Optimization process of organic matter removal from wastewater by using Eichhornia crassipes.

Sènandémi Edwige Reine Mahunon, Martin Pépin Aina, Akuemaho Virgile Onésime Akowanou, Edmond Konan Kouassi, Benjamin Kouassi Yao, Kopoin Adouby, Patrick Drogui

Journal: Environmental science and pollution research international 2019;25(29):29219-29226

PMID: 30117026

Abstract

This study aimed to determine the optimal conditions for organic matter removal from wastewater by Eichhornia crassipes (E.C). As a matter of fact, a complete factorial design was used to determine the effect of residence time (X), plant density (X) and initial chemical oxygen demand (COD) concentration (X) on the phytoremediation process. The process's performance was measured on COD (Y), NH (Y) and PO (Y), with the results indicating a reduction of 8.59-81.71% of COD (Y); 22.53-95.81% of NH (Y) and 0.54-99.35% of PO (Y). Then, the first-order models obtained for COD, NH and PO removal were validated using different statistical approaches such as statistical and experimental validation. Moreover, multi-response optimization was carried out through different scenarios. On the whole, the results obtained indicated that two serial ponds are required for an optimum organic matter removal by Eichhornia crassipes. Indeed, for the first pond, a residence time of 15 days is needed with a plant density of 60 ft/m and an initial concentration of about 944 mg/L. The second was the same residence time as the first with similar plant density of 60 ft/m and an initial load 192 mg/L (> 200 mg/L). Optimal organic matter removal from wastewater using Eichhornia crassipes requires two ponds arranged in chain.

Address: Laboratoire des Sciences et Techniques de l'Eau (LSTE), Université d'Abomey-Calavi (UAC), 04 BP 823, Cotonou, Benin.; Laboratoire de Procédés Industriels, de Synthèse, de l'Environnement et des Énergies Nouvelles, Groupe des Procédés et Environnement Institut National Polytechnique Félix Houphouët-Boigny de Yamoussoukro, B.P. 1093, Yamoussoukro, Côte d'Ivoire.; Laboratoire des Sciences et Techniques de l'Eau (LSTE), Université d'Abomey-Calavi (UAC), 04 BP 823, Cotonou, Benin. [email protected].; Institut National de la Recherche Scientifique (INRS-Centre Eau, Terre et Environnement), Université du Québec, 490 rue de la Couronne, Québec, QC, G1K 9A9, Canada.

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