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134 results for “LIME”
Figure 3 in Histopathological aspects in ripe fruits of Tahiti lime Citrus citrus x latifolia (Rutaceae) affected by phytophagous mites
Figure 3. Histochemical tests applied to Tahiti lime pericarps affected by phytophagous mites (Cross sections). A–C. Pericarps affected by Polyphagotarsonemus latus, Phyllocoptruta oleivora and Schizotetranychus hindustanicus respectively. A dark brown stain can be observed due to the accumulation of polyphenols in the OEX: exocarpal layers (white arrows, Fast Blue B); D–F. Pericarps affected by Po. latus, Ph. Oleivora and S. hindustanicus respectively. A magenta stain can be observed due to the accumulation of lignin in the exocarpal layers (white arrows, Phloroglucinol acid); G–I. Pericarps affected by Po. latus, Ph. Oleivora and S. hindustanicus respectively. Callose was not detected in the exocarpal layers (Lacmoid). Melanin deposits were observed; J–L. Pericarps affected by Po. latus, Ph. Oleivora and S. hindustanicus respectively. Primary walls stain magenta and no protein or starch granules were detected (PAS-Amidoblack); M–O. Pericarps affected by Po. latus, Ph. Oleivora and S. hindustanicus respectively. Primary walls are stained purple, lignified tissues blue-green, and polyphenols brown or black (Toluidine Blue). Schizotetranychus hindustanicus lesions are restricted to feeding zones below nests (Fig. 3O) (White arrows). Peridermis formation was observed in all cases (Fig. 3A–O). CU: cuticle; IEX: inner exocarp; ME: Melanin; OEX: outer exocarp; PP: primary walls; PR: Peridermis.
Figure 2. A–E in Histopathological aspects in ripe fruits of Tahiti lime Citrus citrus x latifolia (Rutaceae) affected by phytophagous mites
Figure 2. A–E. Histochemical tests applied to healthy Tahiti lime pericarps (cross sections). A. Polyphenols Test (Fast Blue B). No positive reaction for polyphenols is observed in the exocarpal layers; B. The reaction for lignin detection (phloroglucinol acid) is negative in the exocarpal layers, but it is positive in lignified tissues (reddish staining) such as the fruit xylem (detail, white arrow); C. Callose reaction (Lacmoid) is negative in the exocarpal layers, but positive (blue staining) in fruit phloem (detail, arrow heads); D. PAS-Amidoblack test, the primary walls of the exocarpal layers and starch granules are stained magenta; E. Toluidine Blue stain, the primary walls of the exocarpal layers stain violet and cuticle dark blue. CU: cuticle; GA: starch granules; IEX: inner exocarp; OEX: outer exocarp; PP: primary walls.
Eight Mile Lake Research Watershed, Carbon in Permafrost Experimental Heating Research (CiPEHR): Winter ecosystem respiration measurements using soda lime, 2010-2019
The Carbon in Permafrost Experimental Heating Research (CiPEHR) project addresses the following questions: 1) Does ecosystem warming cause a net release of C from the ecosystem to the atmosphere?, 2) Does the decomposition of old C, that comprises the bulk of the soil C pool, influence ecosystem C loss?, and 3) How do winter and summer warming alone, and in combination, affect ecosystem C exchange? We are answering these questions using a combination of field and laboratory experiments to measure ecosystem carbon balance and radiocarbon isotope ratios at a warming experiment located in an upland tundra field site near Healy, Alaska in the foothills of the Alaska Range. Soda Lime absorption of CO2 over the winter season is a method of estimating cumulative soil respiration across the site.
