Regulation and stability maintenance method for shallow lake ecosystem

A technology for ecosystems and lakes, applied in the field of shallow lake ecosystems

Inactive Publication Date: 2020-02-28
SHANGHAI OCEAN UNIV
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Problems solved by technology

[0016] Although various single regulation techniques have been widely used at home and abroad, because the various structures and ecological processes of the ecosystem are not as ideal as these techniques assume, in fact, any ecosystem, regardless of its biological structure or The ecological process has huge complexity, that is, in the past, this single technology must hav...

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  • Regulation and stability maintenance method for shallow lake ecosystem
  • Regulation and stability maintenance method for shallow lake ecosystem
  • Regulation and stability maintenance method for shallow lake ecosystem

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Embodiment Construction

[0040] In order to understand the technical content of the present invention more clearly, the following examples are given in detail.

[0041] Taking Gehu Lake as an example, the method for regulating and stabilizing the shallow lake ecosystem provided by the present invention will be described in detail below.

[0042] Step (1), ecosystem structure and function assessment technology:

[0043] For lakes with unbalanced nutrients, use the ecopath model to obtain the key parameters of each functional group in the lake ecosystem, and understand the distribution of different trophic levels, the strength of each trophic level, and the different functional groups in the lake ecosystem. Biomass size, analysis and assessment of the types and effects of imbalance factors that exist.

[0044] details as follows:

[0045] Gehu Ecosystem Ecopath Model in 2010

[0046] Function group settings

[0047] Table 1 Names of functional groups and their species in the Gehu Lake ecosystem

[00...

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Abstract

The invention relates to a regulation and stability maintenance method for a shallow lake ecosystem. The method comprises the following steps: (1) evaluation technology for the structure and the function of an ecological system: using an ecopath model to obtain key parameters of each functional group in the ecological system of a lake, to learn about different nutrition level distribution, function intensity of each nutrition level and biomass sizes of different functional groups in the lake ecological system, and to analyze and evaluate imbalance factors; (2) multi-nutrient-level biological manipulation technology: (2-1) combined effect of multiple organisms; and (2-2) ecological restoration evaluation; (3) vegetation recovery and wetland reconstruction technology in a shallow water area;(4) repeating the steps (1), (2) and (3); and (5) water quality-water quantity combined regulation: detecting the rainfall of an area where the lake is located, monitoring the reservoir capacity replacement of the lake, acquiring water area characteristics, nutrition imbalance conditions and aquatic organism community function group composition according to a hydrodynamic model, and periodicallydetecting and verifying the physicochemical indexes of a water body.

Description

technical field [0001] The invention relates to the technical field of shallow lake ecosystems, and more specifically, to a method for regulating and stabilizing the shallow lake ecosystem. Background technique [0002] The regulation of lake ecosystems includes the regulation of lake water conservancy (hydrology, hydrodynamics, etc.), physical and chemical environmental factors (nitrogen, phosphorus input, dissolved oxygen in water, etc.), and the regulation of ecosystem food web structures (biodiversity, fish, various Aquatic organisms, etc.), regulation of functions (material cycle, energy flow path), and comprehensive regulation of different combinations or all of these factors. The stable maintenance technology of the lake ecosystem refers to the various inputs and outputs (such as water volume, nutrients, etc.) The structure is more perfect, and the hydrological process, hydrodynamic process, and changes of physical and chemical factors of the water body are coordinat...

Claims

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Application Information

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IPC IPC(8): C02F3/32C02F101/30
CPCC02F3/327C02F2101/30C02F2103/007C02F2209/02C02F2209/06C02F2209/11C02F2209/22
Inventor 胡忠军王亚坤刘其根孔优佳花少鹏
Owner SHANGHAI OCEAN UNIV
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