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Hale, Rachel (2025): Sediment disturbance experiment data with samples from the Chatham Rise, Southwest Pacific [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.975706, In: Hale, R (2025): Effects of an experimental in situ seabed disturbance on deep-sea benthic ecosystem function and macro-infaunal community structure on the Chatham Rise, Southwest Pacific [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.975610

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Published: 2025-02-19DOI registered: 2025-03-21

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Abstract:
We examined changes in environmental parameters following an experimental benthic disturbance using a modified plough (estimated 15 cm penetration) on the Chatham Rise (~450 m depth), Aotearoa/New Zealand. Sediment core retrievals were undertaken using an Oceans Instruments MC-800 multicorer fitted with six 70 cm long polycarbonate core tubes with 9.52 cm internal diameter that took place pre-disturbance on 16-17 June 2019 (voyage TAN1903), post-disturbance on 24-25 June 2019 (TAN1903) and one-year post-disturbance on 14-19 June 2020 (TAN2005). In order to determine any background changes in the larger surrounding area between years (2019, 2020), an additional reference site with similar hydrographic and sediment attributes (REF, depth = 455 m), located approximately 15 km to the north-west of the Butterknife (Figure 1B), was also sampled in the pre-disturbance period (n = 2, TAN1903) and one-year post-disturbance (n = 3, TAN2005). Sediment flux measurements were taken from subsampled multicores (0-10 cm layer) using sealed stirred aquaria maintained at bottom water conditions in the controlled temperature laboratory on RV Tangaroa. Sediment community oxygen consumption (SCOC) was measured via a sensor inserted through a sampling port in the chamber lid (FireStingO2, Pyroscience) upon commencement of the incubation and approximately every 2 hours until seawater oxygen concentration was depleted to 85-90% of the initial concentration to obtain a time-series of 3-6 measurements of oxygen consumption. Absolute concentrations of nutrients: ammonium ([NH4-N]), nitrite + nitrate ([NOx-N]), and phosphate ([PO4-P]), from overlying seawater samples (15 mL, 0.45 μm filtered, frozen at -20°C upon collection) taken at time 0 and upon termination of the SCOC experiment were quantified using an auto-analyser.
Keyword(s):
deep sea mining; Macrofauna; sediment; sediment community oxygen consumption
Related to:
Hale, Rachel; Leduc, Daniel; Murray, Campbell; Rowden, Ashley A; Nodder, Scott D; Eager, Chris; Stewart, Rob; Hickey, Chris W; Pilditch, Conrad A; Clark, Malcolm R (2025): Effects of an experimental in situ seabed disturbance on deep-sea benthic ecosystem function and macro-infaunal community structure on the Chatham Rise, Southwest Pacific. New Zealand Journal of Marine and Freshwater Research, https://doi.org/10.1080/00288330.2025.2461333
Funding:
Ministry of Business, Innovation and Employment (MBIE), grant/award no. CO1X1614: Resilience of benthic communities to the effects of sedimentation (ROBES), https://niwa.co.nz/oceans/sedimentation-effects , Award: New Zealand Ministry of Business, Innovation and Employment Award
Coverage:
Median Latitude: -43.210314 * Median Longitude: 179.436159 * South-bound Latitude: -43.218000 * West-bound Longitude: 179.365400 * North-bound Latitude: -43.165400 * East-bound Longitude: 179.449810
Date/Time Start: 2019-06-13T23:45:00 * Date/Time End: 2020-06-18T17:50:00
Minimum Elevation: -470.0 m * Maximum Elevation: -444.0 m
Event(s):
TAN1903_35 * Latitude: -43.165400 * Longitude: 179.365400 * Date/Time: 2019-06-13T23:45:00 * Elevation: -453.0 m * Campaign: TAN1903 (ROBES) * Basis: Tangaroa
TAN1903_36 * Latitude: -43.165500 * Longitude: 179.365400 * Date/Time: 2019-06-14T00:33:00 * Elevation: -462.0 m * Campaign: TAN1903 (ROBES) * Basis: Tangaroa
TAN1903_56 * Latitude: -43.215100 * Longitude: 179.448600 * Date/Time: 2019-06-16T06:57:00 * Elevation: -463.0 m * Campaign: TAN1903 (ROBES) * Basis: Tangaroa
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Event labelEventHale, Rachel
2IdentificationIDHale, Rachel
3SiteSiteHale, Rachel
4Time point, descriptiveTime pointHale, Rachel
5Habitat modificationHabitat modcodeHale, Rachel0 = not disturbed sites; 1 = disturbed sites
6TypeTypeHale, Rachel
7Station labelStationHale, Rachel
8SiteSiteHale, Rachel
9Device typeDeviceHale, Rachel
10LocationLocationHale, Rachel
11Date/Time localDate/Time localHale, Rachel
12DATE/TIMEDate/TimeHale, RachelGeocode – UTC
13LATITUDELatitudeHale, RachelGeocode – of sampling
14LONGITUDELongitudeHale, RachelGeocode – of sampling
15Type of studyStudy typeHale, Rachel
16Depth, bathymetricBathy depthmHale, Rachelat sampling
17Community, oxygen consumptionComm O2 consµmol/m2/hHale, Rachel
18Phosphorus, reactiveP reactµmol/lHale, RachelSeal segmented flow colorimetric auto-analyserat time 0
19Ammonium[NH4]+µmol/lHale, RachelSeal segmented flow colorimetric auto-analyserat time 0
20Nitrate and Nitrite[NO3]- + [NO2]-µmol/lHale, RachelSeal segmented flow colorimetric auto-analyserat time 0
21Phosphorus, reactive, dissolved, fluxDRP fluxµmol/m2/hHale, RachelCalculated
22Ammonium, flux[NH4]+ fluxµmol/m2/hHale, RachelCalculated
23Nitrite and nitrate, fluxNO2+NO3 fluxµmol/m2/hHale, RachelCalculated
24Bacterial abundanceBact#/cm3Hale, RachelFlow-cytometer
25Species richnessSHale, Rachel
26Number of speciesSpec No#Hale, Rachelin aquaria
27Number of species per areaSpecies per area#/m2Hale, RachelCalculated
28Shannon Diversity IndexH'Hale, Rachel
29Biomass, wet massBiom wmgHale, Rachelin aquaria
30Biomass, wet mass per areaBiom wmg/m2Hale, RachelCalculated
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
1242 data points

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