Changes in Nutrients and Bioavailability of Potentially Toxic Metals in Mine Waste Contaminated Soils Amended with Fly Ash Enriched Vermicompost

Author:

Lukashe Noxolo SweetnessORCID,Mupambwa Hupenyu Allan,Mnkeni Pearson Nyari Stephano

Funder

National Research Foundation

Govern Mbeki Research and Development Center

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Water Science and Technology,Ecological Modeling,Environmental Chemistry,Environmental Engineering

Reference58 articles.

1. Agri Laboratory Association of Southern Africa (AgriLASA). (2004). Soil Handbook. Pretoria (South Africa): Agri Laboratory Association of Southern Africa. Pretoria, South Africa.

2. Alburquerque, J. A., De La Fuente, C., & Bernal, M. P. (2011). Improvement of soil quality after “alperujo” compost application to two contaminated soils characterised by differing heavy metal solubility. Journal of Environmental Management, 92, 733–741.

3. Alvarenga, P., Palma, P., Goncalves, A. P., Baiao, N., Fernandes, R. M., de Varennes, A., Vallini, G., Duarte, E., & Cunha – Queda, A.C. (2008). Assessment of chemical, biochemical and ecotoxicological aspects in mine soil amended with sludge of either urban or industrial origin. Chemosphere., 72, 1774–1781.

4. Anngria, L., Kasno, A., & Rochayati, S. (2012). Effect of organic matter on nitrogen mineralization in flooded and dry soil. Journal of Agricultural Biological Science, 7, 586–590.

5. Arslan, H., Guleryuz, G., Kirmizi, S., & Gucer, S. (2005). Nitrogen mineralization in mine waste-contaminated soils. Fresenius Environmental Bulletin, 14, 900–906.

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