气候变化和热带风暴对越南南定Giao Thuy生态系统和蛤蜊养殖活动的潜在风险

Giang Pham Thai, Lua Dang Thi, Loan Vu Thi Kieu, Nguyet Nguyen Thi Minh, Thanh Ha Pham Thi, Huy Tong Tran, Jeong Dae Seong, Han Kyungmin
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引用次数: 1

摘要

河口区生态系统和水产养殖对气候变化和严重气候事件非常敏感。本研究在越南南定省Giao Thuy区一个1800公顷的蛤养殖区进行了3次环境监测。第一次监测是在晴朗的天气进行的。第二次和第三次监测分别在马安和诺如风暴后两天进行。调查了5个地点水体和沉积物理化变量、底栖动物和浮游生物组成和密度以及蛤类病原体的变化。此外,还研究了该地区的温度、降雨和日照时数的长期变化。结果显示气温、降雨量和日照时数呈增加趋势。养殖蛤的种类和活动发生了很大的变化。马安和诺如对水质产生了负面影响,水质指数分别下降了39%和30%。风暴降低了水的盐度、碱度和沉积物中的磷、铁、铅。然而,它们增加了水中的亚硝酸盐、磷、总悬浮固体、浮游植物、浮游动物的密度,以及沉积物的总氮、镉。蛤体弧菌总密度在两次风暴期间波动较大。风暴的影响因地点而异。浅层污水和生活污水邻近站点遭受极端温度、盐度变化和有机污染的高风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potential risks of climate change and tropical storms on ecosystem and clams culture activities in Giao Thuy, Nam Dinh, Vietnam
Abstract Ecosystem and aquaculture in estuary areas are sensitive to climate change and severe climatic events. In this study, three environmental monitoring events were carried out on a 1800-ha clam culture area in Giao Thuy district, Nam Dinh province, Vietnam. The first monitoring was carried out in fair weather. The second and 3rd monitorings were conducted two days after the Ma On and Noru storms, respectively. The variation of water and sediment physicochemical variables, zoobenthos and plankton composition and density, and clam pathogen were investigated at five locations. In addition, long-term variations of temperature, rainfall, and sunshine duration in the area were investigated. The results illustrated the increased temperature, rainfall, and sunshine duration tendency. The clam-cultured species and activities had substantially changed. Ma On and Noru negatively impacted water quality by decreasing the water quality index by 39% and 30%, respectively. Storms decreased water salinity, alkalinity, and sediment’s phosphorus, iron, lead. However, they increased water’s nitrite, phosphorus, total suspended solid, phytoplankton, zooplankton density, and sediment’s total nitrogen, cadimium. The total Vibrio spp. density in clam highly fluctuated between the two storm events. The effect of storm varied according to site location. Shallow and domestic wastewater adjacent sites suffered high risks of extreme temperature, salinity variation, and organic pollution.
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