达米埃塔Kafr El-Shinawy饮用水处理厂水处理效率的营养状况和污染物水平

M. El-Adl, M. Deyab, F. Ward, Eman Omar
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引用次数: 0

摘要

本研究旨在研究2018年埃及达米埃塔(Damietta) Kafr El-Shinawy饮用水处理厂原水和处理水理化特征、营养状况以及影响浮游植物多样性和水质的一些化学和生物污染物的季节性波动。浮游植物的分布受水体营养状况、污染物水平和水体的物理化学处理过程(混凝、絮凝和沉淀)的影响。处理后水体中浮游植物种类的优势度明显低于原水,特别是水浮藻(蓝藻门)、湖光藻(蓝藻门)、铜绿微囊藻(蓝藻门)、斑点藻(蓝藻门)、石灰藻(蓝藻门)、单纯小叶藻(绿藻门)和细粒藻(硅藻门)。处理水中的三卤甲烷(THMs)含量高于原水。相反,处理过的水中重金属的浓度较低。浮游植物细胞在原水和处理水中均表现出对重金属特别是锰、锌和铁的生物积累能力。处理水的细胞内微囊藻毒素水平低于原水(0.003 ~ 0.011µg L−1),而细胞外微囊藻毒素水平高于原水(1.00 ~ 2.01µg L−1),其中夏季处理水的微囊藻毒素水平最高(1.3µg L−1)。因此,处理后的水体中溶解的微囊藻毒素和THMs含量高于允许的限度,特别是在夏季,微囊藻物种的奢侈生长季节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trophic status of water and level of pollutants as measures of efficiency of water treatment regime at Kafr El-Shinawy drinking-water treatment plant, Damietta
This work aims to study the seasonal fluctuation in physicochemical characteristics, trophic status, and some chemical and biological pollutants influencing phytoplankton diversity, and water quality in raw and treated water at Kafr El-Shinawy drinking-water treatment plant, Damietta - Egypt seasonally during 2018. Phytoplankton distribution was affected by the trophic status of water, level of pollutants, and physicochemical treatment processes (coagulation, flocculation and sedimentation) of water. The predominance of phytoplankton species, especially Aphanizomenon flos aquae (Cyanophyta), Gomphosphaeria lacustris (Cyanophyta), Microcystis aeruginosa (Cyanophyta), Nostoc punctiforme (Cyanophyta), Oscillatoria limnetica (Cyanophyta), Pediastrum simplex (Chlorophyta), and Melosira granulata (Bacillariophyta) in treated water was much less than in raw water. Trihalomethanes (THMs) levels in treated waters were higher than in raw water. On the contrary, lower concentrations of heavy metals were recorded in treated water. Phytoplankton cells exhibited a bioaccumulation capacity for heavy metals especially Mn, Zn, and Fe in both raw and treated water. Intracellular levels of microcystins were lower (0.003 - 0.011µg L−1) whereas the extracellular levels were higher (1.00 – 2.01 µg L−1) in treated water than raw water, and the former recorded the highest level in raw water during summer (1.3 µg L−1). Hence, the levels of dissolved microcystins and THMs in treated water were higher than the allowable limit, especially during summer, the season of luxurious growth of Microcystis species.
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