| Literature DB >> 25176493 |
Jian Yang1, Liang Hong, Yan-Hong Liu, Jian-Wei Guo, Li-Fei Lin.
Abstract
In this study, a combined process was developed that included flocculation, Fenton oxidation and sequencing batch reactor (SBR) to treat oilfield fracturing wastewater (FW). Flocculation and Fenton oxidation were applied to reduce chemical oxygen demand (COD) organic load and to enhance biodegradability, respectively. For flocculation, the optimum conditions were: polymeric aluminium chloride dosage, 40 mg/L; polyacrylamide dosage, 4 mg/L; dilution ratio, 1:2 and stirring time, 30 min. For Fenton oxidation, a total reaction time of 60 min, a H₂O₂dosage of 2 m mol/L, with a [H₂O₂]/[FeSO₄] ratio of 2 were selected to achieve optimum oxidation. Under these optimum flocculation and Fenton oxidation conditions, the COD removal efficiency was found to be 76.6%. Following pretreatment with flocculation and Fenton oxidation, the FW was further remediated using a SBR. Results show that COD was reduced to 92 mg/L, and the overall water quality of the final effluent could meet the class I national wastewater discharge standard of petrochemical industry of China.Entities:
Keywords: biodegradability; flocculation; fracturing wastewater; orthogonal experiment; pretreatment
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Year: 2014 PMID: 25176493 DOI: 10.1080/09593330.2014.924570
Source DB: PubMed Journal: Environ Technol ISSN: 0959-3330 Impact factor: 3.247