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2019 | OriginalPaper | Buchkapitel

Use of Moringa oleifera Seeds as a Primary Coagulant in Textile Wastewater Treatment

verfasst von : Varun Agarwal, Divya Dixit, Mansi Jayeshbhai Bhatt

Erschienen in: Waste Management and Resource Efficiency

Verlag: Springer Singapore

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Abstract

Recently, development of organic coagulants derived from microorganisms, animal, and plant tissues has been an area of interest of researchers. The present study conducts the performance of natural (M. oleifera seeds) coagulant for turbidity and organic constituent removal from textile wastewater. Impact of dose and pH on efficiency of M. oleifera in textile wastewater was also studied. M. oleifera seeds were extracted and used in powdered form, 2 g of M. oleifera powder mixed with 100 mL water. 95% degradation of textile wastewater sample was achieved when M. oleifera seeds (dose=16 mg/L, pH = 8) were used. Mechanism of M. oleifera coagulation consists of neutralization and adsorption of colloidal positive charge that attract negative charge impurities. Moringa seeds consist of proteins (cationic and dimeric) which help in neutralizing and absorbing colloidal charges in water containing suspended solids. These suspended impurities combine and form heavy clumps which results in easy settling of suspended particles. Natural coagulant produced less voluminous sludge and readily biodegradable that accounts for only 21–31% that of alum-treated counterpart. Seeds of M. oleifera (M. oleifera) yielded proteins which can act as effective coagulants in water and wastewater treatment. M. oleifera seeds have great turbidity and color removal potential. Use of M. oleifera seeds as a primary coagulant would decrease the cost of existing water treatment plants. It is eco-friendly method of purification of water, and consequently, it can be recommended for large-scale water treatment.

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Literatur
1.
Zurück zum Zitat Muyibi, S. A., & Evison, L. M. (1995). Optimizing physical parameters affecting coagulation of turbid water with Moringa oleifera seeds. Water Research, 29, 2689–2695.CrossRef Muyibi, S. A., & Evison, L. M. (1995). Optimizing physical parameters affecting coagulation of turbid water with Moringa oleifera seeds. Water Research, 29, 2689–2695.CrossRef
2.
Zurück zum Zitat Edzwald, J., James, K., & Dempsey, B. (1989). Coagulation as an integrated water treatment processes. Water Works Association, 81, 72–78. Edzwald, J., James, K., & Dempsey, B. (1989). Coagulation as an integrated water treatment processes. Water Works Association, 81, 72–78.
3.
Zurück zum Zitat Okuda, T., Naes, A. U., Nishijima, W., & Okada, M. (2001). Coagulation mechanism of salt solution extracted active component in Moringa oleifera seeds. Water Research, 35, 830–834.CrossRef Okuda, T., Naes, A. U., Nishijima, W., & Okada, M. (2001). Coagulation mechanism of salt solution extracted active component in Moringa oleifera seeds. Water Research, 35, 830–834.CrossRef
4.
Zurück zum Zitat Gottsch, E. (1992). Purification of turbid surface water by plants in Ethiopia. Moringa stenopetala, Walia, 14, 23–28. Gottsch, E. (1992). Purification of turbid surface water by plants in Ethiopia. Moringa stenopetala, Walia, 14, 23–28.
5.
Zurück zum Zitat Jahn, S. A. A. (1988). Using Moringa seeds as coagulants in developing countries. American Water Works Association. Jahn, S. A. A. (1988). Using Moringa seeds as coagulants in developing countries. American Water Works Association.
6.
Zurück zum Zitat APHA. (1995). Standards methods for the examination of water and waste water. American public Health Association, American water works Association and water pollution control Federation, 19th end, Washington, D.C. APHA. (1995). Standards methods for the examination of water and waste water. American public Health Association, American water works Association and water pollution control Federation, 19th end, Washington, D.C.
7.
Zurück zum Zitat Kawamura, S. (1991). Effectiveness of natural poly electrolytes in water treatment. Journal of the American Water Works Association, 83(10), 88–91.CrossRef Kawamura, S. (1991). Effectiveness of natural poly electrolytes in water treatment. Journal of the American Water Works Association, 83(10), 88–91.CrossRef
8.
Zurück zum Zitat Santos, A. F. S., Argolo, A. C. C., Coelho, L. C. B. B., & Paiva, P. M. G. (2005). Detection of water soluble lectin and antioxidant component from moringa oleifera seeds. Water Research, 39(6), 975–980.CrossRef Santos, A. F. S., Argolo, A. C. C., Coelho, L. C. B. B., & Paiva, P. M. G. (2005). Detection of water soluble lectin and antioxidant component from moringa oleifera seeds. Water Research, 39(6), 975–980.CrossRef
9.
Zurück zum Zitat Muyibi, S. A., & Alfugara, A. M. S. (2003). Treatment of surface water with Moringa oleifera seed extract and alum—a comparative study using pilot scale water treatment plant. International Journal of Environmental Studies, 60, 617–626.CrossRef Muyibi, S. A., & Alfugara, A. M. S. (2003). Treatment of surface water with Moringa oleifera seed extract and alum—a comparative study using pilot scale water treatment plant. International Journal of Environmental Studies, 60, 617–626.CrossRef
10.
Zurück zum Zitat Ndabigengesere, A., & Narasiah, K. S. (1998). Use of Moringa oleifera seed as a primary coagulant in wastewater treatment. Environmental Technology, 19, 789.CrossRef Ndabigengesere, A., & Narasiah, K. S. (1998). Use of Moringa oleifera seed as a primary coagulant in wastewater treatment. Environmental Technology, 19, 789.CrossRef
11.
Zurück zum Zitat Folkard, G. K., & Sutherland, J. P. (2002). Development of a naturally derived coagulant for water and wastewater treatment. Water Science and Technology Water Supply. Folkard, G. K., & Sutherland, J. P. (2002). Development of a naturally derived coagulant for water and wastewater treatment. Water Science and Technology Water Supply.
12.
Zurück zum Zitat Ghebremichael, K. A., Gunaratna, K. R., Henriksson, H., Brumer, H., & Dalhammar, G. (2005). A simple purification and activity assay of the coagulant protein from Moringa oleifera seed. Water Research, 39, 2338–2344.CrossRef Ghebremichael, K. A., Gunaratna, K. R., Henriksson, H., Brumer, H., & Dalhammar, G. (2005). A simple purification and activity assay of the coagulant protein from Moringa oleifera seed. Water Research, 39, 2338–2344.CrossRef
Metadaten
Titel
Use of Moringa oleifera Seeds as a Primary Coagulant in Textile Wastewater Treatment
verfasst von
Varun Agarwal
Divya Dixit
Mansi Jayeshbhai Bhatt
Copyright-Jahr
2019
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-7290-1_102