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Monitoring and modelling total phosphorus contributions to a freshwater lake with cage-aquaculture

机译:用网箱养殖监测和模拟淡水湖中总磷的贡献

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摘要

A mass-balance modelling approach combined with a sensitivity analysis was utilized to gain an improved understanding of the relative contributions of phosphorus (P) loading from various anthropogenic and non-anthropogenic sources into Lake Wolsey (Manitoulin Island, Ontario, Canada), a Type 2 freshwater lake with a cage-aquaculture facility. Total P loadings were estimated from eight sources (inlet exchange, non-point sources, cage-aquaculture facility, internal loading, groundwater seepage, atmospheric deposition, leaf litter and dwellings) and three sinks (outlet exchange, sedimentation and sportfishing). Results indicated that over the study period (May-November 2007) the non-point sources were the leading contributor of total P to Lake Wolsey (1120kg P) followed by the cage-aquaculture facility loading (915kg P), inlet exchange (539kg P), groundwater inputs (305kg P), dwellings (219kg P), internal P recycling loads from the hypoxic hypolimnion (186kg P), atmospheric deposition (79kg P) and decomposing leaf litter (8.1kg P). When comparing the loadings in this study, the sensitivity analysis showed that non-point sources were the only significant input parameter of total P loading to the in-lake concentrations of P in Lake Wolsey(P=0.05). Information from this project will provide water quality managers with sound scientific information to make defencible decisions pertaining to policy and regulatory approaches for water quality risk assessment and management of cage-aquaculture in Type 2 sites.
机译:利用质量平衡建模方法与敏感性分析相结合,可以更好地理解各种人为和非人为来源进入沃尔西湖(加拿大安大略省马尼图林岛)的磷的相对贡献2个带网箱养殖设施的淡水湖。从8个来源(入口交换,非点源,网箱养殖设施,内部负荷,地下水渗漏,大气沉积,叶子凋落物和住宅)和3个汇(出口交换,沉积和运动鱼类)估计了总磷含量。结果表明,在研究期内(2007年5月至11月),非点源是Wolsey湖总磷(1120kg P)的主要贡献源,其次是网箱养殖设施的装载量(915kg P),进口交换量(539kg P) ),地下水输入量(305kg P),住所(219kg P),低氧次生水的内部P循环负荷(186kg P),大气沉积物(79kg P)和分解的枯枝落叶(8.1kg P)。在比较本研究中的负荷时,敏感性分析表明,非点源是湖中Wolsey湖中P的总磷负荷的唯一重要输入参数(P = 0.05)。该项目提供的信息将为水质管理者提供可靠的科学信息,以便做出有关2类场所水质风险评估和网箱养殖管理政策和法规方法的合理决策。

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