Characterization of solidification for disposal of hazardous waste landfill leachate
Author:
Publisher
Springer Science and Business Media LLC
Subject
Health, Toxicology and Mutagenesis,Pollution,Environmental Chemistry,General Medicine
Link
http://link.springer.com/content/pdf/10.1007/s11356-019-07041-6.pdf
Reference28 articles.
1. Arellano-Aguilar R, Burciaga-Díaz O, Gorokhovsky A, Escalante-García JI (2014) Geopolymer mortars based on a low grade metakaolin: effects of the chemical composition, temperature and aggregate: binder ratio. Constr Build Mater 50:642–648
2. Belmokhtar N, Ammari M, Brigui J, Brigui J, Ben allal L (2017) Comparison of the microstructure and the compressive strength of two geopolymers derived from metakaolin and an industrial sludge. Constr Build Mater 146:621–629
3. Bonet-Martínez E, Pérez-Villarejo L, Eliche-Quesada D, Carrasco-Hurtado B, Bueno-Rodríguez S, Castro-Galiano E (2018) Inorganic polymers synthesized using biomass ashes-red mud as precursors based on clay-kaolinite system. Mater Lett 225:161–166
4. Chen X, Wang X, Chen X, Zhong Z, Chen Z, Chen J, Jiang Y (2019) Salt inhibition on partial nitritation performance of ammonium-rich saline wastewater in the zeolite biological aerated filter. Bioresour Technol 280:287–294
5. Chu H, Cao D, Jin W, Dong B (2008) Characteristics of bio-diatomite dynamic membrane process for municipal wastewater treatment. J Membr Sci 325(1):271–276
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3. Leachate characteristics: Potential indicators for monitoring various phases of municipal solid waste decomposition in a bioreactor landfill;Journal of Environmental Management;2022-05
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