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Micro-fluidic chip phytoncide bottle inflation method based on semiconductor desorption

A microfluidic chip and phytoncine technology, applied in the field of phytoncide handling, can solve the problems of single component of adsorbed gas, low phytoncide concentration, long adsorption work time, etc., and achieve high-efficiency automation benefits and reasonable benefits. , the effect of improving forest repair performance

Pending Publication Date: 2022-01-04
南京康博智慧健康研究院有限公司
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Problems solved by technology

[0004] At the same time, the adsorption time of the ordinary adsorption column in the prior art is long, the concentration of the adsorbed phytoncine is low and the composition of the adsorbed gas is single

Method used

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  • Micro-fluidic chip phytoncide bottle inflation method based on semiconductor desorption
  • Micro-fluidic chip phytoncide bottle inflation method based on semiconductor desorption
  • Micro-fluidic chip phytoncide bottle inflation method based on semiconductor desorption

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Embodiment 1

[0039] This specific embodiment is based on the semiconductor desorption microfluidic chip Fenduo fine bottle inflation method, and its method flow chart is as follows figure 1 As shown, the schematic diagram of its three-dimensional adsorption and inflation structure is shown in figure 2 As shown, the schematic diagram of its adsorption and inflatable side view structure is shown in image 3 As shown, the schematic diagram of its adsorption and inflation top view structure is shown in Figure 4 As shown, the schematic diagram of the internal structure of the adsorption gas is shown in Figure 5 As shown, this microfluidic chip based on semiconductor desorption Fenduo fine bottle inflation method comprises the following steps:

[0040] Step 1. Place the phytoncine inflator in the forest, and process the phytoncine in the forest through the phytoncine adsorption stick in the phytoncine inflator. Before the adsorption and aeration starts, the internal The desorption structure ...

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Abstract

The invention provides a micro-fluidic chip phytoncide bottle inflation method based on semiconductor desorption. The micro-fluidic chip phytoncide bottle inflation method comprises the following steps: 1, adsorption and inflation treatment is carried out on phytoncide in a forest through a phytoncide adsorption rod in a phytoncide inflation device; 2, whether the at least two inflation parameters meet desorption termination conditions or not is judged; 3, clustering processing is carried out on the at least two inflation parameters through hypervariance clustering desorption, and fitness values of the at least two target inflation parameters are calculated; and 4, air molecules make contact with the phytoncide adsorption rod through air circulation, and adsorption inflation is carried out. The electric eel swarm algorithm is used as the guide, inflation adsorption and discharge desorption are subjected to positioning and timing optimization, the advantages of bidirectional multi-component desorption are combined, the semiconductor desorption period is utilized, the biological information stimulation capability is matched with the negative oxygen ion distribution state information, and the operation involves a discharge ion disturbance method to optimize a plane function and improve carbon dioxide supply so as to repair forest performance.

Description

technical field [0001] The invention relates to the technical field of phytoncine handling, in particular to a microfluidic chip phytoncine bottle inflation method based on semiconductor desorption. Background technique [0002] Phytondoline is an aromatic hydrocarbon. Phytondoline is flooded in the forest. The handling of phytondoline can make people stay at home and enjoy the phytondoline bath at home. [0003] When the traditional adsorption column is used, it needs to collect gas at a fixed time and a fixed place. The coordination and processing during work requires the cooperation of the staff in real time. At the same time, a mass production scale containing various components has not been formed. The main reason is that the adsorption material It is a passive work, lacking active equipment to concentrate liquefied gas, and there are many parameters that need to optimize the gas composition. [0004] At the same time, the ordinary adsorption column in the prior art ha...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F17C11/00F17C13/00B01D53/04G06F30/20
CPCF17C11/007F17C13/00B01D53/04G06F30/20F17C2221/032F17C2270/07
Inventor 左志强黄骏
Owner 南京康博智慧健康研究院有限公司
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