2023
DOI: 10.3389/fenvs.2023.1142227
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Role of coagulation/flocculation as a pretreatment option to reduce colloidal/bio-colloidal fouling in tertiary filtration of textile wastewater: A review and future outlooks

Abstract: Textile industry wastewater has become a growing concern in recent years due to it has been characterized by a high load of organic dyes, suspended and dissolved solids, alkaline pH, and low biodegradability. As a result, environmental authorities necessitate textile industries to treat effluents before discharge into the environment. Tertiary filters, particularly membrane filtrations, are the most preferable process to recover good-quality water at the tertiary treatment phase, which feeds from secondary eff… Show more

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Cited by 24 publications
(6 citation statements)
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“…Chemical methods employ additives like activated carbon, ozone, and various coagulants to destabilize or aggregate particles, which are crucial for contaminant removal. These processes involve specific operational requirements, such as precise dosing and monitoring of chemical levels to prevent environmental harm [98][99][100]. The ongoing need for enhancement is driven by challenges like sedimentation inefficiencies and filtration process optimization [101][102][103].…”
Section: Chemical Methodsmentioning
confidence: 99%
“…Chemical methods employ additives like activated carbon, ozone, and various coagulants to destabilize or aggregate particles, which are crucial for contaminant removal. These processes involve specific operational requirements, such as precise dosing and monitoring of chemical levels to prevent environmental harm [98][99][100]. The ongoing need for enhancement is driven by challenges like sedimentation inefficiencies and filtration process optimization [101][102][103].…”
Section: Chemical Methodsmentioning
confidence: 99%
“…Coagulants and flocculants commonly applied to control organic fouling can be categorized into various groups depending on their molecular weight and composition. Some examples include low-molecular-weight inorganic coagulants such as ferric chloride and aluminum sulfate, inorganic polymeric coagulants such as polyaluminum chloride (PAC) and polysilicate aluminum chloride (PASiC), synthetic organic polymeric flocculants such as polyacrylamide (PAM) and its derivatives, natural polymeric flocculants such as chitosan, starch, cellulose, and other polysaccharide materials, as well as microbial flocculants [37,40].…”
Section: Pre-treatment Techniquesmentioning
confidence: 99%
“…Effective pretreatment reduces the fouling potential by minimizing the presence of foulant precursors and particulate matter in the system. [5,[38][39][40][41] Physical Cleaning Physical cleaning methods involve mechanical actions to physically remove organic fouling. Techniques include backwashing, air scouring, vibration, rotating membranes, and ultrasound [48,52,55,56,58,64] Chemical Cleaning Chemical cleaning utilizes cleaning agents or solvents to dissolve or dislodge organic foulants.…”
Section: Pretreatmentmentioning
confidence: 99%
“…Furthermore, their improved semiconducting, photo conducting, photoelectrical, and catalytic capabilities attract substantial attention in optics and electronicsthese qualities position SeNPs as suitable candidates for various industrial and medicinal applications. Se NPs are synthesized through diverse chemical, physical, and biological methods (Aragaw et al, 2023). In this study, with a primary focus on the practical application of degrading textile dyes, it becomes crucial to precisely adjust the morphology optical band gap and ensure the biocompatibility of Selenium nanoparticles (Se NPs).…”
Section: Introductionmentioning
confidence: 99%