Removal of leachate pollutants using flocculation method at simultaneous factors of optimum pH and Tacca leontopetaloides biopolymer flocculant (TBPF) dosage via face‐centred central composite design

Author:

Mohd Makhtar Nurul Shuhada1,Idris Juferi12ORCID,Musa Mohibah1,Andou Yoshito34,Ku Hamid Ku Halim1,Puasa Siti Wahidah1,Husen Rafidah5

Affiliation:

1. School of Chemical Engineering, College of Engineering Universiti Teknologi MARA (UiTM), Selangor Branch Shah Alam Selangor Malaysia

2. School of Chemical Engineering, College of Engineering Universiti Teknologi MARA (UiTM), Sarawak Branch, Samarahan Campus Kota Samarahan Sarawak Malaysia

3. Department of Life Science and Systems Engineering, Graduate School of Life Science and Systems Engineering Kyushu Institute of Technology Fukuoka Japan

4. Collaborative Research Centre for Green Materials on Environmental Technology Kyushu Institute of Technology Fukuoka Japan

5. Faculty of Applied Sciences Universiti Teknologi MARA (UiTM), Sarawak Branch, Samarahan 2 Campus Kota Samarahan Sarawak Malaysia

Abstract

AbstractThe effect of the interaction factor between pH and dosage is important in leachate wastewater treatment. This study aims to remove leachate pollutants such as turbidity, total suspended solid (TSS), chemical oxygen demand (COD) and colour using simultaneous factors of plant‐based Tacca leontopetaloides biopolymer flocculant (TBPF) dosage and leachate pH. The flocculation process was carried out through jar test by applying the perikinetic theory and statical analysis (face‐centred central composite design). The results found that the optimum leachate pH and TBPF dosage were pH 3 and 150 mg/L, respectively. The highest removal of leachate pollutants reached up to 69% with a second‐order perikinetic model; R2 = 0.9545 and k = 9 × 10−6 L/mg/min were obtained. Simultaneous interaction factors between leachate pH and TBPF dosage on turbidity and TSS removal were found significant and hence can be applied in the actual leachate wastewater treatment industry, particularly at the primary stage using the proposed model.

Funder

Kementerian Pendidikan Malaysia

Publisher

Wiley

Subject

Management, Monitoring, Policy and Law,Pollution,Water Science and Technology,Environmental Engineering

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