Poly-ferric sulphate as superior coagulant: A review on preparation methods and properties

Author:

Mohamad Nurul Aqilah1,Hamzah Sofiah2,Hairom Nur Hanis Hayati3,Zahid Mohd Salleh Amri4,Ali Khairol Annuar Mohd5,Ghazali Che Mohd Ruzaidi1,Sandu Andrei Victor678,al Bakri Abdullah Mohd Mustafa910,Vizureanu Petrica611

Affiliation:

1. Faculty of Ocean Engineering, Technology, and Informatics, Universiti Malaysia Terengganu , 21030 Kuala Nerus , Terengganu , Malaysia

2. Sustainable Energy & Environmental Technology Special Interest Group, Faculty of Ocean Engineering, Technology, and Informatics, Universiti Malaysia Terengganu , 21030 Kuala Nerus , Terengganu , Malaysia

3. Faculty of Engineering Technology, Universiti Tun Hussein Onn Malaysia, Hab Pendidikan Tinggi Pagoh , Km 1, Jalan Panchor, Johor , Muar , 84600 , Malaysia

4. Venator Asia Sdn. Bhd, Teluk Kalung , 24007 Kemaman , Terengganu , Malaysia

5. HB Laboratories, Sdn. Bhd. Taman Perindstrian Puchong , 41700 Puchong , Selangor , Malaysia

6. Faculty of Materials Science and Engineering, Gheorghe Asachi Technical University of Lasi , Blvd. D. Mangeron 71, 700050 , Iasi , Romania

7. Romanian Inventors Forum , Str. Sf. P. Movila 3, 700089 Iasi , Romania

8. Academy of Romanian Scientists , 54 Splaiul Independentei St., Sect. 5, 050094 , Bucharest ,  Romania

9. Faculty of Chemical Engineering & Technology, Universiti Malaysia Perlis (UniMAP) , 01000 Perlis , Malaysia

10. Centre of Excellence Geopolymer and Green Technology (CEGeoGTech), Universiti Malaysia Perlis (UniMAP) , 01000 Perlis , Malaysia

11. Technical Sciences Academy of Romania , Dacia Blvd 26, 030167 Bucharest , Romania

Abstract

Abstract Iron-based coagulants are widely used in wastewater treatment due to their high positively charged ion that effectively destabilise colloidal suspension, and thus contribute to the formation of insoluble flocs. Ferric chloride, ferrous sulphate, and poly-ferric sulphate (PFS) are examples of iron-based coagulants that are highly available, and are beneficial in producing denser flocs, thereby improving settling characteristics. This work aims to review the preparation methods of PFS and critically discuss the influence of these methods on the PFS properties and performance as a chemical coagulant for water and wastewater treatment. In polymeric form, PFS is one of the pre-hydrolysing metallic salts with the chemical formula [Fe2(OH) n (SO4)3−n/2] m (where, n < 2, m > 10) and has a dark brownish red colour as well as is more viscous and less corrosive. PFS has an amorphous structure with small traces of crystallinity, containing both hydroxyl and sulphate functional groups. It has been applied in many industries including water or wastewater treatment which is also discussed in this study. It has the ability to remove pollutants contained in water or wastewater, such as turbidity, colour, chemical and biological oxygen demand, phosphorus, and others. This study also provides a review on the combination of PFS with other chemical coagulants or flocculants in the coagulation/flocculation process, and also flocs formed after a more stable treatment process.

Publisher

Walter de Gruyter GmbH

Subject

Condensed Matter Physics,General Materials Science

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