JP2004217496A - Method of manufacturing fermented liquid for accelerating growth of cultivated plant - Google Patents
Method of manufacturing fermented liquid for accelerating growth of cultivated plant Download PDFInfo
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- JP2004217496A JP2004217496A JP2003040403A JP2003040403A JP2004217496A JP 2004217496 A JP2004217496 A JP 2004217496A JP 2003040403 A JP2003040403 A JP 2003040403A JP 2003040403 A JP2003040403 A JP 2003040403A JP 2004217496 A JP2004217496 A JP 2004217496A
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02W—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
- Y02W30/00—Technologies for solid waste management
- Y02W30/40—Bio-organic fraction processing; Production of fertilisers from the organic fraction of waste or refuse
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Abstract
Description
【0001】
【発明の属する技術分野】
この発明は、植物の葉や茎や種子に棲息する微生物を醗酵させ、その醗酵液を植物の葉に葉面散布し、葉の光合成能力を向上させることにより、植物の成長促進をより早く、大きく成長させる技術である。又植物の根の栄養物となる醗酵液の製造方法に関するものである。製造に際して栽培対象植物別に利用する植物の種類を変えることに特色がある。
【0002】
【従来の技術】
植物の成長促進を目的とする液体で、微生物を生きたまま葉面散布する醗酵液は製造されていない。
しかも栽培対象植物別に植物を選別して材料とする方法は従来方式には見当たらない。栽培対象植物の同じ植物種の葉と茎と種子を栄養的な材料とする方法は用いられていない。
植物の葉の光合成能力を高める為に、葉と茎と種子に棲息する微生物の醗酵液を用いることは従来は行われていない。さらに成長の早い大きく育つ植物の葉の微生物醗酵液を葉面散布して、植物の成長を促進させる方式は用いられていない。
醗酵方法は太陽光線を採り入れて行う醗酵方式で、しかも密閉状態で醗酵させる方式で、従来にない方式である。化学薬品としての植物成長促進剤とは異なる内容成分である。
【0003】
【発明が解決しようとする課題】
植物の葉は光合成により、栄養分を生産して成長する。植物の葉の光合成能力を向上させてやれば、それだけ植物の成長が早くなる。
植物の葉には、その種の植物の成長に必要な微生物が棲息しており、トマトにはトマトの成長に必要な、キュウリにはキュウリの成長に必要な各々の微生物が棲息している。
トマトの葉に棲息する微生物を本方式の醗酵方法により製造し、その醗酵液を薄めてトマトの葉に葉面散布するとトマトの成長は約倍に大きく育つ。これはトマトの葉が光合成能力がそれだけ高くなった為であり、光合成能力を高めているのは葉に棲息している微生物(好気性菌)が原因している。さらに成長の早い植物の(蒲やコロボックルフキ、メタセコイアやジャイアントケルプ等)の葉の微生物の醗酵液を栽培植物の葉や茎に葉面散布すると、植物の成長や実の嫡果を高め、促進させる働きがある。この方法によって化学薬品の成長促進剤を使用する必要がなくなる。
植物を育てる土壌には微生物が多く棲息するとそれだけ成長が早い。成長の早い自然の植物の葉や茎の微生物の醗酵液を土壌に散布すると植物の成長が促進される。
微生物を醗酵で増やす製造方法として、太陽の光を通す白いポリタンクを用い、植物の葉と茎と種子を微生物を殺さない様にミンチして水で醗酵させる製造方式とする。30℃の温度があれば3〜4日で完熟醗酵する。醗酵コストも非常に安価で済む。
【0004】
【課題を解決する為の手段】
本醗酵液は微生物の取り出し方が簡単であり、植物の葉や茎や種子を微生物を殺さないようにして醗酵させる。ミキサーの歯車を回転させて砕くと微生物を殺傷する為に石臼のように手作業でミンチすることにより微生物を生きたまま活用出来るようにする。
葉に棲息するのは主として好気性菌であり、太陽光があって始めて活動することから、醗酵タンクは白のポリタンクで光を通すものを利用する。タンクを密閉して醗酵する為に、醗酵によりガスが発生し、タンク内圧力高くなる。その為醗酵速度が速くなる。
植物の葉と栽培する土壌に、生きた微生物を与えると植物成長が2倍〜3倍の大きさとなる。
【0005】
【発明の実施形態】
上記のように製造された本発明の醗酵液は、植物の葉の成長促進液は自然水で50倍に薄めて植物の葉に葉面散布する。
土壌用の醗酵液は50〜500倍に薄めて土壌散布する。濃度を濃くすると野菜類の栽培なら1回の散布で済む。
【0006】
【実施例】
実施例について図面を参照して説明すると、図1は本発明の内容物を示した斜視図であり、容器10の内部に栽培する植物と同じ種の植物の葉と茎と種をミンチ状にした物を70%、成長の早い自然の植物(蒲の穂や葉等)をミンチ状にした物を30%をブレンドして容器に入れる。ブレンドしたミンチ状の植物の量の30%の黒砂糖を容器に入れ、水を容器の75%ぐらいまで注ぐ。容器をよくブレンドして、30℃位の保温を行い、室内に置く。容器の蓋を密閉する。朝夕蓋を開け、内部のガス抜きを行う。3〜4日間で醗酵は終了する。
容器のポリタンクは太陽光を通す物を使用する。又室内の比較的明るい場所にタンクを静置する。これにより植物は光合成することが出来る。[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention ferments microorganisms that inhabit the leaves, stems and seeds of a plant, sprays the fermented solution onto the leaves of the plant to improve the photosynthetic ability of the leaves, thereby accelerating the growth of the plant faster. This is a technology that can greatly grow. The present invention also relates to a method for producing a fermentation broth serving as a nutrient for plant roots. There is a feature in changing the type of plant used for each cultivation target plant during production.
[0002]
[Prior art]
A fermentation liquid which is a liquid intended to promote plant growth and which is capable of spraying microorganisms alive on leaves is not manufactured.
