Journal article
The impact of mulch type on soil organic carbon and nitrogen pools in a sloping site
Biology and Fertility of Soils, Vol.50(1), pp.37-44
2014
Abstract
Three mulch treatments were tested for their ability to control erosion on a sloping site. Additionally, the choice of mulch can also enhance revegetation success and improve soil organic matter input. This study aimed to investigate the effects of three mulching treatments, hydro-seeding, granite mulch and forest mulch, on soil C and N pools at different positions on highly erodible slope with approximately 30 % gradient. Soil moisture, total C (TC), total N (TN), hot water-extractable organic C (HWEOC), hot water-extractable total N (HWETN), microbial biomass C and N (MBC and MBN), inorganic N and potentially mineralisable N were measured. All variables were significantly higher in soils amended with forest mulch than those with hydro-seeding and granite mulch, for the same slope positions. Soil moisture was significantly higher in the lower slope position than middle and upper slope positions in hydro-seeding and granite mulch treatments, whereas no slope effect was observed on soil moisture under the forest mulch application. In the forest mulch treatment, the upper slope position had higher soil TC, TN, HWEOC, HWETN, MBC, MBN, NO3--N and total inorganic N than the middle and lower slope positions. Five years following mulch application, forest mulch still exerted a significant influence on soil fertility compared to the other treatments and the influence on soil moisture suggests that this treatment would be the most effective in the control of water-driven soil erosion on this steep site.
Details
- Title
- The impact of mulch type on soil organic carbon and nitrogen pools in a sloping site
- Authors
- Shahla Hosseini Bai (Author) - University of the Sunshine Coast - Faculty of Science, Health, Education and EngineeringT J Blumfield (Author) - Griffith UniversityF Reverchon (Author) - Griffith University
- Publication details
- Biology and Fertility of Soils, Vol.50(1), pp.37-44
- Publisher
- Springer
- Date published
- 2014
- DOI
- 10.1007/s00374-013-0829-z
- ISSN
- 0178-2762
- Organisation Unit
- School of Science and Engineering - Legacy; University of the Sunshine Coast, Queensland
- Language
- English
- Record Identifier
- 99448978402621
- Output Type
- Journal article
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