Hospital wastewater treatment coupling electrochemical coagulation and activated sludge process

Author:

Shivaprasad Kempanapura Shivashankar1ORCID,Mahesh Shivaswamy1ORCID,Sahana Mahesh1

Affiliation:

1. 1 Department of Environmental Engineering, Sri Jayachamarajendra College of Engineering, Constituent College of JSS Science and Technology University, JSSTI Campus, Mysuru, Karnataka 570006, India

Abstract

Abstract Dual treatment of raw hospital wastewater (RHWW) is investigated by coupling electrochemical coagulation (ECC) with the activated sludge process (ASP) to achieve the goal of partial mineralization and reclaim quality water. The quality parameters of focus were chemical oxygen demand (COD), color, mixed liquor suspended solids (MLSS), total dissolved solids (TDS), chloride, total alkalinity, and fecal coliform. The initial ECC process with short hydraulic retention time (HRT) could remove 75–82% of the insoluble constituents in <60 min, while the HRT for ASP was >7–8 h. The combined ECC + ASP hybrid treatment process showed effective removal of COD, color, TDS, and fecal coliform by 98.5, 99.6, 83.1, and 97.9%, respectively, from its initial values of 4,000, 2,200, 77, and 2,400 MPN/100 mL, respectively. By coupling ECC and ASP, both the insoluble and soluble pollutants/contaminants in the RHWW were removed effectively. The ECC–ASP dual treatment offers a small energy and spatial footprint for mineralizing RHWW.

Publisher

IWA Publishing

Subject

Public Health, Environmental and Occupational Health,Pollution,Waste Management and Disposal,Water Science and Technology,Development

Reference22 articles.

1. Hybrid treatment system for real textile wastewater remediation based on coagulation/flocculation, adsorption and filtration processes: performance and economic evaluation;Journal of Water Process Engineering,2021

2. The use of Al, Cu, and Fe in an integrated electro-coagulation-oxidation process;Journal of Chemistry,2015

3. Performance investigation of the hybrid methods of adsorption or catalytic wet air oxidation subsequent to electrocoagulation in treatment of real textile wastewater and kinetic modelling;Journal of Water Process Engineering,2020

4. Hybrid ceramic membrane reactor combined with fluidized adsorbents and scouring agents for hazardous metal plating wastewater treatment;Journal of Hazardous Materials,2019

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