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  4. Efficacy of vermitechnology integration with Upflow Anaerobic Sludge Blanket (UASB) and activated sludge for metal stabilization: A compliance study on fractionation and biosorption
 
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Efficacy of vermitechnology integration with Upflow Anaerobic Sludge Blanket (UASB) and activated sludge for metal stabilization: A compliance study on fractionation and biosorption

Source
Journal of Environmental Management
ISSN
03014797
Date Issued
2019-04-15
Author(s)
Taki, Kaling
Gogoi, Anindita
Mazumder, Payal
Bhattacharya, Satya Sunder
Kumar, Manish  
DOI
10.1016/j.jenvman.2019.01.006
Volume
236
Abstract
Efficacy of vermi-transformation for metal partitioning and transformation from Upflow Anaerobic Sludge Blanket (UASB) and Activated Sludge (AS) was investigated. Sludge samples were mixed with cow dung (CD) in two combinations (1:1 (UASB/AS:CD)) & (2:1(UASB/AS: CD)). Fractionation study revealed that Zn, Cd & Pb were associated with reducible fractions, and Cr, Cu with oxidizable fractions. Higher removal efficiency for 1:1 (UASB/AS: CD) combination over 2:1 (UASB/AS: CD) implies the non-significant contribution of cow dung during the metal stabilization process. After vermi-remediation, maximum metal removal was achieved at 1:1 ratio than 2:1 in AS. In UASB, 1:1 ratio worked better for Cr, Zn & Cd, whereas for Cu & Zn 2:1 ratio resulted in efficient removal. Overall for both AS and UASB, efficiency was found to be higher in 1:1 treatment ratio. The value of K<inf>d</inf> (Bio sorption) was highest in Cu followed by Cr, which indicates the closer association with the metal bound organic matter (R<sup>2</sup> ≥ 0.99). Based on the compliance study between two estimated sorption coefficients K<inf>d</inf> (Biosorption & Fractions), vermi-remediation was found to be effective for AS than UASB. Therefore, the obtained results clearly validate the feasibility of integration of vermi-remediation as a potential promising ecological techniques for removing metal contaminant from the wastewater. Further research is required to study the decontamination of emerging contaminants with such integrated technology, which have physico-chemical properties different than metal ions.
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URI
https://d8.irins.org/handle/IITG2025/23310
Subjects
Fractionation | Metal | Sewage sludge | Speciation | UASB | Vermicomposting
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