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Erschienen in: Clean Technologies and Environmental Policy 9/2018

13.10.2018 | Original Paper

Treatment of palm oil mill effluent (POME) by coagulation flocculation process using peanut–okra and wheat germ–okra

verfasst von: Chee Yap Chung, Anurita Selvarajoo, Vasanthi Sethu, Apurav Krishna Koyande, Arvin Arputhan, Zhi Chien Lim

Erschienen in: Clean Technologies and Environmental Policy | Ausgabe 9/2018

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Abstract

Coagulation–flocculation has been proven as one of the effective processes in treating palm oil mill effluent (POME), which is a highly polluted wastewater generated from palm oil milling process. Two pairs of natural coagulant–flocculant were studied and evaluated: peanut–okra and wheat germ–okra. This research aims to optimize the operating parameters of the coagulation flocculation process in removing turbidity, total suspended solid and chemical oxygen demand (COD) from POME by using a central composite design in the Design Expert® software. Important parameters such as operating pH, coagulant and flocculant dosages were empirically determined using jar test experiment and optimized using response surface methodology module. Significant quadratic polynomial models were obtained via regression analyses (R2) for peanut–okra (0.9355, 0.9534 and 0.8586 for turbidity, total suspended solids and COD removal, respectively) and wheat germ–okra (0.9638, 0.9578 and 0.7691 for turbidity, total suspended solids and COD removal, respectively). The highest observed removal efficiencies of turbidity, total suspended solids and COD (92.5, 86.6 and 34.8%, respectively, for peanut–okra; 86.6, 87.5 and 43.6%, respectively, for wheat germ–okra) were obtained at optimum pH, coagulant and flocculant dosages (pH 11.6, 1000.1 mg/L and 135.5 mg/L, respectively, for peanut–okra; pH 12, 1170.5 mg/L and 100 mg/L, respectively, for wheat germ–okra). The coagulation flocculation performance of peanut–okra and wheat germ–okra were comparable to each other. Characterizations of the natural coagulant–flocculant, as well as the sludge produced, were performed using Fourier transform infrared, energy-dispersive X-ray spectroscopy and field emission scanning electron microscope. More than 98% of water was removed from POME sludge by using centrifuge and drying methods, indicating that a significant reduction in sludge volume was achieved.

