UR Etude et Gestion des Environnements Urbains et Côtiers, Ecole Nationale d'Ingénieurs de Sfax, B.P. 1173-3038 Sfax, Tunisia.
J Hazard Mater. 2010 Apr 15;176(1-3):992-1005. doi: 10.1016/j.jhazmat.2009.11.140. Epub 2009 Dec 3.
Olive mill wastewater (OMW) evaporation ponds management was investigated in five serial evaporation open-air multiponds of 50 ha located in Sfax (Tunisia). Physico-chemical parameters and microbial flora evolution were considered. Empirical models describing the OMW characteristic changes with the operation time were established and Principal Component Analysis (PCA) described the correlation between physico-chemical and biological parameters. COD, BOD, total solids, polyphenols and electrical conductivity exhibited first-order models. Four groups exhibited high correlations. The first included temperature, density, COD, TSS, TS, BOD, VS, TOC, TKN, polyphenols and minerals. The second group was made up of yeasts and moulds. The third group was established with phenolic compounds, total sugars, fats, total phosphorous, NH(4)(+) and pH. The fourth group was constituted by exclusively aerobic bacteria. Bacterial-growth toxic effect was exhibited by high organic load, ash content and polyphenols, whereas moulds and yeasts were more adapted to OMW. During the storage, all the third group parameter values decreased and were inversely related to the others. In the last pond, COD, BOD, TS and TSS rates were reduced by 40%, 50%, 50% and 75% respectively. The evaporation and the biological activity were the main processes acting, predicting the OMW behavior during evaporation in air-open ponds.
研究了位于突尼斯斯法克斯的五个连续蒸发露天多池塘(总面积为 50 公顷)中的橄榄磨废水(OMW)蒸发池塘管理。考虑了物理化学参数和微生物菌群的演变。建立了描述 OMW 特征随操作时间变化的经验模型,并通过主成分分析(PCA)描述了物理化学和生物参数之间的相关性。COD、BOD、总固体、多酚和电导率呈现出一级模型。四个组显示出高度相关性。第一组包括温度、密度、COD、TSS、TS、BOD、VS、TOC、TKN、多酚和矿物质。第二组由酵母和霉菌组成。第三组由酚类化合物、总糖、脂肪、总磷、NH(4)(+)和 pH 组成。第四组仅由好氧细菌组成。高有机负荷、灰分含量和多酚对细菌生长有毒性作用,而霉菌和酵母更适应 OMW。在储存过程中,第三组的所有参数值都降低了,与其他参数呈反比。在最后一个池塘中,COD、BOD、TS 和 TSS 的去除率分别降低了 40%、50%、50%和 75%。蒸发和生物活性是主要的作用过程,预测了在露天池塘中空气蒸发时 OMW 的行为。