Moreover, a method of selecting plants for each plant to be grown and using them as materials has not been found in conventional methods. No method has been used in which leaves, stems and seeds of the same plant species of the plant to be grown are used as nutritional materials.
In order to enhance the photosynthetic ability of a plant leaf, the use of a fermented liquid of a microorganism that inhabits the leaf, stem and seed has not been performed so far. Further, no method has been used in which the fermentation liquid of microorganisms of the leaves of a rapidly growing large plant is sprayed on the foliage to promote the growth of the plant.
The fermentation method is a fermentation method in which sunlight is introduced and fermentation is performed in a closed state, which is an unconventional method. It is a different ingredient from plant growth promoters as chemicals.
[0003]
[Problems to be solved by the invention]
Plant leaves grow by producing nutrients through photosynthesis. Improving the photosynthetic capacity of the leaves of the plant will result in faster plant growth.
Plant leaves inhabit microorganisms necessary for the growth of such plants, tomatoes inhabit microorganisms required for tomato growth, and cucumber inhabits microorganisms required for cucumber growth.
Microorganisms that inhabit tomato leaves are produced by the fermentation method of the present method, and the fermented solution is diluted and sprayed onto the tomato leaves to grow the tomato approximately twice as large. This is because the photosynthetic ability of tomato leaves has increased correspondingly, and the fact that the photosynthetic ability is enhanced is caused by microorganisms (aerobic bacteria) living in the leaves. Spreading fermentation solution of microorganisms of leaves of fast-growing plants (such as turtles, corobokkurufuki, metasequoia, giant kelp, etc.) onto the leaves and stems of cultivated plants will enhance and promote plant growth and fruitfulness. There is a function to make it. This method eliminates the need to use chemical growth promoters.
The more microorganisms inhabit the soil where plants grow, the faster they grow. Spreading a fermentation solution of microorganisms of the leaves and stems of a fast-growing natural plant on the soil promotes plant growth.
As a production method for increasing microorganisms by fermentation, a method is used in which a leaf, stem and seeds of a plant are minced so as not to kill the microorganisms and fermented with water using a white plastic tank that allows sunlight to pass through. If there is a temperature of 30 ° C., fermentation is completed in 3 to 4 days. Fermentation costs are very low.
[0004]
[Means for solving the problem]
This fermentation liquid is easy to remove microorganisms, and leaves, stems and seeds of a plant are fermented without killing the microorganisms. By rotating the mixer gear and crushing it, the microorganisms are killed by hand and minced by hand like a stone mill to enable the microorganisms to be used alive.
Fermentation tanks use white plastic tanks that transmit light because the leaves are mainly aerobic bacteria that are active only in the presence of sunlight. Since fermentation is performed with the tank closed, gas is generated by fermentation and the pressure inside the tank increases. Therefore, the fermentation speed increases.
When living microorganisms are given to the leaves of the plant and the soil to be cultivated, the growth of the plant becomes two to three times as large.