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Literatur
Zurück zum Zitat Ahmad A, Chong M, Bhatia S, Ismail S (2006) Drinking water reclamation from palm oil mill effluent (POME) using membrane technology. Desalination 191(1–3):35–44CrossRef Ahmad A, Chong M, Bhatia S, Ismail S (2006) Drinking water reclamation from palm oil mill effluent (POME) using membrane technology. Desalination 191(1–3):35–44CrossRef
Zurück zum Zitat Ahmad A, Chong M, Bhatia S (2009) A comparative study on the membrane based palm oil mill effluent (POME) treatment plant. J Hazard Mater 171(1–3):166–174CrossRef Ahmad A, Chong M, Bhatia S (2009) A comparative study on the membrane based palm oil mill effluent (POME) treatment plant. J Hazard Mater 171(1–3):166–174CrossRef
Zurück zum Zitat Anastasakis K, Kalderis D, Diamadopoulos E (2009) Flocculation behaviour of mallow and okra mucilage in treating wastewater. Desalination 249(2):786–791CrossRef Anastasakis K, Kalderis D, Diamadopoulos E (2009) Flocculation behaviour of mallow and okra mucilage in treating wastewater. Desalination 249(2):786–791CrossRef
Zurück zum Zitat Antov M, Šćiban M, Petrović N (2010) Proteins from common bean (Phaseolus vulgaris) seed as a natural coagulant for potential application in water turbidity removal. Biores Technol 101(7):2167–2172CrossRef Antov M, Šćiban M, Petrović N (2010) Proteins from common bean (Phaseolus vulgaris) seed as a natural coagulant for potential application in water turbidity removal. Biores Technol 101(7):2167–2172CrossRef
Zurück zum Zitat Araújo C, Alves V, Rezende H, Almeida I, de Assunção R, Tarley C, Segatelli M, Coelho N (2010) Characterization and use of Moringa oleifera seeds as biosorbent for removing metal ions from aqueous effluents. Water Sci Technol 62(9):2198CrossRef Araújo C, Alves V, Rezende H, Almeida I, de Assunção R, Tarley C, Segatelli M, Coelho N (2010) Characterization and use of Moringa oleifera seeds as biosorbent for removing metal ions from aqueous effluents. Water Sci Technol 62(9):2198CrossRef
Zurück zum Zitat Bhatia S, Othman Z, Ahmad A (2007) Pretreatment of palm oil mill effluent (POME) using Moringa oleifera seeds as natural coagulant. J Hazard Mater 145(1–2):120–126CrossRef Bhatia S, Othman Z, Ahmad A (2007) Pretreatment of palm oil mill effluent (POME) using Moringa oleifera seeds as natural coagulant. J Hazard Mater 145(1–2):120–126CrossRef
Zurück zum Zitat Birima A, Hammad H, Desa M, Muda Z (2013) Extraction of natural coagulant from peanut seeds for treatment of turbid water. IOP Conf Ser Earth Environ Sci 16:012065CrossRef Birima A, Hammad H, Desa M, Muda Z (2013) Extraction of natural coagulant from peanut seeds for treatment of turbid water. IOP Conf Ser Earth Environ Sci 16:012065CrossRef
Zurück zum Zitat Birima A, Ahmed A, Noor M, Sidek L, Muda Z, Wong L (2014) Application of salt extracted peanut seeds in the pretreatment of palm oil mill effluent (POME). Desalin Water Treat 55(8):2196–2200CrossRef Birima A, Ahmed A, Noor M, Sidek L, Muda Z, Wong L (2014) Application of salt extracted peanut seeds in the pretreatment of palm oil mill effluent (POME). Desalin Water Treat 55(8):2196–2200CrossRef
Zurück zum Zitat Choy S, Prasad K, Wu T, Raghunandan M, Ramanan R (2014) Utilization of plant-based natural coagulants as future alternatives towards sustainable water clarification. J Environ Sci 26(11):2178–2189CrossRef Choy S, Prasad K, Wu T, Raghunandan M, Ramanan R (2014) Utilization of plant-based natural coagulants as future alternatives towards sustainable water clarification. J Environ Sci 26(11):2178–2189CrossRef
Zurück zum Zitat Daud NS, Ghazi TIM, Ahamad IS (2014) Wheat germ as natural coagulant for treatment of palm oil mill effluent (POME). Int J Chem Environ Eng 5:111–114 Daud NS, Ghazi TIM, Ahamad IS (2014) Wheat germ as natural coagulant for treatment of palm oil mill effluent (POME). Int J Chem Environ Eng 5:111–114
Zurück zum Zitat Flaten T (2001) Aluminium as a risk factor in Alzheimer’s disease, with emphasis on drinking water. Brain Res Bull 55(2):187–196CrossRef Flaten T (2001) Aluminium as a risk factor in Alzheimer’s disease, with emphasis on drinking water. Brain Res Bull 55(2):187–196CrossRef
Zurück zum Zitat Freitas T, Oliveira V, de Souza M, Geraldino H, Almeida V, Fávaro S, Garcia J (2015) Optimization of coagulation–flocculation process for treatment of industrial textile wastewater using okra (A. esculentus) mucilage as natural coagulant. Ind Crops Prod 76:538–544CrossRef Freitas T, Oliveira V, de Souza M, Geraldino H, Almeida V, Fávaro S, Garcia J (2015) Optimization of coagulation–flocculation process for treatment of industrial textile wastewater using okra (A. esculentus) mucilage as natural coagulant. Ind Crops Prod 76:538–544CrossRef
