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Mercury and antimony in wastewater: fate and treatment.
Hargreaves, Andrew J; Vale, Peter; Whelan, Jonathan; Constantino, Carlos; Dotro, Gabriela; Cartmell, Elise.
Affiliation
  • Hargreaves AJ; Cranfield Water Science Institute, Cranfield University, College Road, Cranfield, Bedford, MK43 0AL UK.
  • Vale P; Severn Trent Water, 2 St John's Street, Coventry, CV1 2LZ UK.
  • Whelan J; Severn Trent Water, 2 St John's Street, Coventry, CV1 2LZ UK.
  • Constantino C; Strategic Advisory Services, Atkins, Chilbrook Oasis Business Park, Eynsham, Oxford, OX29 4AH UK.
  • Dotro G; Cranfield Water Science Institute, Cranfield University, College Road, Cranfield, Bedford, MK43 0AL UK.
  • Cartmell E; Cranfield Water Science Institute, Cranfield University, College Road, Cranfield, Bedford, MK43 0AL UK.
Water Air Soil Pollut ; 227: 89, 2016.
Article in En | MEDLINE | ID: mdl-26949273
It is important to understand the fate of Hg and Sb within the wastewater treatment process so as to examine potential treatment options and to ensure compliance with regulatory standards. The fate of Hg and Sb was investigated for an activated sludge process treatment works in the UK. Relatively high crude values (Hg 0.092 µg/L, Sb 1.73 µg/L) were observed at the works, whilst low removal rates within the primary (Hg 52.2 %, Sb 16.3 %) and secondary treatment stages (Hg 29.5 %, Sb -28.9 %) resulted in final effluent concentrations of 0.031 µg/L for Hg and 2.04 µg/L for Sb. Removal of Hg was positively correlated with suspended solids (SS) and chemical oxygen demand (COD) removal, whilst Sb was negatively correlated. Elevated final effluent Sb concentrations compared with crude values were postulated and were suggested to result from Sb present in returned sludge liquors. Kepner Tregoe (KT) analysis was applied to identify suitable treatment technologies. For Hg, chemical techniques (specifically precipitation) were found to be the most suitable whilst for Sb, adsorption (using granulated ferric hydroxide) was deemed most appropriate. Operational solutions, such as lengthening hydraulic retention time, and treatment technologies deployed on sludge liquors were also reviewed but were not feasible for implementation at the works.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Guideline Language: En Journal: Water Air Soil Pollut Year: 2016 Type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Guideline Language: En Journal: Water Air Soil Pollut Year: 2016 Type: Article