Transformation method for ecological public-welfare forest in western Sichuan area

A public welfare forest and ecological technology, applied in fertilization methods, cultivation, fertilization devices, etc., can solve the problems of easy destruction of understory vegetation, excessive forest stand canopy, water and soil loss, etc., and improve the quality of understory microenvironment , Maximize utilization efficiency and promote the effect of natural recovery

Active Publication Date: 2018-09-18
CHENGDU INST OF BIOLOGY CHINESE ACAD OF S
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] As of 2013, my country is the country with the largest plantation area in the world, with a total area of ​​6.93×107hm. 2 , volume 2.48×109m 3 , the development rate of plantations is 5.7 times the world average level (State Forestry Administration, 2005), most of which are ecological public welfare forests, but this part of plantations were originally designed according to the demand for timber, and later classified as ecological forests due to the division of ecological function zones. Functional protection needs, so the contradiction between supply and demand is prominent
The specific performance is that this kind of initial design density is high, most of the artificial forests are composed of single tree species, the forest hierarchy is simple, the stand canopy is too large, and the environment under the forest is dark and humid. After developing to the middle-aged forest stage, the growth of trees is generally Weakness, small understory vegetation coverage, low species diversity, poor biodiversity, insufficient soil acidification and fertilizer supply capacity, high risk of pests and diseases, low forest productivity, and low carbon sequestration capacity have become typical low-efficiency issues. Ecological public welfare forests, their ecological services and biodiversity protection functions urgently need to be improved and improved through reasonable approaches and methods
However, at this stage, there is obviously a lack of transformation techniques designed for this type of plantation, and traditional thinning methods are mostly used for transformation.
[0003] However, the traditional row or block thinning method has obvious disadvantages: (1) It disturbs the forest land greatly and easily causes secondary disasters, such as soil erosion, etc.
(3) The mechanized operation process is easy to damage the forest soil structure, such as compaction, etc.
(4) Understory vegetation is easily destroyed, and it is difficult to quickly restore surface vegetation
(5) The thinning intensity is high, and it is difficult to quickly restore the productivity of the arbor layer

Method used

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  • Transformation method for ecological public-welfare forest in western Sichuan area
  • Transformation method for ecological public-welfare forest in western Sichuan area
  • Transformation method for ecological public-welfare forest in western Sichuan area

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0060] Example 1: Effect of nutrition bag

[0061] In February, in the test field, 30 birch seedlings with a height of 0.5±0.1m were selected and randomly divided into three groups with 10 plants in each group, which were treatment group, positive control group and blank control group.

[0062] The birch saplings in the treatment group were raised in biodegradable nutritional bags for one month, and then transplanted into the soil with bags attached. Among them, the nutrient bag has built-in nutrient soil, and its mass composition is: volcanic ash compressed base nutrient soil 75%, potassium dihydrogen phosphate 6%, urea 7%, rooting powder 1%, and the balance is water. Dosage: Fill all the space in the bag except the root system.

[0063] The nutrient soil component of the treatment group is the conventional N, P, K compound fertilizer component. For the convenience of operation, the whole text of the present invention uses this component of nutrient soil. In actual applicat...

Embodiment 2

[0071] Embodiment two: the effect of bacillus subtilis preparation

[0072] In March, in the test field, 30 strong seedlings of Sequoia sichuanensis with a height of 0.5±0.1m were selected and randomly divided into three equal groups as the treatment group, the positive control group and the blank control group. Plant by the above-mentioned mode of introducing color-leaved tree species. Among them, the treatment group used yellow mud water pulp roots containing bacterial preparations; the positive control group used the same amount of yellow mud water pulp roots without bacterial preparations, and the blank control group did not receive pulp root treatment, and the rest of the planting methods and conditions were exactly the same. After 3 months, the growth of each group was observed, as shown in Table 2.

[0073] Table 2 Comparison of the growth of saplings in each group

[0074] growing situation

[0075] It can be seen from the above table that the survival rate...

Embodiment 3

[0076] Embodiment Three: Transformation of Spruce Plantation

[0077] (1) Implementation time and place: The technical implementation site is Fengyi Forest Farm (Dagou River Basin) of Maoxian Forestry Bureau. In mid-July, 2007, 30 hectares of low-efficiency spruce plantations were selected. The altitude of the experimental site was 2151m, the slope was 14.3, and the soil The type is mountainous dark brown soil.

[0078] (2) Background parameter investigation: The investigation time was at the end of the growing season in 2007, from September to October. Sampling surveys were carried out on 10% of the target area of ​​low-efficiency spruce plantation transformation, and the tree, shrub, and grass species in the center of the forest gap and the edge of the forest and the above-ground and underground biomass were investigated through the sample survey method; in the center of the forest gap and the control forest A miniature temperature and humidity automatic recorder (I-button ...

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Abstract

The invention belongs to the field of structure transformation of artificial forests, and specifically relates to a transformation method for an ecological public-welfare forest in a western Sichuan area. According to a technical scheme of the invention, the transformation method for the ecological public-welfare forest in the western Sichuan area comprises the steps of intermediate cutting and thinning of small forest gaps, and introduction of broad-leaf species and colored-leaf species. The transformation method provided by the invention has extremely little disturbance to the ecological system of an artificial forest, can reduce competition self-consumption among canopy trees, improves the net productivity of trees, promotes regeneration of a forest, increases the structure complexity of the forest, and promotes natural restoration of under-forest environment, soil diversity constitution and food-web relationship. According to the invention, through highly-efficient utilization of multi-layered stereoscopic environmental resources, the utilization efficiency of photosynthetic carbon in the forest is maximized, and carbon accumulation of the ecological system of the forest is further promoted on the basis of reduction of carbon emission.

Description

technical field [0001] The invention belongs to the field of artificial forest structure transformation, and in particular relates to a method for transforming ecological public welfare forests in western Sichuan. Background technique [0002] As of 2013, my country is the country with the largest plantation area in the world, with a total area of ​​6.93×107hm. 2 , volume 2.48×109m 3 , the development rate of plantations is 5.7 times the world average level (State Forestry Administration, 2005), most of which are ecological public welfare forests, but this part of plantations were originally designed according to the demand for timber, and later classified as ecological forests due to the division of ecological function zones. Functional protection needs, thus causing a prominent contradiction between supply and demand. The specific performance is that this kind of initial design density is high, most of the artificial forests are composed of single tree species, the fores...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01G17/00A01C21/00
CPCA01C21/005A01G17/005
Inventor 庞学勇包维楷杨兵胡斌杨婷惠闫晓丽王喆
Owner CHENGDU INST OF BIOLOGY CHINESE ACAD OF S
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