Toorlectra - Lime kiln example 2
Lime kilns were structures in which limestone was heated to a high temperature to produce quicklime. lime kilns were filled from the top, and could also be unloaded from the top, access to the top was necessary. Therefore, kilns were generally constructed on either a rock face or earthen bank to permit this. Ramps were sometimes built to allow access. Source: Objaverse 1.0 / Sketchfab
Lime Kiln Excavation Final
A high quality cloud/medium mesh build of the excavated section of the probable lime kiln at Lindisfarne. This model was constructed from 146 images taken with the Scann3D app for Android, and was constructed using Metashape for MacOS. The images were shot on the last day of excavation of the 2021 season, September 26th, 2021. Source: Objaverse 1.0 / Sketchfab
Lindisfarne Lime Kiln Excavation Final - HQ
A high quality cloud/medium mesh build of the excavated section of the probable lime kiln at Lindisfarne. This model was constructed from ~165 images taken with the Scann3D app for Android, and was assembled using Metashape for MacOS. The images were shot on the last day of excavation of the 2021 season, September 26th, 2021. Source: Objaverse 1.0 / Sketchfab
Lindisfarne lime kiln, 2021_Sept_19
Possible 11th century lime kiln excavation at Lindisfarne Priory, Holy Island, Northumberland, England, UK Created using 3D Scanner for Android Captured on September 19th, 2021 Source: Objaverse 1.0 / Sketchfab
Lower reproductive rates of Asian citrus psyllid (Hemiptera: Psyllidae) on 'Tahiti' acid lime than on 'Valencia' sweet orange
<p>In Brazil, ‘Tahiti’ acid lime is usually found growing near sweet orange orchards, the main citrus grown in the country. As all citrus types, ‘Tahiti’ is susceptible to <em>Candidatus</em> Liberibacter asiaticus (CLas), the pathogen associated with huanglongbing (HLB), the most devasting citrus disease, and hosts the vector of CLas, the Asian citrus psyllid (ACP) <em>Diaphorina citri</em>. ‘Tahiti’ could then be contributing to spread CLas between ‘Tahiti’ and sweet orange orchards. Given the lack of comparative studies on the suitability of ‘Tahiti’ and sweet oranges to reproduce ACP a study was undertaken inside an acclimatized room (AR) and greenhouse (GH) involving healthy ‘Tahiti’ and ‘Valencia’ sweet orange plants. Daily temperature and relative humidity averaged 22ºC and 60% inside AR and 24°C and 70% inside GH. Two ACP couples were kept caged for 3 days on new shoots. Egg number and time for egg to hatch nymphs were assessed in AR and GH, and survival rates and time for nymphs to become adults in GH. Overall, ‘Tahiti’ was 3.5 times less suitable to ACP than ‘Valencia’. Egg number and nymph survivals were 27% and 59% lower, and the life cycle 34% longer on ‘Tahiti’ than on ‘Valencia’. Potential impacts of the results on CLas spread and HLB control are discussed.</p>
Old lime worker, Grinlow Woods, Buxton
A wooden carved statue in the woodland above Poole's Cavern. After participating in the online built heritage photogrammetry workshop organised by the Chance Heritage Trust with tutor Kimberley, I went out and photographed this statue. Canon 6D plus Canon EF 24-105 L lens set at 35mm. Autoexposure at f8. All images in portait orientation. Photographed in RAW, then small adjustments to some of the images in Lightroom to reduce contrast and exported as JPEGs downsized to 4000 pixels on the long side. 108 images in total. Source: Objaverse 1.0 / Sketchfab
Kalkovnsruin på Værnes / Lime kiln at Værnes
Ruin av en kalkovn som ble brukt til brenning av kalk under bygging av middelalderkirken på Værnes i Stjørdal kommune. Trekull fra ovnen er datert 1160 – 1265 e.Kr. Ruin of a Lime kiln used to make lime mortar in the building of the medieval stone church at Værnes in Stjørdal municipally. Charcoal from the furnace has been dated to AD 1160 – 1265. Foto og 3D-modellering Raymond Sauvage, NTNU Vitenskapsmuseet. Photo and 3D-modelling Raymond Sauvage, NTNU University Museum. Source: Objaverse 1.0 / Sketchfab
Testing of different methods to induce lime stress responses in grapevine rootstocks - supplementary figures
<p>Defined experiments are necessary to clarify the response to nutrient deficiency. The study tested different options to induce lime stress in pot experiments to select the most appropriate method with grapevine roostocks.We tested soil substrates, an hydroponic culture and an inert sand substrate by adding KHCO3. Grapevine rootstocks Teleki 5C, Couderc 3309 and Fercal were used. The figures represent supplementary material of the obtained phenotype with the different rootstocks and testing conditions.</p>
Figure 4 in A new Euseius species on citrus and wild lime, Zanthoxylum fagara (Rutaceae), in Florida and an updated key to Euseius species from the state
Figure 4 Euseius ennsin. sp., male. A – Ventrianal shield; B – Spermatodactyl.
