Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, 361021, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Environ Monit Assess. 2022 Dec 27;195(1):231. doi: 10.1007/s10661-022-10822-1.
The marine aquaculture industry has caused a suite of adverse environmental consequences, including offshore eutrophication. However, little is known about the extent to which aquaculture effluents affect nearby wetland ecosystems. We carried out a field experiment in a mangrove stand located between two effluent-receiving creeks to estimate the extent to which marine aquaculture affects the soil nutrient distribution and plant nutrient status of adjacent mangroves. Carbon (C), nitrogen (N), and phosphorus (P) contents and C isotopic signatures were determined seasonally in creeks, pore water, surface soils, and in the leaves of the dominant mangrove species Kandelia obovata. The creeks exhibited nutrient enrichment (2.44 mg N L and 0.09 mg P L on average). The soils had N (from 1.40 to 2.70 g kg) and P (from 0.58 to 2.76 g kg) much greater than those of pristine mangrove forests. Combined analyses of the N:P ratio, nutrient resorption efficiency, and proficiency indicated that soil P met plant demands, but plants in most plots showed N limitation, suggesting that soil nutrient accumulation did not fundamentally impact the plant nutrient status. Collectively, this case study shows that marine aquaculture farms can affect adjacent mangrove stands even though their effluents are not directly discharged into the mangrove stands, but mangrove forests may have substantial buffering capabilities for long-term nutrient loading.
水产养殖行业造成了一系列不良的环境后果,包括近海富营养化。然而,人们对水产养殖废水对附近湿地生态系统的影响程度知之甚少。我们在两个受废水影响的小溪之间的红树林中进行了一项实地实验,以评估水产养殖对相邻红树林土壤养分分布和植物养分状况的影响。我们季节性地在小溪、孔隙水、表层土壤和优势红树林物种秋茄的叶片中测定了碳(C)、氮(N)和磷(P)的含量和 C 同位素特征。小溪表现出养分富化(平均为 2.44 mg N L 和 0.09 mg P L)。土壤中的 N(从 1.40 到 2.70 g kg)和 P(从 0.58 到 2.76 g kg)远高于原始红树林森林中的含量。N:P 比、养分再吸收效率和效率的综合分析表明,土壤 P 满足了植物的需求,但大多数样地的植物表现出 N 限制,这表明土壤养分积累并没有从根本上影响植物的养分状况。总的来说,这个案例研究表明,即使水产养殖农场的废水没有直接排放到红树林中,它们也会影响附近的红树林,不过红树林可能具有长期养分负荷的大量缓冲能力。