Suitability assessment of dumpsite soil biocover to reduce methane emission from landfills under interactive influence of nutrients

Author:

Bajar SomvirORCID,Singh Anita,Kaushik C. P.,Kaushik Anubha

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Pollution,Environmental Chemistry,General Medicine

Reference43 articles.

1. Albanna M, Fernandes L (2009) Effects of Temperature, Moisture Content, and Fertilizer Addition on Biological Methane Oxidation in Landfill Cover Soils. J Hazard Toxic Radioact Waste 13(3):187–195

2. Bajar S, Kaushik CP, Kaushik A (2013a) Optimization of temperature and moisture content for methane oxidation in acclimatized subtropical landfill soil using response surface methodology. Indian J Environ Sci 17(2):91–99

3. Bajar S, Kaushik CP, Kaushik A (2013b) Dynamics of methane oxidation in landfill cover soil under variable composition of microcosm gaseous regime. Intern J Environ Res Develop 3:17–24

4. Bajar S, Singh A, Kaushik CP, Kaushik A (2016) Evaluation and statistical optimization of methane oxidation using rice husk amended dumpsite soil as biocover. Waste Manag 53:136–143

5. Bajar S, Singh A, Kaushik CP, Kaushik A (2017) Statistical assessment of dumpsite soil suitability to enhance methane bio-oxidation under interactive influence of substrates and temperature. Waste Manag 63:188–195

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