Figure 3 in A new Euseius species on citrus and wild lime, Zanthoxylum fagara (Rutaceae), in Florida and an updated key to Euseius species from the state
Figure 3 Euseius ennsin. sp., male. Dorsal view.
Figure 2 in A new Euseius species on citrus and wild lime, Zanthoxylum fagara (Rutaceae), in Florida and an updated key to Euseius species from the state
Figure 2 Euseius ennsin. sp., female. A – Ventral shields; B – Spermatheca; C – Leg IV.
Figure 1 in A new Euseius species on citrus and wild lime, Zanthoxylum fagara (Rutaceae), in Florida and an updated key to Euseius species from the state
Figure 1 Euseius ennsin. sp., female. Dorsal view.
LiMeS-lab: An integrated laboratory for the development of Liquid-Metal Shield technologies for fusion reactors
<p>The liquid metal shield laboratory (LiMeS-Lab) will provide the infrastructure to develop, test, and compare liquid metal divertor designs for future fusion reactors. The main research topics of LiMeS-lab will be liquid metal interactions with the substrate material of the divertor, the continuous circulation and capillary refilling of the liquid metal during intense plasma heat loading and the retention of plasma particles in the liquid metal. To facilitate the research, four new devices are in development at the Dutch Institute for Fundamental Energy Research and the Eindhoven University of Technology: LiMeS-AM: a custom metal 3D printer based on powder bed fusion; LiMeS-Wetting, a plasma device to study the wetting of liquid metals on various substrates with different surface treatments; LiMeS-PSI, a linear plasma generator specifically adapted to operate continuous liquid metal loops. Special diagnostic protection will also be implemented to perform measurements in long duration shots without being affected by the liquid metal vapor; LiMeS-TDS, a thermal desorption spectroscopy system to characterize deuterium retention in a metal vapor environment. Each of these devices has specific challenges due to the presence and deposition of metal vapors that need to be addressed in order to function. In this paper, an overview of LiMeS-Lab will be given and the conceptual designs of the last three devices will be presented.</p>
Images of Construction and Demolition Waste Consting of Brick and Sand-lime Brick Transported on a Conveyor Belt - Recording with a Mass Flow of 20 g per s and a Mixing Ratio of 95 vs. 5 %
<p>This data set comprises images of bulk material of brick and sand-lime brick on a conveyor belt. The images were recorded on the small-scale optical belt sorter Tablesort. A thorough description of the system can be found in</p> <ul> <li><em>Georg Maier, Florian Pfaff, Christoph Pieper, Robin Gruna, Benjamin Noack, Harald Kruggel-Emden,Thomas Längle, Uwe D. Hanebeck, Jürgen Beyerer</em>, <strong>Experimental Evaluation of a Novel Sensor-Based Sorting Approach Featuring Predictive Real-Time Multiobject Tracking</strong>,Transactions on Industrial Electronics, February 2020.</li> <li>See also the <a href="https://www.iosb.fraunhofer.de/en/projects-and-products/insideschuettgut">project website</a>.</li> </ul> <p>This dataset is part of a batch of recordings of construction and demolition waste consisting of brick and sand-lime brick on optical sorters. Please use the search function with the keywords "Images of Construction and Demolition Waste" (in quotes) to find them. The data set was recorded with a Bonito CL-400C. Please see the debayer script on GitHub <a href="https://github.com/geomai/debayer_bonito">https://github.com/geomai/debayer_bonito</a>. The frame rate is approximately 192 Hz.