Data

Dynamic time sweep and creep test measurement for 4.2 wt% waste activated sludge at various gas flow rates (0.5 – 1.5 LPM)

RMIT University, Australia
Dr Nicky Eshtiaghi (Associated with)
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=https://figshare.com/articles/Dynamic_time_sweep_and_creep_test_measurement_for_4_2_wt_waste_activated_sludge_at_various_gas_flow_rates_0_5_1_5_LPM_/5567038&rft.title=Dynamic time sweep and creep test measurement for 4.2 wt% waste activated sludge at various gas flow rates (0.5 – 1.5 LPM)&rft.identifier=3f138d4b3c73f56437888d1bae63975f&rft.publisher=RMIT University, Australia&rft.description=This submission contains the raw rheometer files from time sweep and creep test measurements of waste activated sludge (total solids content = 4.2 wt %). The sludge samples were measured at various gas flow rates (0.54 LPM and 1.5 LPM). The dynamic time sweep measurements were generated from the sludge sample first without gas at 0.08% strain across 25 minutes. Then the sample was conditioned and the gas was injected for 20 minutes before the measurement at similar conditions. Similarly, the dynamic creep test measurements were generated from the sludge sample first without gas at 0.89pa stress across 10 minutes. The measurements were carried out on a DHR-3 rheometer (TA-Instruments), equipped custom made cup. For detail procedure refer: Bobade, V, et al. 2017, 'Impact of gas injection on the apparent viscosity and viscoelastic property of waste activated sewage sludge', Water Research, vol. 114, pp. 296-307. Detailed experimental protocol is recorded in the .tri (TRIOS) file attached with each data set. This file can be read using the TRIOS software made available on TA-Instruments website (http://www.tainstruments.com/support/software-downloads-support/downloads/). Rheometer geometry dimensions and other details are also obtainable from these files. &rft.creator=Anonymous&rft.date=2018&rft.relation=http://search.informit.com.au/documentSummary;dn=407520158613689;res=IELENG>&rft.relation=http://researchbank.rmit.edu.au/view/rmit:39486&rft.relation=https://doi.org/10.1016/j.watres.2017.02.039&rft_rights=All rights reserved.&rft_rights=CC BY-NC: Attribution-Noncommercial 3.0 AU http://creativecommons.org/licenses/by-nc/3.0/au&rft_subject=Triphasic rheological properties&rft_subject=Activated sludge&rft_subject=In-situ operation&rft_subject=Commercial rheometer.&rft_subject=Rheology&rft_subject=Rheology&rft_subject=ENGINEERING&rft_subject=CHEMICAL ENGINEERING&rft_subject=Applied research&rft.type=dataset&rft.language=English Access the data

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This submission contains the raw rheometer files from time sweep and creep test measurements of waste activated sludge (total solids content = 4.2 wt %). The sludge samples were measured at various gas flow rates (0.54 LPM and 1.5 LPM). The dynamic time sweep measurements were generated from the sludge sample first without gas at 0.08% strain across 25 minutes. Then the sample was conditioned and the gas was injected for 20 minutes before the measurement at similar conditions. Similarly, the dynamic creep test measurements were generated from the sludge sample first without gas at 0.89pa stress across 10 minutes. The measurements were carried out on a DHR-3 rheometer (TA-Instruments), equipped custom made cup. For detail procedure refer: Bobade, V, et al. 2017, 'Impact of gas injection on the apparent viscosity and viscoelastic property of waste activated sewage sludge', Water Research, vol. 114, pp. 296-307. Detailed experimental protocol is recorded in the .tri (TRIOS) file attached with each data set. This file can be read using the TRIOS software made available on TA-Instruments website (http://www.tainstruments.com/support/software-downloads-support/downloads/). Rheometer geometry dimensions and other details are also obtainable from these files.

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  • Local : 3f138d4b3c73f56437888d1bae63975f
ACN 633 798 857