Wetz Michael S, Hayes Kenneth C, Fisher Kelsey V B, Price Lynn, Sterba-Boatwright Blair
Department of Life Sciences, Texas A&M University-Corpus Christi, 6300 Ocean Dr., Unit 5860, Corpus Christi, TX 78412, United States.
Department of Life Sciences, Texas A&M University-Corpus Christi, 6300 Ocean Dr., Unit 5860, Corpus Christi, TX 78412, United States.
Mar Pollut Bull. 2016 Mar 15;104(1-2):44-53. doi: 10.1016/j.marpolbul.2016.02.013. Epub 2016 Feb 11.
Results are presented from a study of water quality dynamics in a shallow subtropical estuary, Oso Bay, Texas, which has a watershed that has undergone extensive urbanization in recent decades. High inorganic nutrient, dissolved organic matter and chlorophyll concentrations, as well as low pH (<8), were observed in a region of Oso Bay that receives wastewater effluent. Despite being shallow (<1 m) and subjected to strong winds on a regular basis, this region also exhibited episodic hypoxia/anoxia. The low oxygen and pH conditions are likely to impose significant stress on benthic organisms and nekton in the affected area. Signatures of eutrophied water were occasionally observed at the mouth of Oso Bay, suggesting that it may be exported to adjacent Corpus Christi Bay and contribute to seasonal hypoxia development in that system as well. These results argue for wastewater nutrient input reductions in order to alleviate the symptoms of eutrophication.
本文展示了得克萨斯州奥索湾一个亚热带浅河口水质动态研究的结果。奥索湾流域在近几十年经历了广泛的城市化。在奥索湾接收废水排放的区域,观测到了高无机养分、溶解有机物和叶绿素浓度,以及低pH值(<8)。尽管该区域很浅(<1米)且经常遭受强风,但仍出现了间歇性缺氧/无氧现象。低氧和低pH条件可能会给受影响区域的底栖生物和游泳生物带来显著压力。在奥索湾口偶尔观察到富营养化水体的特征,这表明它可能会被输送到邻近的科珀斯克里斯蒂湾,并导致该系统季节性缺氧的发展。这些结果表明,为了缓解富营养化症状,需要减少废水养分输入。