Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
22
datasets available to search
ShareScore release 0.7.1
Dataset results
22 results for “MBR”
Full-scale MBR coupled with PAC for the removal of 232 OMPs: operating conditions, conventional pollutants, concentration of OMPs, UHPLC-QTOF-MS analysis
<p>The spreadsheet contains data regarding the operation and performance of a full-scale MBR coupled with powdered activated carbon (PAC) added inside the reactor. This hybrid system is chosen to evaluate the removal of 232 organic micropollutants (OMPs) and the potential enhancement in the removal efficiencies with the addition of PAC at a concentration of 0.1 g/L and 0.2 g/L</p><ul><li>First worksheet contains minimum, maximum, and average concentrations of conventional pollutants (COD, BOD, SST, SSV, DOC, UV254, nitrogen compounds, phosphorous, <i>E. coli</i>) in the influent and effluent of the WWTP. Methodologies adopted are also reported.</li><li>Second worksheet reports the operating conditions of the full-scale MBR as well as information about the tubular UF membranes installed. Characteristics of the PAC purchased to perform the experiments regarding the removal of OMPs are also described.</li><li>Third worksheet reports minimum, maximum and average concentration of 232 OMPs in the influent and effluent during:<ol><li>The monitoring period considering only the MBR</li><li>The experimental periods where PAC is added and maintained at a concentration of 0.1g/L and 0.2g/L inside the MBR</li></ol></li><li>Fourth worksheet contains metadata regarding the UHPLC–QTOF–MS analysis performed to evaluate the occurrence of OMPs in the influent and effluent of the WWTP. Sampling, storage and sample preparation is described, followed to LC-ESI-tandem MS analysis. LOD and LOQ are reported.</li></ul>
Lab-scale membrane bioreactor (MBR) high-frequency online data
<p>This dataset is composed of 4 periods of more or less continuous operation, but with varying length. The measured online data, with a frequency of per second, are stored chronologically in 4 compressed csv-files 'Data_MBR_Period_x'. The installation was running with some fixed and variable settings. The variable settings are stored in 'Settings_MBR'. They were only logged when changed, making this a small file. All additional information on the used sensors etc. is listed in the 'Metadata'-file, including the values of the fixed settings. Finally, 'Schematic.png' gives an overview of the MBR setup and the location of the sensors.</p>
Comparison of MBR + Suture Tape, MBR, and Anatomic Reconstruction for CLAI in GJL Cases: A Prospective Cohort Study
ClinicalTrials.gov study NCT05698446. IPD Sharing: YES. Countries: 1. Publications: 5.
Comparison of MBR + Suture Tape and MBR for CLAI in GJL Cases: A Prospective Cohort Study
ClinicalTrials.gov study NCT06897293. IPD Sharing: YES. Countries: 1. Publications: 2.
Data from: Optimization of nitrogen and carbon removal with simultaneous partial nitrification, anammox, and denitrification (SNAD) in membrane bioreactor (MBR)
<p>In this study, a membrane bioreactor (MBR) was used to achieve both nitrogen and carbon removal by a simultaneous partial nitrification, anammox, and denitrification (SNAD) process. During the entire experiment, the optimal operating parameters as determined by response surface methodology (RSM) were a C/N value of 1.16, a DO value of 0.84 mg·L<sup><span>-1</span></sup>, and an aerobic time (<i><span>T</span></i><i><sub><span><span>ae</span></span></sub></i>) of 15.75 min. Under these conditions, the SNAD process achieved efficient and stable nitrogen and carbon removal; the total inorganic nitrogen (TIN) removal efficiency and chemical oxygen demand (COD) removal efficiency were 92.31% and 95.67%, respectively. With the formation of granular sludge, the membrane fouling rate (MFR) decreased significantly from 35.0 Pa·h<sup><span>-1</span></sup> at SNAD start-up to 19.9 Pa·h<sup><span>-1</span></sup> during stable operation. Fluorescence in situ hybrid (FISH) analyse confirmed the structural characteristics and the relative ratio of AerAOB, AnAOB, and DNB in the SNAD system.</p>
Figure 7 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 7 Magnolia brasiliensisA habit B immature gynoecium C immature fruit D bracts (perule) and gynoecium E details of trichomes on the fruit F specimen deposited in the RB herbarium showing coriaceous leaves. Photos: A–D: C. O. Azevedo; E: R. Mello-Silva 50 (RB409806); F: L.M. Borges 393 (RB664467).
Figure 5 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 5 Magnolia amazonicaA–C specimen deposited in herbarium D–E detail petiole and peduncle (in the region of the annular scars) showing trichomes in the youngest structures F gynoecium. Photos: A–CW.A. Ducke 12487 (R000024142; BM000551380); B–D: (B100248229); C–F: BM551380; F: I. M. Silva 471 NY 03097880.
