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Treatment of heavy metals contaminated water: use of B. mojavensis BI2 derived lipopeptide and palm waste flour
by
Inès, Mnif
, Ghribi, Dhouha
, Mekki, Salwa
in
Bioaccumulation
/ Bioremediation
/ Biosorption
/ Cobalt
/ Copper
/ Flour
/ Food contamination & poisoning
/ Germination
/ Heavy metals
/ Lead
/ Lipopeptides
/ Mercury
/ Metabolites
/ Metal concentrations
/ Molecular weight
/ Seeds
/ Surfactants
/ Toxicity
/ Water pollution
2022
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Treatment of heavy metals contaminated water: use of B. mojavensis BI2 derived lipopeptide and palm waste flour
by
Inès, Mnif
, Ghribi, Dhouha
, Mekki, Salwa
in
Bioaccumulation
/ Bioremediation
/ Biosorption
/ Cobalt
/ Copper
/ Flour
/ Food contamination & poisoning
/ Germination
/ Heavy metals
/ Lead
/ Lipopeptides
/ Mercury
/ Metabolites
/ Metal concentrations
/ Molecular weight
/ Seeds
/ Surfactants
/ Toxicity
/ Water pollution
2022
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Treatment of heavy metals contaminated water: use of B. mojavensis BI2 derived lipopeptide and palm waste flour
by
Inès, Mnif
, Ghribi, Dhouha
, Mekki, Salwa
in
Bioaccumulation
/ Bioremediation
/ Biosorption
/ Cobalt
/ Copper
/ Flour
/ Food contamination & poisoning
/ Germination
/ Heavy metals
/ Lead
/ Lipopeptides
/ Mercury
/ Metabolites
/ Metal concentrations
/ Molecular weight
/ Seeds
/ Surfactants
/ Toxicity
/ Water pollution
2022
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Treatment of heavy metals contaminated water: use of B. mojavensis BI2 derived lipopeptide and palm waste flour
Journal Article
Treatment of heavy metals contaminated water: use of B. mojavensis BI2 derived lipopeptide and palm waste flour
2022
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Overview
In the present work, we demonstrated the potential use of newly identified lipopeptides produced by B. mojavensis BI2 along with palm waste flour for the bioremediation of heavy metals contaminated water. The enhancement of radish seeds germination was used to evaluate the treatment efficiency. Firstly, better enhancement in the order of 3.8, 2.52, 1.5 and 5 were recorded respectively for 200 mg/L copper, lead, cobalt and mercury with respective lipopeptide quantities of the order of 200, 300, 200 and 400 mg/L. When studying the sequestration of increasing heavy metals concentration, BI2 lipopeptide was effective. Secondly, a mixed bioprocess was evaluated using palm waste flour as heavy metals sequester and BI2 lipopeptides as improver. Optimal biosorption of lead, copper, cobalt and mercury were obtained with 10 g/l waste, 1,000 mg/l metal and 200 mg/l BI2 lipopeptide for 1 hour. The addition of 200 mg/l BI2 lipopeptide improves the efficiency of the treatment significantly.
Publisher
IWA Publishing
Subject
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