Preparation method of pharmaceutical composition used for beetles
A composition and technology of beetles, applied in the direction of botany equipment and methods, applications, insecticides, etc., can solve the problems of easy occurrence of drug-resistant pests in the insecticidal effect, differences in pest resistance and drug resistance, and achieve the goal of not being easily resistant Medicinal properties, no environmental toxicity, small effect
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Embodiment 1
[0023] This embodiment provides a pharmaceutical composition for killing beetles, including extracts of babubu extract, tripterygium twig extract, aloe extract, cinnamon extract, thousand hammer extract, saponin thorn extract, magnolia extract, gourd Tea Extract, Polygonum Polygonum Extract, and Thiamethoxam in the following quantities:
[0024]
[0025]
[0026] Its preparation method: add water to decoct babu, tripterygium wilfordii, and aloe twice, each time for 2 hours, combine the decoction, add ethanol to filter and concentrate, add 3 times the amount of water, fully stir, refrigerate for 48 hours, filter, and the filtrate is decompressed Concentrate to a relative density of about 1.8, and prepare the liquid medicine for later use; cinnamon, thousand hammers, saponins, magnolia, gourd tea, and spicy Polygonum, add water and decoct twice, each time for 1 hour, combine the decoctions, filter, and concentrate the filtrate. Let it cool, add ethanol to make the ethanol ...
Embodiment 2
[0029] This example verifies the killing rate of the pharmaceutical composition on beetles compared with common insecticides on the market.
[0030] Select the common insecticides on the market: P. lilacinus water agent, nematicide, special root thread agent, and thiamethoxam insecticide.
[0031] Group according to different insecticides, each group prepares 300 beetles each in three stages of eggs, larvae and adults, and then uses insecticides on the beetles in each stage respectively, and tests the killing effect of each group of insecticides. kill rate, as shown in the table below:
[0032] Table 1 The killing effect of insecticides on beetles
[0033]
[0034] It can be seen from the above table that each group of insecticides has the highest killing rate on the beetles in the larval state, and this product has the best insecticidal effect, and the killing effect is remarkable, even the eggs that are most difficult to kill are also good.
Embodiment 3
[0036] This example verifies the killing rate of the pharmaceutical composition on various pests.
[0037] Select 3000 beetles, wheat round spiders, leafhoppers, borer worms, pear psyllids, scale insects, spinach moths, mole crickets, burdock, and red spiders, and group them separately, and use the medicine prepared in Example 1 to make the same concentration of The liquid medicine is sprayed on the pests of each group respectively, and after 1 hour, the killing rate of various pests is checked, and the results are shown in the following table:
[0038] Table 2 The killing effect of the drug on various pests
[0039] group
[0040] As can be seen from the above table, the medicine prepared in Example 1 only has a good killing effect on beetles, and has a very limited killing effect on other pests. This proves that this product is highly targeted and can only be used for for the extermination of the Beatles.
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