taking a systemic approach to sustainability in public procurement, the role of monitoring green and sustainable considerations in the process, the importance of EU legislation in the uptake of sustainability as well as effect of life cycle assessment reserch for sustainable building design. </p>
Assessing Student Sustainable Learning Engagement in Mobile Learning through Social Cognitive Theory and Social Learning Theory
<p><span>Data collected and processed as part of the ODDEA (Overcoming Digital Divide Between Europe and Southeast Asia) EU research project (<em>Project ID: HORIZON MSCA-SE 101086381)</em>.</span><span> the data was collected as part of ODDEA WP2.</span></p>
Linked collectors and determiners for: Scavenging Amphipods, Porcupine Abyssal Plain Sustained Observatory, North Atlantic, 1985-2016.
Natural history specimen data linked to collectors and determiners held within, "Scavenging Amphipods, Porcupine Abyssal Plain Sustained Observatory, North Atlantic, 1985-2016". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/27448b7d-f4c5-4ccf-9ffc-31c91bf42cec">https://bionomia.net/dataset/27448b7d-f4c5-4ccf-9ffc-31c91bf42cec</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/27448b7d-f4c5-4ccf-9ffc-31c91bf42cec">https://gbif.org/dataset/27448b7d-f4c5-4ccf-9ffc-31c91bf42cec</a>. Formatted as a Frictionless Data package.
implications_sustainable_diets_dataset
<p>Datasets for the figure creation and analysis code available in the paired <a href="https://github.com/klau506/implications_sustainable_diets">GitHub repository</a>. These data and the analysis code support the journal publication Rodés-Bachs, C., Sampedro, J., Van de Ven, D., Horowitz, R., Pardo, G., and Zhao, X. (2024) <em>Environmental and societal implications of transitioning to sustainable diets.</em></p> <h3>How to use this data?</h3> <ol> <li>Download the data from this Zenodo archive and unpack the files.</li> <li>Clone or download this <a href="https://github.com/klau506/implications_sustainable_diets/tree/diets_v1">code version</a> from the GitHub repository.</li> <li>Run the code. If you are familiarized with Docker we recommend you to follow option `a)`, which provides you an R running environment. Otherwise, you can follow option `b)`, which requires Rstudio and to install manually the necessary libraries. <ol> <li> <p>Download <a href="https://docs.docker.com/get-docker/" rel="nofollow">Docker</a>, open Docker Desktop, and download the following docker image through your console:</p> <div> <pre><code>docker pull claudiarodes/implications_sustainable_diets:diets_v1 </code><br>Run the docker image adjusting the full path to the repository folder:</pre> </div> <div> <pre><code>docker run -v /full_path_to_the_repository_folder/implications_sustainable_diets:/app -it implications_sustainable_diets</code> </pre> </div> <p>Run the <code>R/paper_analysis.R</code>script to produce all the figures of the study, both from the main manuscript and the supplementary information and the <code>R/paper_methodology.R</code> script to produce the graphics to illustrate the ensemble design and uncertainty dimensions considered in the study.</p> </li> <li> <p>Download <a href="https://posit.co/products/open-source/rstudio/" rel="nofollow">RStudio</a>, open it, and run the <code>R/paper_analysis.R</code> script to produce all the figures of the study, both from the main manuscript and the supplementary information and the <code>R/paper_methodology.R</code> script to produce the graphics to illustrate the ensemble design and uncertainty dimensions considered in the study.</p> </li> </ol> </li> </ol> <pre> </pre> <h3>Funding source</h3> <p>This project has received funding from the European Union's Horizon 2020 research and innovation program under grant agreement number 101056306 (IAM COMPACT project).</p>
TOPSIS method application on sustainability indicators of Higher Education Institutions of Brazilian municipalities
<p>TOPSIS method application on sustainability indicators of Higher Education Institutions of Brazilian municipalities</p>
A review of systems modelling for local sustainability
<p>This repository provides the data used in: Moallemi, E. A., Bertone, E., Eker, S., Gao, L., Szetey, K., Taylor, N., & Bryan, B. A. (2021). A review of systems modelling for local sustainability. <em>Environmental Research Letters</em>. </p>
Biopesticides and field margin vegetation for sustainable lablab crop production
<p>The data presents the effect of botanical insecticides, in the presence of field margin vegetation on aphids (abundance, severity of damage and percent incidence), number and diversity of natural enemies and growth and yield of lablab beans in the highlands of Rift Valley, Kenya. A clearly discernible reduction in the abundance, severity of damage and incidence of aphids, enhanced number and diversity of natural enemies and increased grain yield of lablab bean.</p>
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.