2021
DOI: 10.1002/wer.1552
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Treatment of hazardous wastewater generated from metal finishing and electro‐coating industry via self‐coagulation: Case study

Abstract: The aim of this study is to find out a sustainable and cost-effective solution to manage hazardous shock loads from metal finishing and electro-coating industry. Results indicated that the main sources of hazardous wastewater are coming from batch chemical cleaning of degreasing basin (CCDB) (pH 13) and contains very hazardous chemicals, batch chemical cleaning of phosphating basin (CCPB) (pH 1.03) and contains high concentrations of iron (2300 mg/L) and zinc (2400 mg/L) and degreasing basin contents (DBC). Di… Show more

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Cited by 8 publications
(1 citation statement)
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“…Tannery wastewater could be treated via several techniques including physical, chemical , biological or combination of these methods. The goal of any tanneries wastewater treatment is to reduce the organic matter, solids, nutrients, color and other water quality parameters as BOD5, COD, TDS and turbidity [9,22]. Song et al [23] use alum and ferric chloride for treatment of tannery wastewater and achieve 85-85% for color removal, 30-37 % COD, 38-46% TSS and 74-99% of chrmomium.…”
Section: Tannery Wastewatermentioning
confidence: 99%
“…Tannery wastewater could be treated via several techniques including physical, chemical , biological or combination of these methods. The goal of any tanneries wastewater treatment is to reduce the organic matter, solids, nutrients, color and other water quality parameters as BOD5, COD, TDS and turbidity [9,22]. Song et al [23] use alum and ferric chloride for treatment of tannery wastewater and achieve 85-85% for color removal, 30-37 % COD, 38-46% TSS and 74-99% of chrmomium.…”
Section: Tannery Wastewatermentioning
confidence: 99%