Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Subhajit Singha"'
Autor:
Abhishek Roy, Subhajit Singha, Anuj Kumar, Tamal Mandal, Rashmi Priyadarshinee, Bratin Sengupta, Alok Malaviya, Avishek Banerjee
Publikováno v:
Clean Technologies and Environmental Policy. 22:995-1014
Coffee is one of the most significant beverages consumed worldwide, dating to times immemorial. It plays a pivotal role in several economies owing to its second position in the list of trading commodity, after petroleum. The growing demand for coffee
Autor:
Rashmi Priyadarshinee, Bratin Sengupta, Tamal Mandal, Anuj Kumar, Abhishek Roy, Dalia Dasgupta, Subhajit Singha
Publikováno v:
Water science and technology : a journal of the International Association on Water Pollution Research. 80(9)
A potential bacterium Bacillus flexus RMWW II has been isolated from rice mill effluent, and examined for its decolorizing potential for lignin-mimicking dyes. The biodegradation of alkali lignin by the rod-shaped, Gram-positive, oxidase and catalase
Autor:
Anuj Kumar, Dalia Dasguptamandal, Bratin Sengupta, Rashmi Priyadarshinee, Tamal Mandal, Subhajit Singha, Manish Chandra Kannaujiya
Publikováno v:
DESALINATION AND WATER TREATMENT. 69:352-365
Publikováno v:
Ecological Engineering. 91:270-281
The present study deals with the preparation of adsorbents from rice husk ash for the efficient treatment of rice mill wastewater. By chemical modification, two different adsorbents were prepared—adsorbent (ADS) was synthesised from raw RHA that co
Publikováno v:
Clean Technologies and Environmental Policy. 18:2565-2577
An economically efficient and eco-benign new approach was performed for the treatment of rice mill wastewater by Fenton-like process using rice husk ash (RHA)-based silica-supported iron catalyst. The detailed characterization of the prepared catalys
Publikováno v:
Ecological Engineering. 84:29-37
An economical, effective and eco-friendly route for utilizing agricultural byproduct rice husk ash (RHA) in the treatment of rice mill wastewater has been investigated in the present study. Precious silica was extracted as value added product from RH