Maranho L A, Garrido-Pérez M C, Baena-Nogueras R M, Lara-Martín P A, Antón-Martín R, DelValls T A, Martín-Díaz M L
Physical Chemistry Department, Faculty of Marine and Environmental Sciences, Campus of International Excellence of the Sea (CEIMAR), University of Cádiz, Puerto Real, 11510, Cádiz, Spain,
Ecotoxicology. 2015 Mar;24(2):368-80. doi: 10.1007/s10646-014-1385-5. Epub 2014 Nov 20.
Adverse effects of wastewater treatment plants (WWTPs) on sediment quality at the Bay of Cádiz (SW, Spain) were evaluated by a battery of acute bioassays and chemical contamination. Five sites directly affected by WWTPs effluents and one control site were chosen. Results evidenced clear deterioration of ecological sediment quality parameters and possible effects on aquatic communities towards WWTPs areas. Acute toxicity and chemical contamination varied significantly across the studied sites and differed between winter and summer seasons. The Bay of Cádiz is contaminated by PAHs, metals, detergents (SAS) and pharmaceutical products. Principal Component Analyses indicated metals, SAS and pharmaceutical products as the major environmental stresses. Sea-urchin embryo-larval and microalgae growth rate were the most sensitive bioassays to evaluate resuspension of contaminants (elutriate) from bulk sediment. Amphipods mortality and Microtox(®) solid phase test bioassays were recommended to evaluate bulk sediment quality. Therefore, the use of multiple-bioassays, sensitive to sediment pollution, may provide complementary information to diagnose environmental factors that can impair aquatic communities. The battery of bioassays is recommended to assess and monitor marine sediments directly affected by a mixture of contaminants released from WWTPs.
通过一系列急性生物测定和化学污染评估了污水处理厂(WWTPs)对加的斯湾(西班牙西南部)沉积物质量的不利影响。选择了五个直接受污水处理厂废水影响的地点和一个对照地点。结果表明,生态沉积物质量参数明显恶化,并且对污水处理厂区域的水生群落可能产生影响。在所研究的地点中,急性毒性和化学污染差异显著,并且在冬季和夏季有所不同。加的斯湾受到多环芳烃、金属、洗涤剂(直链烷基苯磺酸盐)和药品的污染。主成分分析表明,金属、直链烷基苯磺酸盐和药品是主要的环境压力源。海胆胚胎-幼虫和微藻生长率是评估来自大量沉积物中污染物(淘析物)再悬浮的最敏感生物测定方法。推荐使用端足类动物死亡率和Microtox(®)固相测试生物测定方法来评估大量沉积物质量。因此,使用对沉积物污染敏感的多种生物测定方法,可能会提供补充信息,以诊断可能损害水生群落的环境因素。建议使用该系列生物测定方法来评估和监测直接受污水处理厂释放的污染物混合物影响的海洋沉积物。