Pollution-free sterilizing and weeding compound fertilizer of plants
A compound fertilizer and plant technology, applied in fertilization devices, fertilizer mixtures, applications, etc., can solve the problems of not killing plant pests, not suitable for industrial production, and unsatisfactory effects, so as to achieve good weeding effect and little impact , significant effect
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Embodiment 1
[0013] Example 1: Preparation of pollution-free bactericidal and weeding compound fertilizer
[0014] Air-dry, sun-dry or dry at 40-60° C. and pulverize the respective traditional Chinese medicine components. It is prepared from the following raw materials in parts by weight: 1-15 parts of Daphne chamaejasma, 5-10 parts of hops, 25-30 parts of Chinese prickly ash, 25-30 parts of ginkgo seed coat, snake 26-30 parts of Scutellaria chinensis, 17-30 parts of neem bark, 16-25 parts of Shijunzi, 1-15 parts of Galla chinensis, 5-15 parts of hair holly, 5-10 parts of matrine, 55-60 parts of Sapindus exotesta 35-45 parts of ammonium bicarbonate, 20-30 parts of diammonium phosphate, 5-10 parts of potassium chloride, 1-2 parts of zinc sulfate, 1-2 parts of boric acid, 5-10 parts of manganese sulfate, 25- 30 parts, calcium stone powder 5-10 parts, bentonite 20-25 parts, thiourea 5-15 parts, diatomite 10-20 parts, phosphate rock powder 10-20 parts, sodium humate 5-15 parts, proline 10-2...
Embodiment 2
[0017] Example 2: Antibacterial test effect of pollution-free bactericidal and weeding compound fertilizer
[0018] The bactericidal and weeding fertilizer that the embodiment of the present invention makes prevents and treats rice sheath blight, cucumber downy mildew, pear black heart disease field efficacy test:
[0019] There are 3 treatments in each test, 4 repetitions, each plot area is 10m2, and the test design is carried out according to a completely random design, wherein A: clear water blank control; B: compound carbendazim 800 times dilution positive control; C: this A 300-fold dilution of the botanical pesticide of the invention. The drug was administered 4 times with an interval of 7 days.
[0020] Survey content and data processing: 30 samples were randomly selected in each plot, surveyed before drug application and 7 days after the fourth irrigation, and the number of diseased plants was recorded. Yield survey was carried out when harvesting, and each plot was ...
Embodiment 3
[0024] Embodiment 3: the control weed test effect of bactericidal herbicide formulation
[0025] Field efficacy test of bactericidal and weeding pesticides prepared in Example 1 of the present invention to control ragweed, creeping bentgrass, bluegrass and bermudagrass:
[0026] There are 3 treatments in each test, 4 repetitions, each plot area is 10m2, and the test design is carried out according to a completely random design, wherein A: clear water blank control; B: compound carbendazim 800 times dilution positive control; C: this A 300-fold dilution of the botanical pesticide of the invention. The drug was administered 4 times with an interval of 7 days.
[0027] Survey content and data processing: 30 samples were randomly selected in each plot, surveyed before drug application and 7 days after the fourth irrigation, and the number of diseased plants was recorded. Yield survey was carried out when harvesting, and each plot was collected individually and weighed separately...
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