Data

The bioavailability and chemical composition of the organic component of soils and sediments from the catchment to reef (NESP TWQ 5.8, Griffith University)

eAtlas
Chen, Chengrong
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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://eatlas.org.au/data/uuid/3dadf670-f9b1-44d8-bce0-a5aeddf2c20a&rft.title=The bioavailability and chemical composition of the organic component of soils and sediments from the catchment to reef (NESP TWQ 5.8, Griffith University)&rft.identifier=https://eatlas.org.au/data/uuid/3dadf670-f9b1-44d8-bce0-a5aeddf2c20a&rft.description=This data set provides detailed information about the chemical composition, bioavailability and relative abundance of organic compounds in plant material and the organic associated with soil and sediment samples collected from terrestrial and marine environment of the Great Barrier Reef. *This dataset is currently under embargo. Methods: Pre-treatment of soil and sediment samples with HF before solid-state 13C CPMAS NMR analysis removes substantial amounts of Fe2+ and Mn2+ in soil and sediment and concentrates the organic matter content of the whole sample, improving the signal/noise ratio. In this study, all soil and sediment samples for NMR analysis were pre-treated with HF 5%. Solid-state 13C CPMAS NMR spectra of the HF treated samples were obtained at a frequency of 100.6 MHz on a 300 MHz Varian VNMRS spectrometer (Varian Inc.,CA). Samples were packed in a silicon nitride rotor (optical density=7mm) and spun at 5 kHz at the magic angle. Single contact times of 2 ms were applied, with an acquisition time of 14 ms, and a recycle delay of 1.5 s. Approximately 20,000 transients were collected for all soil and sediment samples and 2,000 transients were collected for plant litter. Lorentzian line broadening function of 150 Hz was applied to all spectra. Chemical shift values were referenced externally to hexamethylbenzene at 132.1 ppm, which is equivalent to tetramethylsilance at 0 ppm. The solid-state 13C CPMAS NMR spectra were divided into the seven common chemical shift regions: aliphatic C (0-45 ppm), methoxyl C (45-60 ppm), carbohydrate C (60-90 ppm), di-o-alkyl (90-110 ppm), aryl C (110-145 ppm), O aryl C (145-160 ppm) and carboxyl C (160-180 ppm) and the relative intensity for each region was determined by integration using Varian NMR 3.1A software package. Where chemical shift boundaries were moved in this work, in comparison to previous studies, this has been to facilitate the intensity corrections necessitated by spinning side bands (SSBs) appearing in the spectra acquired in this work. Format: The provided dataset consists of 2 files: 1. Excel file provides the chemical composition or organic matter in plant material, soil, and sediments. In this file detailed information of 31 samples (in order from 1 to 31) are provided including the type of sample, date of location, catchment/site name, GPS coordinates and the chemical composition or organic matter as revealed by 13C CPMAS-NMR. 2. The PDF file includes the 13C CPMAS-NMR spectra for each corresponding sample (in order from 1 to 31) in the excel file. Data Location: This dataset is filed in the eAtlas enduring data repository at: data\custodian\2019-2022-NESP-TWQ-5\5.8_Origin-detrimental-sediment&rft.creator=Chen, Chengrong &rft.date=2021&rft.coverage=151.083984375,-24.521484375 153.80859375,-24.521484375 153.45703124999997,-20.830078125 147.12890625,-17.490234374999986 145.810546875,-13.798828125 144.4921875,-12.83203125 144.228515625,-9.84375 142.119140625,-9.931640625 142.3828125,-11.77734375 143.61328125000003,-14.765625 144.755859375,-14.94140625 146.337890625,-19.599609375 148.447265625,-21.005859375 151.083984375,-24.521484375&rft_rights=Creative Commons Attribution 3.0 Australia License http://creativecommons.org/licenses/by/3.0/au/&rft_subject=biota&rft.type=dataset&rft.language=English Access the data

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Open Licence view details
CC-BY

Creative Commons Attribution 3.0 Australia License
http://creativecommons.org/licenses/by/3.0/au/

