利用细菌多样性研究巴格达迪亚拉河某些地点的水和沉积物质量

Q3 Environmental Science Environment and Natural Resources Journal Pub Date : 2023-10-05 DOI:10.32526/ennrj/21/20230136
Nabaa Shakir Hadi
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引用次数: 0

摘要

以Rustumiya污水处理设施的影响为重点,研究了迪亚拉河(伊拉克)的理化污染和指示性细菌污染。从2022年3月到2023年2月,巴格达的迪亚拉河每月采样一次地表水和沉积物。研究结果显示了理化参数(pH、EC、盐度和TDS)和细菌学标记(TC、FC、大肠杆菌和FS)的季节和地理差异。研究程序和方法表明,春夏两季沉积物中pH、EC、TDS等理化参数均超过了保护水生生物的标准限值。通过跟踪粪便指示菌(大肠杆菌和肠球菌)来评估水和沉积物中的细菌污染水平,秋冬季节细菌污染物浓度最高。在这项研究中,主要发现是大多数研究站的水被分类为不推荐或不可接受,沉积物被分类为可接受或保守接受。通过粪便大肠菌群与粪便链球菌的比值值确定的污染源在大多数研究站点为人类来源,在春夏季为混合来源。本研究的细菌指标在数量和质量上均表现出波动,表明其作为迪亚拉河水体和沉积物污染的生物指标具有潜在的应用价值。
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Evaluation of Water and Sediment Quality by Bacteriological Diversity Studies on Certain Locations of the Diyala River, Baghdad
With a focus on the impact of the Rustumiya sewage treatment facility, the physio-chemical and indicator bacterial contamination pollution of the Diyala River (Iraq) was examined. The Diyala River in Baghdad was sampled on a monthly basis from March 2022 to February 2023 for surface water and sediment. The findings demonstrated seasonal and geographical variation in physio-chemical parameters (pH, EC, salinity, and TDS) and bacteriological markers (TC, FC, E. coli, and FS). The research procedures and methods showed that some physicochemical parameters (pH, EC, TDS) in sediment exceeded their standard limits concerning aquatic life protection in spring and summer. The level of bacteriological pollution in the water and sediments, evaluated by tracking of faecal indicator bacteria (E. coli and Enterococci), during the autumn and winter seasons had the largest concentration of bacterial contaminants. In this study, the main finding was the majority of the studied stations had water classified as not recommended or unacceptable and sediment classified as acceptable or conservatively accepted. The source of contamination, determined by the ratio value of faecal coliform bacteria to faecal Streptococcus, was from human origin in the majority of studied stations, and from mixed origin during the spring and summer. Bacterial indicators in this research exhibited both quantitative and qualitative fluctuation, suggesting their potential utility as a bio-indicator for contamination of water and sediment in the Diyala River.
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来源期刊
Environment and Natural Resources Journal
Environment and Natural Resources Journal Environmental Science-Environmental Science (all)
CiteScore
1.90
自引率
0.00%
发文量
49
审稿时长
8 weeks
期刊介绍: The Environment and Natural Resources Journal is a peer-reviewed journal, which provides insight scientific knowledge into the diverse dimensions of integrated environmental and natural resource management. The journal aims to provide a platform for exchange and distribution of the knowledge and cutting-edge research in the fields of environmental science and natural resource management to academicians, scientists and researchers. The journal accepts a varied array of manuscripts on all aspects of environmental science and natural resource management. The journal scope covers the integration of multidisciplinary sciences for prevention, control, treatment, environmental clean-up and restoration. The study of the existing or emerging problems of environment and natural resources in the region of Southeast Asia and the creation of novel knowledge and/or recommendations of mitigation measures for sustainable development policies are emphasized. The subject areas are diverse, but specific topics of interest include: -Biodiversity -Climate change -Detection and monitoring of polluted sources e.g., industry, mining -Disaster e.g., forest fire, flooding, earthquake, tsunami, or tidal wave -Ecological/Environmental modelling -Emerging contaminants/hazardous wastes investigation and remediation -Environmental dynamics e.g., coastal erosion, sea level rise -Environmental assessment tools, policy and management e.g., GIS, remote sensing, Environmental -Management System (EMS) -Environmental pollution and other novel solutions to pollution -Remediation technology of contaminated environments -Transboundary pollution -Waste and wastewater treatments and disposal technology
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