Fate of Triton X-100 applications on water and soil environments: a review
L Abu-Ghunmi, M Badawi, M Fayyad - Journal of Surfactants and …, 2014 - Springer
L Abu-Ghunmi, M Badawi, M Fayyad
Journal of Surfactants and Detergents, 2014•SpringerTriton X-100 applications as surfactant raises concern on water and soil environment due to
its non-biodegradability and inhibition effect. This paper aims at reviewing Triton X-100
biodegradability and inhibition literature. It shows Triton X-100 is biodegradable by aerobic
and anaerobic municipal wastewater sludge and Vibrio cyclitrophicus-sp-Nov organism.
Adsorption and biodegradation are mechanisms of Triton removal. Triton inhibits anaerobic
sludge organisms and some single aerobic organisms. Inhibition mechanisms are substrate …
its non-biodegradability and inhibition effect. This paper aims at reviewing Triton X-100
biodegradability and inhibition literature. It shows Triton X-100 is biodegradable by aerobic
and anaerobic municipal wastewater sludge and Vibrio cyclitrophicus-sp-Nov organism.
Adsorption and biodegradation are mechanisms of Triton removal. Triton inhibits anaerobic
sludge organisms and some single aerobic organisms. Inhibition mechanisms are substrate …
Abstract
Triton X-100 applications as surfactant raises concern on water and soil environment due to its non-biodegradability and inhibition effect. This paper aims at reviewing Triton X-100 biodegradability and inhibition literature. It shows Triton X-100 is biodegradable by aerobic and anaerobic municipal wastewater sludge and Vibrio cyclitrophicus-sp-Nov organism. Adsorption and biodegradation are mechanisms of Triton removal. Triton inhibits anaerobic sludge organisms and some single aerobic organisms. Inhibition mechanisms are substrate shortage, physiological membrane-damaging and/or alteration in organism cell membrane. Thus Triton X-100 fate in the environment and its sustainable application can be controlled via proper selection of organism type, Triton concentration, and substrate.
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