</p> <p><br> To this date, publications that used this data include</p> <ul> <li><em>Marcel Reith-Braun, Albert Bauer, Maximilian Staab, Florian Pfaff, Georg Maier, Robin Gruna, Thomas Längle, Jürgen Beyerer, Harald Kruggel-Emden and Uwe D. Hanebeck</em>, <strong>GridSort: Image-based Optical Bulk Material Sorting Using Convolutional LSTMs</strong>, 22nd IFAC World Congress, Yokohama, Japan, July 2023.</li> </ul> <p><strong>Acknowledgment</strong><br> The IGF project 20354 N of the research association Forschungs-Gesellschaft Verfahrens-Technik e.V. (GVT) was supported via the AiF in a program to promote the Industrial Community Research and Development (IGF) by the Federal Ministry for Economic Affairs and Climate Action on the basis of a resolution of the German Bundestag.</p> <p> </p>
Images of Construction and Demolition Waste Consting of Sand-lime Brick Transported on a Conveyor Belt - Recording with a Mass Flow of 15 g per s
<p>This data set comprises images of bulk material of sand-lime brick on a conveyor belt. The images were recorded on the small-scale optical belt sorter Tablesort. A thorough description of the system can be found in</p> <ul> <li><em>Georg Maier, Florian Pfaff, Christoph Pieper, Robin Gruna, Benjamin Noack, Harald Kruggel-Emden,Thomas Längle, Uwe D. Hanebeck, Jürgen Beyerer</em>, <strong>Experimental Evaluation of a Novel Sensor-Based Sorting Approach Featuring Predictive Real-Time Multiobject Tracking</strong>,Transactions on Industrial Electronics, February 2020.</li> <li>See also the <a href="https://www.iosb.fraunhofer.de/en/projects-and-products/insideschuettgut">project website</a>.</li> </ul> <p>This dataset is part of a batch of recordings of construction and demolition waste consisting of brick and sand-lime brick on optical sorters. Please use the search function with the keywords "Images of Construction and Demolition Waste" (in quotes) to find them. The data set was recorded with a Bonito CL-400C. Please see the debayer script on GitHub <a href="https://github.com/geomai/debayer_bonito">https://github.com/geomai/debayer_bonito</a>. The frame rate is approximately 192 Hz.</p> <p><br> To this date, publications that used this data include</p> <ul> <li><em>Marcel Reith-Braun, Albert Bauer, Maximilian Staab, Florian Pfaff, Georg Maier, Robin Gruna, Thomas Längle, Jürgen Beyerer, Harald Kruggel-Emden and Uwe D. Hanebeck</em>, <strong>GridSort: Image-based Optical Bulk Material Sorting Using Convolutional LSTMs</strong>, 22nd IFAC World Congress, Yokohama, Japan, July 2023.</li> </ul> <p><strong>Acknowledgment</strong><br> The IGF project 20354 N of the research association Forschungs-Gesellschaft Verfahrens-Technik e.V. (GVT) was supported via the AiF in a program to promote the Industrial Community Research and Development (IGF) by the Federal Ministry for Economic Affairs and Climate Action on the basis of a resolution of the German Bundestag.</p>
Images of Construction and Demolition Waste Consting of Brick and Sand-lime Brick Transported on a Conveyor Belt - Recording with a Mass Flow of 15 g per s and a Mixing Ratio of 10 vs. 90 %
<p>This data set comprises images of bulk material of brick and sand-lime brick on a conveyor belt. The images were recorded on the small-scale optical belt sorter Tablesort. A thorough description of the system can be found in</p> <ul> <li><em>Georg Maier, Florian Pfaff, Christoph Pieper, Robin Gruna, Benjamin Noack, Harald Kruggel-Emden,Thomas Längle, Uwe D. Hanebeck, Jürgen Beyerer</em>, <strong>Experimental Evaluation of a Novel Sensor-Based Sorting Approach Featuring Predictive Real-Time Multiobject Tracking</strong>,Transactions on Industrial Electronics, February 2020.