评估经处理的废水回用对摩洛哥东部 Oued Bou Naim 水-土-植物生态系统的环境影响

Amine Chaïeb, Mourad Arabi, Oumaima Gamagami, Said Benyoussef, A. Aknaf, A. Moumen
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引用次数: 0

摘要

由于气候变化继续给摩洛哥东部地区带来令人生畏的障碍,废水处理后的再利用已成为应对水资源短缺,特别是灌溉用水短缺的重要解决方案。本研究深入探讨了季节性伊斯利河(Isly River)沿岸废水处理后再利用的影响,重点关注其下游地区,即通常所说的 "Oued Bou Naim"。2023 年开展了一项综合行动,对来自 Oued Bou Naim 的 12 份水样和来自附近农田的 13 份土壤样本进行了理化质量分析。水质分析结果表明,乌季达废水处理厂(WWTP)下游的温度略有上升,从 19.0 ° C 到 24.8 ° C 不等。pH 值在 7.08 至 8.33 之间变化,总体上保持在可接受的范围内。然而,电导率水平从 2154 μS - cm-¹ 到 2898 μS - cm-¹ 不等,超过了世界卫生组织的标准,显示出对土壤-植物-健康生态系统的潜在风险。此外,污水处理厂下游的总溶解固体显著增加,达到 1437 毫克-升-¹。亚硝酸盐含量超标,尤其是在上游,平均值为 2.03 毫克-升-¹,最高值为 5.48 毫克-升-¹。对土壤样本进行研究后发现,正磷酸盐、亚硝酸盐和硝酸盐的含量在下游地区大幅增加。正磷酸盐的含量在下游明显增加,平均为 361.25 毫克-千克-¹,这表明经过处理的废水对土壤造成了影响。亚硝酸盐浓度(平均为 11.61 毫克-千克-¹)和硝酸盐含量(平均为 60 毫克-千克-¹)引起了人们对经过处理的废水灌溉造成污染的担忧。这次调查突出表明,亟需采取负责任的灌溉措施,以保护 "水-土-植物 "生态系统的微妙平衡和人类的福祉。虽然废水处理厂发挥着重要作用,但下游存在大量有害污染物,这突出表明迫切需要对废水处理进行精心管理,同时合理使用农业化学投入品,以防止其渗入附近的生态系统。这样,我们就能有效降低研究区域生态系统和人类健康面临的风险。
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Assessing the Environmental Impacts of Treated Wastewater Reuse on Water-Soil-Plant Ecosystems in Oued Bou Naim, Eastern Morocco
As climate change continues to present daunting obstacles in the eastern region of Morocco, the reuse of treated wastewater has emerged as a vital solution for combating water scarcity, particularly for irrigation purposes. This investigation delves into the implications of reusing treated wastewater along the seasonal Isly River, with a specific fo - cus on its downstream area, commonly referred to as “Oued Bou Naim”. A comprehensive campaign was conducted in 2023 to analyse the physicochemical quality of 12 water samples from Oued Bou Naim and 13 soil samples from nearby agricultural plots. The findings from the water analysis show a marginal increase in temperature downstream from the wastewater treatment plant (WWTP) in Oujda, ranging from 19.0 °C to 24.8 °C . The pH varied between 7.08 and 8.33 and generally remained within acceptable limits. However, the electrical conductivity levels, ranging from 2154 to 2898 μS · cm⁻¹, exceeded WHO standards, indicating potential risks to the soil‒plant‒health ecosystem. Additionally, the total dissolved solids increased significantly downstream from the WWTP, reaching 1437 mg · l⁻¹. For the nitrites, a level exceeding the limits, especially upstream, had an average of 2.03 and a maximum of 5.48 mg · l⁻¹. Upon studying the soil samples, a substantial increase in orthophosphates, nitrites, and nitrates was observed downstream. Orthophosphate levels increased significantly downstream, with an average of 361.25 mg · kg⁻¹, indi - cating the contribution of treated wastewater. The nitrite concentration (average of 11.61 mg · kg⁻¹) and nitrate level (average of 60 mg · kg⁻¹) raise concerns regarding contamination through irrigation with treated wastewater. This re - search highlights the critical need for responsible irrigation practices to safeguard the delicate balance of the “Water-Soil-Plant” ecosystem and the well-being of humans. Although wastewater treatment plants play an important role, the presence of high levels of harmful pollutants downstream emphasizes the urgent need to carefully manage this treatment combined with the reasonable use of agrochemical inputs to prevent their leaching into nearby ecosystems. By doing so, we can effectively reduce the risks to both the ecosystem and human health in the study region.
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