Forestry carbon sequestration algorithm for forest land environment data
A technology of environmental data and forest land, applied in complex mathematical operations, data processing applications, calculations, etc., can solve the problems of reducing the practicality and efficiency of forestry carbon sequestration algorithms, and the complexity and differences of forestry carbon sequestration algorithms, so as to ensure accuracy and Scientific, to ensure the efficiency of foreign exchange calculation, to ensure the effect of accuracy
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Embodiment 1
[0033] Embodiment one: a forestry carbon sequestration algorithm for forest land environmental data, comprising the following working steps:
[0034] Step 1: Obtain the carbon pool of the forest land, which consists of aboveground biomass, belowground biomass, litter, dead wood and soil organic carbon and wood production;
[0035] The aboveground biomass in the carbon pool is the total amount of biomass expressed in dry weight above the surface of the forest land soil layer. The aboveground biomass includes tree trunks, tree stumps, branches, bark, tree seeds and leaves, and the underground biomass is the living biomass of the forest land. root biomass, litter including litter and humus, and live fine roots smaller than a certain diameter that cannot be empirically distinguished from belowground biomass;
[0036] The second step: determine the assumed value;
[0037] Step 3: Determine the carbon storage change value and non-carbon dioxide emission value;
[0038] Step 4: Det...
Embodiment 2
[0056] Embodiment 2: A forestry carbon sequestration algorithm for forest land environmental data, comprising the following working steps:
[0057] Step 1: Obtain the carbon pool of the forest land, which consists of aboveground biomass, belowground biomass, litter, dead wood and soil organic carbon and wood production;
[0058] The second step: determine the assumed value;
[0059] Step 3: Determine the carbon storage change value and non-carbon dioxide emission value;
[0060] Step 4: Determine the biomass and dead organic matter values;
[0061] Step 5: Determine the soil organic matter value.
[0062] The formula for obtaining the carbon pool in the first step is as follows:
[0063]
[0064] The soil organic carbon in the first step refers to all the organic carbon contained in the mineral soil and organic soil within a certain depth of the forest land, and the soil organic carbon also includes living particles smaller than a certain diameter that cannot be empirica...
Embodiment 3
[0078] Embodiment three: a forestry carbon sequestration algorithm for forest land environmental data, comprising the following working steps:
[0079] Step 1: Obtain the carbon pool of the forest land, which consists of aboveground biomass, belowground biomass, litter, dead wood and soil organic carbon and wood production;
[0080] The aboveground biomass in the carbon pool is the total amount of biomass expressed in dry weight above the surface of the forest land soil layer. The aboveground biomass includes tree trunks, tree stumps, branches, bark, tree seeds and leaves, and the underground biomass is the living biomass of the forest land. root biomass, litter including litter and humus, and live fine roots smaller than a certain diameter that cannot be empirically distinguished from belowground biomass;
[0081] The second step: determine the assumed value;
[0082] Step 3: Determine the carbon storage change value and non-carbon dioxide emission value;
[0083] Step 4: D...
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