نتایج جستجو برای: phenol removal

تعداد نتایج: 156639  

2013
Christoph K Winkler Dorina Clay Esta van Heerden Kurt Faber

Eleven flavoproteins from the old yellow enzyme family were found to catalyze the disproportionation ("dismutation") of conjugated enones. Incomplete conversions, which were attributed to enzyme inhibition by the co-product phenol could be circumvented via in situ co-product removal by scavenging the phenol using the polymeric adsorbent MP-carbonate. The optimized system allowed to reduce an al...

Journal: :Journal of Korean Society of Environmental Engineers 2014

Journal: :IOP Conference Series: Materials Science and Engineering 2021

Journal: :Brazilian journal of microbiology : [publication of the Brazilian Society for Microbiology] 2016
Maryam Karimi Mehdi Hassanshahian

Phenol and phenolic compounds are environmental pollutants present in industrial wastewaters such as coal tar, oil refineries and petrochemical plants. Phenol removal from industrial effluents is extremely important for the protection of environment. Usually, phenol degradation is carried out by physicochemical methods that are costly and produce hazardous metabolites. Recently, phenol biodegra...

Journal: :international journal of environmental research 2015
d.s. shirsath v.s. shrivastava

phenols are toxic organic compounds and which badly affects the flora and fauna of thebiosphere because phenols are persistent pollutant found in wastewater from many industries. in presentresearch article the photocatalytic removal of o-nitro phenol by synthesized magnetic nanoadsorbents(mna) carried out under photocatalytic reactor. the mna were synthesized by co-precipitation methodrequired ...

Journal: :Water science and technology : a journal of the International Association on Water Pollution Research 2006
Q T T Thuy C Visvanathan

Phenolic compounds cause problems for conventional treatments due to their toxic and inhibitory properties. This work investigated the treatability of phenolic compounds by using two membrane-bioreactor systems, namely: activated sludge coupled with MBR (AS-MBR) and biological granular activated carbon coupled with MBR (BAC-MBR). Initially, the system was fed with phenol (500 mg/L) followed by ...

2006
C. Quintelas E. Sousa F. Silva S. Neto T. Tavares

A biofilm of Arthrobacter viscosus supported on granular activated carbon was used to remove chromium and organic compounds (chlorophenol, phenol and o-cresol) from aqueous solutions. The compounds were studied as single solutes and in different combinations between them and Cr(VI). Optimum Cr(VI) adsorption was observed at a phenol concentration of 100 mg/l and at an initial concentration of t...

Journal: :international journal of environmental research 2010
h. belarbi m.h. al-malack

phenol is a common pollutant that was listed by us environmental protection agency (epa) among the priority pollutants. classical methods employed for phenol removal are either costly or limited to large-scale applications such as biological and thermal decomposition methods. in this study, adsorption of phenol by a type of clay that is extracted from a local soil called khoweldi was investigat...

Journal: :Energy Conversion and Management 2021

Anaerobic biological treatment of saline phenolic wastewater has some limitations such as slow adaptation, low biodegradability, and salinity-derived washout biomass, though this technology benefits in terms bioenergy recovery, simplicity operation, economic rationality. Therefore, we propose a packed-bed circular baffled reactor (PB-CBR) along with co-metabolism strategy for phenol adaptation ...

Hamed Biglari, Mojtaba Afsharnia, Nasibe Javan, Seyed Ali Sajadi,

Background and Purpose: Phenol and derivatives are common pollutants of drinking water which are blamed for crucial adverse effects such as poisoning, cancer, and malformation. In this study, an activated carbon of Miswak’s root (MR) was used for the removal of phenol from aqueous solutions as a low-cost and high surface adsorbent. Materials and Methods: Adsorption exper...

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