Zurück zum Zitat Garde W, Buchberger S, Wendell D, Kupferle M (2017) Application of Moringa Oleifera seed extract to treat coffee fermentation wastewater. J Hazard Mater 329:102–109CrossRef Garde W, Buchberger S, Wendell D, Kupferle M (2017) Application of Moringa Oleifera seed extract to treat coffee fermentation wastewater. J Hazard Mater 329:102–109CrossRef
Zurück zum Zitat Latif Ahmad A, Ismail S, Bhatia S (2003) Water recycling from palm oil mill effluent (POME) using membrane technology. Desalination 157(1–3):87–95CrossRef Latif Ahmad A, Ismail S, Bhatia S (2003) Water recycling from palm oil mill effluent (POME) using membrane technology. Desalination 157(1–3):87–95CrossRef
Zurück zum Zitat Lee C, Robinson J, Chong M (2014) A review on application of flocculants in wastewater treatment. Process Saf Environ Prot 92(6):489–508CrossRef Lee C, Robinson J, Chong M (2014) A review on application of flocculants in wastewater treatment. Process Saf Environ Prot 92(6):489–508CrossRef
Zurück zum Zitat Ma AN (2000) Environmental management for the oil palm industry. Palm Oil Dev 30:1–10 Ma AN (2000) Environmental management for the oil palm industry. Palm Oil Dev 30:1–10
Zurück zum Zitat Meraz K, Vargas S, Maldonado J, Bravo J, Guzman M, Maldonado E (2016) Eco-friendly innovation for nejayote coagulation–flocculation process using chitosan: evaluation through zeta potential measurements. Chem Eng J 284:536–542CrossRef Meraz K, Vargas S, Maldonado J, Bravo J, Guzman M, Maldonado E (2016) Eco-friendly innovation for nejayote coagulation–flocculation process using chitosan: evaluation through zeta potential measurements. Chem Eng J 284:536–542CrossRef
Zurück zum Zitat Miller S, Fugate E, Craver V, Smith J, Zimmerman J (2008) Toward understanding the efficacy and mechanism of opuntia spp. as a natural coagulant for potential application in water treatment. Environ Sci Technol 42(12):4274–4279CrossRef Miller S, Fugate E, Craver V, Smith J, Zimmerman J (2008) Toward understanding the efficacy and mechanism of opuntia spp. as a natural coagulant for potential application in water treatment. Environ Sci Technol 42(12):4274–4279CrossRef
Zurück zum Zitat Mohajeri L, Aziz H, Isa M, Zahed M (2010) A statistical experiment design approach for optimizing biodegradation of weathered crude oil in coastal sediments. Biores Technol 101(3):893–900CrossRef Mohajeri L, Aziz H, Isa M, Zahed M (2010) A statistical experiment design approach for optimizing biodegradation of weathered crude oil in coastal sediments. Biores Technol 101(3):893–900CrossRef
Zurück zum Zitat Ndabigengesere A, Narasiah K, Talbot B (1995) Active agents and mechanism of coagulation of turbid waters using Moringa oleifera. Water Res 29(2):703–710CrossRef Ndabigengesere A, Narasiah K, Talbot B (1995) Active agents and mechanism of coagulation of turbid waters using Moringa oleifera. Water Res 29(2):703–710CrossRef
Zurück zum Zitat Oladoja N (2015) Headway on natural polymeric coagulants in water and wastewater treatment operations. J Water Process Eng 6:174–192CrossRef Oladoja N (2015) Headway on natural polymeric coagulants in water and wastewater treatment operations. J Water Process Eng 6:174–192CrossRef
Zurück zum Zitat Quah SK, Lim KH, Gillies D, Wood BJ, Kanagaratnam J (1982) Proc. regional workshop on. Palm oil mill technology and effluent treatment. PORIM, Kuala Lumpur, pp 193–200 Quah SK, Lim KH, Gillies D, Wood BJ, Kanagaratnam J (1982) Proc. regional workshop on. Palm oil mill technology and effluent treatment. PORIM, Kuala Lumpur, pp 193–200
Zurück zum Zitat Ramavandi B (2014) Treatment of water turbidity and bacteria by using a coagulant extracted from Plantago ovata. Water Resour Ind 6:36–50CrossRef Ramavandi B (2014) Treatment of water turbidity and bacteria by using a coagulant extracted from Plantago ovata. Water Resour Ind 6:36–50CrossRef
Zurück zum Zitat Rupani PF, Sigh RP, Ibrahim MH, Esa N (2010) Review of current palm oil mill effluent (POME) treatment methods: vermicomposting as a sustainable practice. World Appl Sci J 10(10):1190–1201 Rupani PF, Sigh RP, Ibrahim MH, Esa N (2010) Review of current palm oil mill effluent (POME) treatment methods: vermicomposting as a sustainable practice. World Appl Sci J 10(10):1190–1201