[0005]
DETAILED DESCRIPTION OF THE INVENTION
In the fermented solution of the present invention produced as described above, the solution for promoting the growth of plant leaves is diluted 50 times with natural water and sprayed onto the leaves of the plant.
The fermentation solution for soil is diluted 50 to 500 times and sprayed on the soil. When the concentration is increased, vegetable cultivation requires only one application.
[0006]
【Example】
FIG. 1 is a perspective view showing the contents of the present invention, in which leaves, stems and seeds of the same kind of plants as those cultivated inside a container 10 are minced. 70% of the resulting material, and 30% of minced natural plants (such as ears and leaves) of fast growing plants are blended and placed in a container. Place 30% of the brown sugar in the blended minced plant in the container and pour water to about 75% of the container. Blend the container well, keep the temperature around 30 ° C, and put it indoors. Close container lid. Open the lid in the morning and evening and vent the gas inside. Fermentation is completed in 3-4 days.
Use a plastic tank that allows sunlight to pass through. Keep the tank still in a relatively bright place indoors. This allows plants to photosynthesize.
Claims (1)
葉に散布する醗酵液には栽培対象とする植物の葉、茎又は種子を材料に用いる。土壌散布する醗酵液には成長の早い植物の葉、茎又は種子を用いる。
醗酵液の製造方法は太陽光線を通すポリタンクを用いて、水中に於いて、好気性菌醗酵を行う、30℃の温度があれば3〜4日で醗酵が完了する。この醗酵方式で嫌気性菌も醗酵する。A method of producing a fermentation solution that is sprayed on the leaves of the plant with a liquid that promotes plant growth and a method of producing a fermentation solution that is sprayed on the soil.
The leaves, stems or seeds of the plant to be cultivated are used for the fermentation solution sprayed on the leaves. The leaves, stems or seeds of fast growing plants are used for the fermentation solution to be sprayed on the soil.
The method for producing the fermentation solution is to conduct aerobic fermentation in water using a polytank that allows sunlight to pass therethrough. If there is a temperature of 30 ° C., the fermentation is completed in 3 to 4 days. Anaerobic bacteria are also fermented by this fermentation method.
Priority Applications (1)
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JP2003040403A JP2004217496A (en) | 2003-01-14 | 2003-01-14 | Method of manufacturing fermented liquid for accelerating growth of cultivated plant |
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JP2003040403A JP2004217496A (en) | 2003-01-14 | 2003-01-14 | Method of manufacturing fermented liquid for accelerating growth of cultivated plant |
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JP2004217496A true JP2004217496A (en) | 2004-08-05 |
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JP2003040403A Pending JP2004217496A (en) | 2003-01-14 | 2003-01-14 | Method of manufacturing fermented liquid for accelerating growth of cultivated plant |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101948175A (en) * | 2010-09-15 | 2011-01-19 | 崔勇 | Automatic modular anaerobic and aerobic fermentation device |
JP2011168532A (en) * | 2010-02-18 | 2011-09-01 | Anise Kk | Composition for cultivating plant comprising plant sprout-fermented liquid and bacillus subtilis, and method for cultivating plant |
JP2019097538A (en) * | 2017-12-08 | 2019-06-24 | 株式会社F・E・C | Production method of biological growth material |
KR20210101613A (en) * | 2020-02-10 | 2021-08-19 | 박성호 | Method for cultivating Cucurbita moschata with increased functionality using fermented Prunus mume and Cucurbita moschata mixture |
-
2003
- 2003-01-14 JP JP2003040403A patent/JP2004217496A/en active Pending
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2011168532A (en) * | 2010-02-18 | 2011-09-01 | Anise Kk | Composition for cultivating plant comprising plant sprout-fermented liquid and bacillus subtilis, and method for cultivating plant |
CN101948175A (en) * | 2010-09-15 | 2011-01-19 | 崔勇 | Automatic modular anaerobic and aerobic fermentation device |
JP2019097538A (en) * | 2017-12-08 | 2019-06-24 | 株式会社F・E・C | Production method of biological growth material |
KR20210101613A (en) * | 2020-02-10 | 2021-08-19 | 박성호 | Method for cultivating Cucurbita moschata with increased functionality using fermented Prunus mume and Cucurbita moschata mixture |
KR102335590B1 (en) * | 2020-02-10 | 2021-12-03 | 박성호 | Method for cultivating Cucurbita moschata with increased functionality using fermented Prunus mume and Cucurbita moschata mixture |
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