</li> <li>See also the <a href="https://www.iosb.fraunhofer.de/en/projects-and-products/insideschuettgut">project website</a>.</li> </ul> <p>This dataset is part of a batch of recordings of construction and demolition waste consisting of brick and sand-lime brick on optical sorters. Please use the search function with the keywords "Images of Construction and Demolition Waste" (in quotes) to find them. The data set was recorded with a Bonito CL-400C. Please see the debayer script on GitHub <a href="https://github.com/geomai/debayer_bonito">https://github.com/geomai/debayer_bonito</a>. The frame rate is approximately 192 Hz.</p> <p><br> To this date, publications that used this data include</p> <ul> <li><em>Marcel Reith-Braun, Albert Bauer, Maximilian Staab, Florian Pfaff, Georg Maier, Robin Gruna, Thomas Längle, Jürgen Beyerer, Harald Kruggel-Emden and Uwe D. Hanebeck</em>, <strong>GridSort: Image-based Optical Bulk Material Sorting Using Convolutional LSTMs</strong>, 22nd IFAC World Congress, Yokohama, Japan, July 2023.</li> </ul> <p><strong>Acknowledgment</strong><br> The IGF project 20354 N of the research association Forschungs-Gesellschaft Verfahrens-Technik e.V. (GVT) was supported via the AiF in a program to promote the Industrial Community Research and Development (IGF) by the Federal Ministry for Economic Affairs and Climate Action on the basis of a resolution of the German Bundestag.</p>
Images of Construction and Demolition Waste Consting of Sand-lime Brick Transported on a Conveyor Belt - Recording with a Mass Flow of 20 g per s
<p>This data set comprises images of bulk material of sand-lime brick on a conveyor belt. The images were recorded on the small-scale optical belt sorter Tablesort. A thorough description of the system can be found in</p> <ul> <li><em>Georg Maier, Florian Pfaff, Christoph Pieper, Robin Gruna, Benjamin Noack, Harald Kruggel-Emden,Thomas Längle, Uwe D. Hanebeck, Jürgen Beyerer</em>, <strong>Experimental Evaluation of a Novel Sensor-Based Sorting Approach Featuring Predictive Real-Time Multiobject Tracking</strong>,Transactions on Industrial Electronics, February 2020.</li> <li>See also the <a href="https://www.iosb.fraunhofer.de/en/projects-and-products/insideschuettgut">project website</a>.</li> </ul> <p>This dataset is part of a batch of recordings of construction and demolition waste consisting of brick and sand-lime brick on optical sorters. Please use the search function with the keywords "Images of Construction and Demolition Waste" (in quotes) to find them. The data set was recorded with a Bonito CL-400C. Please see the debayer script on GitHub <a href="https://github.com/geomai/debayer_bonito">https://github.com/geomai/debayer_bonito</a>. The frame rate is approximately 192 Hz.</p> <p><br> To this date, publications that used this data include</p> <ul> <li><em>Marcel Reith-Braun, Albert Bauer, Maximilian Staab, Florian Pfaff, Georg Maier, Robin Gruna, Thomas Längle, Jürgen Beyerer, Harald Kruggel-Emden and Uwe D. Hanebeck</em>, <strong>GridSort: Image-based Optical Bulk Material Sorting Using Convolutional LSTMs</strong>, 22nd IFAC World Congress, Yokohama, Japan, July 2023.</li> </ul> <p><strong>Acknowledgment</strong><br> The IGF project 20354 N of the research association Forschungs-Gesellschaft Verfahrens-Technik e.V. (GVT) was supported via the AiF in a program to promote the Industrial Community Research and Development (IGF) by the Federal Ministry for Economic Affairs and Climate Action on the basis of a resolution of the German Bundestag.</p> <p> </p>
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