Zurück zum Zitat Saifuddin N, Dinara S (2011) Pretreatment of palm oil mill effluent (POME) using magnetic chitosan. E J Chem 8(s1):S67–S78CrossRef Saifuddin N, Dinara S (2011) Pretreatment of palm oil mill effluent (POME) using magnetic chitosan. E J Chem 8(s1):S67–S78CrossRef
Zurück zum Zitat Sanghi R, Bhattacharya B, Dixit A, Singh V (2006) Ipomoea dasysperma seed gum: an effective natural coagulant for the decolorization of textile dye solutions. J Environ Manag 81(1):36–41CrossRef Sanghi R, Bhattacharya B, Dixit A, Singh V (2006) Ipomoea dasysperma seed gum: an effective natural coagulant for the decolorization of textile dye solutions. J Environ Manag 81(1):36–41CrossRef
Zurück zum Zitat Shak K, Wu T (2014) Coagulation–flocculation treatment of high-strength agro-industrial wastewater using natural Cassia obtusifolia seed gum: treatment efficiencies and flocs characterization. Chem Eng J 256:293–305CrossRef Shak K, Wu T (2014) Coagulation–flocculation treatment of high-strength agro-industrial wastewater using natural Cassia obtusifolia seed gum: treatment efficiencies and flocs characterization. Chem Eng J 256:293–305CrossRef
Zurück zum Zitat Shak K, Wu T (2015) Optimized use of alum together with unmodified Cassia obtusifolia seed gum as a coagulant aid in treatment of palm oil mill effluent under natural pH of wastewater. Ind Crops Prod 76:1169–1178CrossRef Shak K, Wu T (2015) Optimized use of alum together with unmodified Cassia obtusifolia seed gum as a coagulant aid in treatment of palm oil mill effluent under natural pH of wastewater. Ind Crops Prod 76:1169–1178CrossRef
Zurück zum Zitat Sincero A, Sincero G (2003) Physical–chemical treatment of water and wastewater, 1st edn. CRC Press, Boca Raton Sincero A, Sincero G (2003) Physical–chemical treatment of water and wastewater, 1st edn. CRC Press, Boca Raton
Zurück zum Zitat Syafalni, Lim H, Ismail N, Abustan I, Murshed M, Ahmad A (2012) Treatment of landfill leachate by using lateritic soil as a natural coagulant. J Environ Manag 112:353–359CrossRef Syafalni, Lim H, Ismail N, Abustan I, Murshed M, Ahmad A (2012) Treatment of landfill leachate by using lateritic soil as a natural coagulant. J Environ Manag 112:353–359CrossRef
Zurück zum Zitat Tajuddin HA, Luqman Chuah A, Choong Thomas S Y (2015) Microbial community analysis in anaerobic palm oil mill effluent (POME) wastewater by denaturing gradient gel electrophoresis (DGGE). Int J Res Eng Technol 4(8):1–9CrossRef Tajuddin HA, Luqman Chuah A, Choong Thomas S Y (2015) Microbial community analysis in anaerobic palm oil mill effluent (POME) wastewater by denaturing gradient gel electrophoresis (DGGE). Int J Res Eng Technol 4(8):1–9CrossRef
Zurück zum Zitat Teh C, Wu T, Juan J (2014a) Potential use of rice starch in coagulation–flocculation process of agro-industrial wastewater: treatment performance and flocs characterization. Ecol Eng 71:509–519CrossRef Teh C, Wu T, Juan J (2014a) Potential use of rice starch in coagulation–flocculation process of agro-industrial wastewater: treatment performance and flocs characterization. Ecol Eng 71:509–519CrossRef
Zurück zum Zitat Teh C, Wu T, Juan J (2014b) Optimization of agro-industrial wastewater treatment using unmodified rice starch as a natural coagulant. Ind Crops Prod 56:17–26CrossRef Teh C, Wu T, Juan J (2014b) Optimization of agro-industrial wastewater treatment using unmodified rice starch as a natural coagulant. Ind Crops Prod 56:17–26CrossRef
Zurück zum Zitat Zahrim AY, Dexter ZD, Collin JG, Hilal N (2017) Effective coagulation–flocculation treatment of highly polluted palm oil mill biogas plant wastewater using dual coagulants: decolourisation, kinetics and phytotoxicity studies. J Water Process Eng 16:258–269CrossRef Zahrim AY, Dexter ZD, Collin JG, Hilal N (2017) Effective coagulation–flocculation treatment of highly polluted palm oil mill biogas plant wastewater using dual coagulants: decolourisation, kinetics and phytotoxicity studies. J Water Process Eng 16:258–269CrossRef
Metadaten
Titel
Treatment of palm oil mill effluent (POME) by coagulation flocculation process using peanut–okra and wheat germ–okra
verfasst von
Chee Yap Chung
Anurita Selvarajoo
Vasanthi Sethu
Apurav Krishna Koyande
Arvin Arputhan
Zhi Chien Lim
Publikationsdatum
13.10.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Clean Technologies and Environmental Policy / Ausgabe 9/2018
Print ISSN: 1618-954X
Elektronische ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-018-1619-y

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