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Full description

This data set provides detailed information about the chemical composition, bioavailability and relative abundance of organic compounds in plant material and the organic associated with soil and sediment samples collected from terrestrial and marine environment of the Great Barrier Reef. *This dataset is currently under embargo. Methods: Pre-treatment of soil and sediment samples with HF before solid-state 13C CPMAS NMR analysis removes substantial amounts of Fe2+ and Mn2+ in soil and sediment and concentrates the organic matter content of the whole sample, improving the signal/noise ratio. In this study, all soil and sediment samples for NMR analysis were pre-treated with HF 5%. Solid-state 13C CPMAS NMR spectra of the HF treated samples were obtained at a frequency of 100.6 MHz on a 300 MHz Varian VNMRS spectrometer (Varian Inc.,CA). Samples were packed in a silicon nitride rotor (optical density=7mm) and spun at 5 kHz at the magic angle. Single contact times of 2 ms were applied, with an acquisition time of 14 ms, and a recycle delay of 1.5 s. Approximately 20,000 transients were collected for all soil and sediment samples and 2,000 transients were collected for plant litter. Lorentzian line broadening function of 150 Hz was applied to all spectra. Chemical shift values were referenced externally to hexamethylbenzene at 132.1 ppm, which is equivalent to tetramethylsilance at 0 ppm. The solid-state 13C CPMAS NMR spectra were divided into the seven common chemical shift regions: aliphatic C (0-45 ppm), methoxyl C (45-60 ppm), carbohydrate C (60-90 ppm), di-o-alkyl (90-110 ppm), aryl C (110-145 ppm), O aryl C (145-160 ppm) and carboxyl C (160-180 ppm) and the relative intensity for each region was determined by integration using Varian NMR 3.1A software package. Where chemical shift boundaries were moved in this work, in comparison to previous studies, this has been to facilitate the intensity corrections necessitated by spinning side bands (SSBs) appearing in the spectra acquired in this work. Format: The provided dataset consists of 2 files: 1. Excel file provides the chemical composition or organic matter in plant material, soil, and sediments. In this file detailed information of 31 samples (in order from 1 to 31) are provided including the type of sample, date of location, catchment/site name, GPS coordinates and the chemical composition or organic matter as revealed by 13C CPMAS-NMR. 2. The PDF file includes the 13C CPMAS-NMR spectra for each corresponding sample (in order from 1 to 31) in the excel file. Data Location: This dataset is filed in the eAtlas enduring data repository at: data\custodian\2019-2022-NESP-TWQ-5\5.8_Origin-detrimental-sediment

Data time period: 2016-06-20 to 2018-03-13

This dataset is part of a larger collection

151.08398,-24.52148 153.80859,-24.52148 153.45703,-20.83008 147.12891,-17.49023 145.81055,-13.79883 144.49219,-12.83203 144.22852,-9.84375 142.11914,-9.93164 142.38281,-11.77734 143.61328,-14.76563 144.75586,-14.94141 146.33789,-19.59961 148.44727,-21.00586 151.08398,-24.52148

147.9638671875,-17.1826171875

Subjects
biota |

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Other Information
NESP TWQ Hub website Project 5.8

url : https://nesptropical.edu.au/index.php/round-5-projects/project-5-8/

eAtlas Web Mapping Service (WMS) (AIMS)

url : https://eatlas.org.au/data/uuid/71127e4d-9f14-4c57-9845-1dce0b541d8d

Project web site

url : https://eatlas.org.au/nesp-twq-5/origin-detrimental-sediment-5-8

global : 9f148a8c-700f-4be0-8f67-cf2c7f8c90e5

ror : 02sc3r913

ror : 02sc3r913

NESP TWQ Project 5.8 - What’s really damaging the Reef? Tracing the origin and fate of the environmentally detrimental sediment and associated bioavailable nutrients, 2019-2020 (JCU)

raid : 10.82210/1a935b90

Identifiers
  • global : 3dadf670-f9b1-44d8-bce0-a5aeddf2c20a
ACN 633 798 857