A comprehensive study to understand removal efficiency for Cr6+ using magnetic and activated biochar through response surface methodology

Author:

Narzari Rumi,Poddar Maneesh Kumar,Bordoloi Neonjyoti,Sarmah Ajit Kumar,Kataki RupamORCID

Funder

University Grants Commission

Publisher

Springer Science and Business Media LLC

Subject

Renewable Energy, Sustainability and the Environment

Reference68 articles.

1. Bhuyan MS, Bakar MA, Islam MS, Akhtar A (2017) Heavy metal contamination in surface water and sediments of the Meghna River, Bangladesh. Environ Nanotechnol Monit Manag 8:273–279

2. US EPA (2009) National primary drinking water regulations. US Environmental Protection Agency, EPA 816-F-09–004

3. BIS report (2012) Drinking water-specification, Bureau of Indian Standards, IS-10500

4. Agrafioti E, Kalderis D, Diamadopoulos E (2014) Arsenic and chromium removal from water using biochars derived from rice husk, organic solid wastes and sewage sludge. J Environ Manag 133:309–314

5. Wang H, Wang S, Chen Z, Zhou X, Wang J, Chen Z (2020) Engineered biochar with anisotropic layered double hydroxide nanosheets to simultaneously and efficiently capture Pb2+ and CrO42-from electroplating wastewater. Bioresour Technol 306:123118

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