Substantial increase in P release following conversion of coastal wetlands to aquaculture ponds from altered kinetic exchange and resupply capacity

被引:7
作者
Hu, Minjie [1 ,2 ,3 ]
Sardans, Jordi [4 ,5 ,6 ]
Yan, Ruibing [2 ]
Wu, Hui [2 ]
Ni, Ranxu [2 ]
Penuelas, Josep [4 ,5 ]
Tong, Chuan [1 ,2 ,3 ]
机构
[1] Fujian Normal Univ, Key Lab Humid Subtrop Ecogeog Proc, Minist Educ, Fuzhou 350007, Peoples R China
[2] Fujian Normal Univ, Sch Geog Sci, Fuzhou 350007, Peoples R China
[3] Natl Forestry & Grassland Adm, Wetland Ecosyst Res Stn Minjiang Estuary, Fuzhou 350215, Peoples R China
[4] UAB Bellaterra, Global Ecol Unit CREAF CSIC, CSIC, Barcelona 08193, Catalonia, Spain
[5] CREAF, Barcelona 08193, Catalonia, Spain
[6] King Abdulaziz Univ, Fac Sci, Dept Math, Nonlinear Anal & Appl Math NAAM Res Grp, POB 80257, Jeddah 21589, Saudi Arabia
基金
中国国家自然科学基金;
关键词
Internal P-loading; Resupply kinetics; Land-use change; Aquaculture pond; Coastal wetland; SEDIMENT-WATER INTERFACE; PHOSPHORUS FRACTIONS; LABILE PHOSPHORUS; REACTIVE PHOSPHORUS; IRON-SULFUR; IN-SITU; REDOX; MOBILIZATION; SALINITY; SULFIDE;
D O I
10.1016/j.watres.2023.119586
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The reclamation of wetlands and its subsequent conversion to aquaculture may alter regional nutrient (im) mobilization and cycling, although direct assessments of phosphorus (P) cycling and its budget balance following wetland conversion are currently scarce. Here, parallel field experiments were conducted to investigate and compare the availability and mobilization mechanisms of P from natural coastal wetlands and the adjacent converted aquaculture ponds based on high-resolution diffusive gradient in thin films (DGT) and dialysis (HR-Peeper) techniques and the DGT-induced fluxes in sediments (DIFS) model. The study found that the conversion of wetland to pond strongly reduced the sediment P pool by changing its forms and distribution. High-resolution data showed that concentrations of labile P and soluble reactive P across the sediment-water profiles were markedly enhanced by the converted aquaculture pond, although they exhibited large spatiotemporal hetero-geneity. Moreover, the synchronous distribution of labile P, iron (Fe) and sulfur (S) across profiles in coastal wetlands indicated that the dissolution of Fe (III) oxyhydroxide-phosphate complexes coupled with sulfate reduction were the main mechanisms regulating sediment P mobilization in coastal areas. However, the con-verted aquaculture pond weakened or even reversed this dependence by decoupling the Fe-S-P reactions by changing the sediment structure and nutrient balance. Substantial increases in labile P, Fe and S fluxes in the pond suggested the conversion of wetland to aquaculture facilitated the internal release of P, Fe and S from sediment into water. The high resupply parameter (R) and desorption rate (k-1) combined with low response time (Tc) in the pond, as fitted by DIFS model, indicated the strong resupply capacity and fast kinetic exchange of sediment P across the sediment-water interface, which is consistent with the high P diffusion fluxes recorded in the pond. It was concluded that converted aquaculture ponds act as an important source of P release in coastal areas, potentially exacerbating water quality degradation and eutrophication. Specific initiatives and actions are therefore urgently needed to alleviate the internal P-loading during aquaculture.
引用
收藏
页数:12
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