Figure 4 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 4 Fruit stages A partially open syncarpous fruit B detail of the inner woody part of the fruit C 1–2 seeds per carpel D mature fruit, with open woody masses (seeds already fallen from the fruit) Photos: J. C. J Barbosa.
Figure 2 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 2 Magnolia flower stages A perule B immature floral bud C mature floral buds D, F flower at anthesis; br. Sepaloid tepal te. Petaloid tepal; gi. Flower with detail of the gynoecium E stamen. Photos: A: U. Pastore & R.M. Klein 145 (MBM115080); B-C: J. C. J. Barbosa; D, bra, te: D. A. Zavatin.
Figure 9 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 9 Magnolia ovataA specimen deposited in herbarium P B mature gynoecium C specimen deposited in herbarium SPSF D longitudinal section of flower bud (gynoecium and stamens) E immature fruit F annular and petiolar scars. Photos: A: Saint-Hilaire s.n (P00734792); B: Irwin >s.n (RB161815); C: O.C. Pavão et al. (SPSF28228); D: R. Marquete 2596 (RB398212); E–F: J. C. J. Barbosa.
Figure 12 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 12 AMagnolia irwinianaB presence of flower bud in M. irwinianaC leaf blade of M. irwinianaD detail of branch and stipule with trichomes in M. irwinianaE detail of the trichomes on the petiolar scars F immature fruit of M. irwinianaG detail of the puberulent trichomes on the fruit HMagnolia sellowianaI leaf blade M. sellowiana. (A: based on photographs of D. A. Zavatin; B: based on photographs of J.C.J. Barbosa C–G: H.F Leitão Filho et al. 34821; H: based on photographs of D. A. Zavatin; I: M. Kuhlmann 1809) Drawing prepared by Klei Souza.
Figure 10 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 10 Magnolia sellowianaA specimen deposited in herbarium P showing broadly elliptic leaf B specimen deposited in herbarium MBM C flower, detail of gynoecium and stamens D stipule with trichomes E midvein with trichomes. Photos: A: A.Saint-Hilaire s.n. (P00734795); B: U. Pastore & R.M Klein 145 (MBM 115080); C–E: L.S. Leoni 2689 (RB739505).
Figure 11 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 11 A leaf blade Magnolia amazonicaB trichomes from the petiole of M. amazonicaCMagnolia brasiliensisD fruit with trichomes in M. brasiliensisE leaf blade M. brasiliensisFMagnolia ovata showing perule G floral bud of M. ovataH leaf blade of M. ovataIM. ovata mature fruit. (A–B: A.M Barreto 30; C–E: A.A. Grillo & M. Sztutman >s.n.; F–G: E.P. Heringer, 8726; H: R.R. Rodrigues et al. 161; I: based on photographs of J. C. J Barbosa.) Drawing prepared by Klei Souza.
Figure 3 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 3 A gynoecium, vertical view B gynoecium, viewed from above ce. Staminal scar, cpl. petaloid scar, pi. Pistillum, es. Stigma C longitudinal section, receptacle and gynoecium D detail ovary, ov. ovule. Photos: D. A. Zavatin.
Figure 8 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 8 Magnolia irwinianaA herbarium specimen, asymmetrical leaves B detail of trichomes on the carpels C immature fruit D floral bud E detail of stipule and petiole scar. Photos: A: H.S Irwin 12681 (RB 540686); B: H.S Irwin 12681 (MO 216832) C–E: J. C. J. Barbosa.
Figure 1 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 1 A branch with alternate leaves, present stipules, and terminal flower, v. detail of central vein, vb. detail of brochidodromous venation B detail of the branch showing scars C adnation of the stipule (which later falls) on the petiole, a characteristic of Magnolia section Talauma; ca. Annular scar; cp. Petiolar scar (resulting from stipule fall). Photos: A, v, vb, ca, cp: D.A. Zavatin; B-C: J. C. J. Barbosa.
Data from: Optimization of nitrogen and carbon removal with simultaneous partial nitrification, anammox, and denitrification (SNAD) in membrane bioreactor (MBR)
Open the record for dataset details and reuse information.
Comparison of overall functional gene structures of a membrane bioreactor (MBR) and an oxidation ditch (OD) running parallelly at full-scale
GEO Series GSE67307. Eukaryota; Viruses; Bacteria; Archaea; activated sludge metagenome. 24 samples. Type: Genome variation profiling by array.
Figure 6 from: Barbosa JCJ, Caruzo MBR, Simões ARG, Samain M-S (2024) Taxonomic revision of the native Magnolia (Magnoliaceae) species of Brazil. PhytoKeys 238: 33-64. https://doi.org/10.3897/phytokeys.238.113277
Figure 6 Geographical distribution of Magnolia species in Brazil.
Development of a Novel Evaluation Scale of Mental Body Representation (MBR) for Adults With Spinal Cord Injury
ClinicalTrials.gov study NCT07029802. IPD Sharing: Not stated. Countries: 1. Publications: 0.
ScienceDex guides
Understand access before you commit
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.