Clonostachys rosea-bacillus subtilis composite wettable powder

A technology of Bacillus subtilis and wettable powder, applied in the field of microorganisms, can solve the problems such as the reduction of sustainable soil production capacity and fertilizer utilization rate, frequent occurrence of soil-borne diseases and continuous cropping obstacles, and destruction of cultivated land quality. The effect of prevention and control, the effect of prolonging the shelf life

Active Publication Date: 2017-01-11
北京启高生物科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Due to the long-term use of chemical fertilizers, chemical pesticides, and high-intensity multiple cropping and continuous cropping farming methods, there have been problems such as increased resistance to diseases and insect pests, reduced soil sustainable production capacity and fertilizer use efficiency, and damage to the quality of cultivated land. Insufficient organic matter, soil compaction, decline in fertility, frequent occurrence of soil-borne diseases and continuous cropping obstacles, and increasingly serious problems in the quality and safety of agricultural products have restricted the development of my country's agriculture.

Method used

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  • Clonostachys rosea-bacillus subtilis composite wettable powder
  • Clonostachys rosea-bacillus subtilis composite wettable powder

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0018] Step 1. Add 100 parts of Gliocladium fungus spore powder with a concentration of 1 billion cfu / gram, 50 parts of Bacillus subtilis bacterial spore powder with a concentration of 30 billion cfu / gram and 815 parts of diatomaceous earth into the mixer in turn, and mix After 0.5 to 1 hour, add 10 parts of sodium dodecylbenzenesulfonate, 10 parts of sodium lignosulfonate, 10 parts of sodium carboxymethylcellulose, and 5 parts of ascorbic acid in sequence, and mix for 0.5 to 1 hour to obtain a uniform mixture;

[0019] Step 2. Transfer the mixture from the previous step to a low-temperature jet mill, control the pulverization temperature below 20° C., and pass through a 300-mesh sieve after pulverization to obtain a wettable powder with good dispersibility and suspension.

[0020] Suspension rate is measured according to 4.1 in the determination method of pesticide suspension rate GB / T 14825-2006, the wetting time is measured according to GB / T 5451-2001 in the determination me...

Embodiment 2

[0022] Step 1. Add 50 parts of Gliocladium fungus spore powder with a concentration of 1 billion cfu / gram, 50 parts of Bacillus subtilis bacterial spore powder with a concentration of 30 billion cfu / gram and 835 parts of diatomaceous earth into the mixer in turn, and mix After 0.5 to 1 hour, add 15 parts of sodium dodecylbenzenesulfonate, 15 parts of sodium lignosulfonate, 25 parts of sodium carboxymethylcellulose, and 10 parts of ascorbic acid in sequence, and mix for 0.5 to 1 hour to obtain a uniform mixture;

[0023] Step 2. Transfer the mixture from the previous step to a low-temperature jet mill, control the pulverization temperature below 20° C., and pass through a 300-mesh sieve after pulverization to obtain a wettable powder with good dispersibility and suspension.

[0024] Suspension rate is measured according to 4.1 in the determination method of pesticide suspension rate GB / T 14825-2006, the wetting time is measured according to GB / T 5451-2001 in the determination me...

Embodiment 3

[0026] Step 1. Add 100 parts of Gliocladium fungus spore powder with a concentration of 500 million cfu / gram, 100 parts of Bacillus subtilis bacterial spore powder with a concentration of 20 billion cfu / gram and 815 parts of diatomaceous earth into the mixer in turn, and mix After 0.5 to 1 hour, add 20 parts by weight of sodium dodecylbenzenesulfonate, 20 parts by weight of sodium lignosulfonate, 50 parts by weight of sodium carboxymethylcellulose, and 10 parts by weight of ascorbic acid, and mix for 0.5 to 1 hour to obtain a homogeneous mixture;

[0027] Step 2. Transfer the mixture from the previous step to a low-temperature jet mill, control the pulverization temperature below 20° C., and pass through a 300-mesh sieve after pulverization to obtain a wettable powder with good dispersibility and suspension.

[0028] Suspension rate is measured according to 4.1 in the determination method of pesticide suspension rate GB / T 14825-2006, the wetting time is measured according to G...

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Abstract

The invention provides clonostachys rosea-bacillus subtilis composite wettable powder containing clonostachys rosea fungus conidial powder for preventing and treating gray mold, sheath blight, root rot, fungal leaf spot and sclerotinia rot and bacillus subtilis bacterial spore powder for preventing and treating bacterial wilt, soft rot diseases, canker, bacterial spot diseases and bacterial angular leaf spot diseases. The wettable powder comprises, by weight, 50-100 parts of clonostachys rosea fungus conidial powder, 50-100 parts of bacillus subtilis bacterial spore powder, 800-850 parts of diatomite, 10-20 parts of sodium dodecyl benzene sulfonate, 10-50 parts of sodium lignosulfonate, 10-50 parts of carboxymethylcellulose sodium and 5-10 parts of ascorbic acid. The wettable powder composite microbes do not produce antagonistic action, have a wide sterilization spectrum, are safe for crops, users and an environment, improve crop quality and improve a yield and performance stability.

Description

technical field [0001] The invention belongs to the technical field of microorganisms, and in particular relates to a wettable powder compounded with Gliocladium roseum fungal spore powder for preventing and controlling fungal diseases and Bacillus subtilis bacterial spore powder for preventing and controlling bacterial diseases. method. Background technique [0002] Due to the long-term use of chemical fertilizers, chemical pesticides, and high-intensity multiple cropping and continuous cropping farming methods, there have been problems such as increased resistance to diseases and insect pests, reduced soil sustainable production capacity and fertilizer use efficiency, and damage to the quality of cultivated land. Insufficient organic matter, soil compaction, declining fertility, frequent occurrence of soil-borne diseases and continuous cropping obstacles, and increasingly serious problems of agricultural product quality and safety have restricted the development of my count...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01N63/04A01N63/00A01P1/00A01P3/00
CPCA01N63/00A01N63/30A01N2300/00
Inventor 钟增明
Owner 北京启高生物科技有限公司
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