AU2021106329A4 - Flower bud differentiation promoter for crops - Google Patents

Flower bud differentiation promoter for crops Download PDF

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Publication number
AU2021106329A4
AU2021106329A4 AU2021106329A AU2021106329A AU2021106329A4 AU 2021106329 A4 AU2021106329 A4 AU 2021106329A4 AU 2021106329 A AU2021106329 A AU 2021106329A AU 2021106329 A AU2021106329 A AU 2021106329A AU 2021106329 A4 AU2021106329 A4 AU 2021106329A4
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AU
Australia
Prior art keywords
solution
water
borax
sulfate
urea
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
AU2021106329A
Inventor
Zhiyong Hu
Jun Li
Xiaolu Xiao
Liu Yang
Chunlei Zhang
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Oil Crops Research Institute of Chinese Academy of Agriculture Sciences
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Oil Crops Research Institute of Chinese Academy of Agriculture Sciences
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Priority to AU2021106329A priority Critical patent/AU2021106329A4/en
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    • CCHEMISTRY; METALLURGY
    • C05FERTILISERS; MANUFACTURE THEREOF
    • C05BPHOSPHATIC FERTILISERS
    • C05B1/00Superphosphates, i.e. fertilisers produced by reacting rock or bone phosphates with sulfuric or phosphoric acid in such amounts and concentrations as to yield solid products directly
    • C05B1/02Superphosphates
    • CCHEMISTRY; METALLURGY
    • C05FERTILISERS; MANUFACTURE THEREOF
    • C05GMIXTURES OF FERTILISERS COVERED INDIVIDUALLY BY DIFFERENT SUBCLASSES OF CLASS C05; MIXTURES OF ONE OR MORE FERTILISERS WITH MATERIALS NOT HAVING A SPECIFIC FERTILISING ACTIVITY, e.g. PESTICIDES, SOIL-CONDITIONERS, WETTING AGENTS; FERTILISERS CHARACTERISED BY THEIR FORM
    • C05G5/00Fertilisers characterised by their form
    • C05G5/20Liquid fertilisers
    • C05G5/23Solutions

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  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Pest Control & Pesticides (AREA)
  • Fertilizers (AREA)

Abstract

The invention relates to a crop flower-bud differentiation promoter, which consists of urea, zinc sulfate, borax, calcium superphosphate, ferrous sulfate, potassium sulfate, rice vinegar and water, the mixture ratio is: 5-20% of urea, 5-15% of zinc sulfate, 20-30% of borax, 5-10% of calcium superphosphate, 5-15% of ferrous sulfate, 10-15% of potassium sulfate, 0.5-1% of rice vinegar and a proper amount of water .After adopting the above structure, the invention has the following advantages: foliar fertilization by mixed medicaments can timely supplement the nutrition needed by crops, effectively prevent premature senescence of crops, inhibit diseases and increase yield; foliar fertilization is fast in absorption, can make up for the deficiency of slow effect of soil fertilization, relieve the element deficiency disease of crops in time, use less fertilizer, improve fertilizer efficiency, and is safe and pollution-free. 1

Description

DESCRIPTION Flower bud differentiation promoter for crops
TECHNICAL FIELD
The invention relates to the technical field of plant production medicaments, in
particular to a crop flower-bud differentiation promoter.
BACKGROUND
Plant growth regulation refers to regulating and controlling the growth of crops.
Different nutrients (fertilizers and trace elements, etc.) and different plant growth
hormones are given in different plant growth cycles. Through regulation and control,
plant growth develops in the direction needed by people, such as promoting rooting,
growing leaves, promoting branching, promoting flowering and fruiting, and
promoting rhizome enlargement, or vice versa. In short, plant growth meets the desire
of increasing production, income, quality and taste.
People generally use soil fertilization, but the poor effect of soil fertilization,
slow absorption, too wet soil, or lack of water and drought, and imbalance of soil pH,
etc., will affect the growth and development of crops.
SUMMARY
The technical problem to be solved by the invention is to solve the problems that
the growth and development of crops will be affected due to poor fertilization effect,
slow absorption, excessive soil moisture, water shortage and drought, imbalance of
soil pH value, etc., and the paired regulator is adopted to fertilize the foliage of plants,
thus providing a crop flower-bud differentiation promoter.
To solve the above technical problems, the technical scheme provided by the
present invention is as follows:
A crop flower-bud differentiation promoter is characterized in that it consists of
urea, zinc sulfate, borax, calcium superphosphate, ferrous sulfate, potassium sulfate,
DESCRIPTION rice vinegar and water, the mixture ratio is: 5-20% of urea, 5-15% of zinc sulfate, 20
% of borax, 5-10% of calcium superphosphate, 5-15% of ferrous sulfate, 10-15%
of potassium sulfate, 0.5-1% of rice vinegar and a proper amount of water.The
method is as follows:
(!adding 10 kg of urea into 10 kg of water to dissolve into urea solution;
@dissolving 5 kg of zinc sulfate and 20 kg of water into a zinc sulfate solution,
and adding 10 kg of lime solution into the zinc sulfate solution;
@dissolving 10 kg of borax into borax solution with 15 kg of hot water, and
adding 10kg of water;
@ adding 5 kg of calcium superphosphate into 10 kg of water, fully stirring,
standing for 12 h, filtering, and taking supernatant;
@ adding 5 kg of ferrous sulfate and 5 kg of potassium sulfate into 10 kg of
water respectively, and then fully stirring and mixing to form ferrous sulfate solution
and potassium sulfate solution;
@ urea solution, zinc sulfate solution, borax solution, ferrous sulfate solution
and potassium sulfate solution are mixed and stirred to form "A" solution, which is
diluted with water according to the ratio of 1:10;
( mixing the above liquid with 10kg of rice vinegar, fully stirring, and mixing
with the supernatant of calcium phosphate to form "B" solution;
@ Stirring and mixing the "A" solution and the "B" solution, and diluting them
with water according to the ratio of 1:40.
With the above structure, the invention has the following advantages: the foliar
fertilization can supplement the nutrition needed by crops in time, which can
effectively prevent premature senescence of crops, inhibit diseases and increase yield.
DESCRIPTION The foliar fertilization can absorb quickly, make up for the deficiency of slow effect
of soil fertilization, relieve the element deficiency disease of crops in time, use less
fertilizer, improve fertilizer efficiency, and is safe and pollution-free.
As an improvement, the content of biuret in urea should not exceed 1%, and
more than 1% of urea is harmful to crops and cannot be sprayed on leaves.
As an improvement, 5kg of ferrous sulfate was mixed and diluted with water for
many times, and the fluidity of ferrous sulfate was poor, which could make the mixing
more thorough.
As an improvement, 10 kg of borax is dissolved into borax solution with 15 kg of
-50°Chot water, which can quickly mix and dissolve borax. Borax can prevent food
spoilage, improve the ductility and brittleness of food, and has the functions of
clearing away heat and toxic materials, reducing swelling, resisting bacteria and
preserving corrosion.
DESCRIPTION OF THE INVENTION
The present invention will be further described in detail with reference to the
accompanying drawings.
A crop flower-bud differentiation promoter is characterized in that it consists of
urea, zinc sulfate, borax, calcium superphosphate, ferrous sulfate, potassium sulfate,
rice vinegar and water, the mixture ratio is: 5-20% of urea, 5-15% of zinc sulfate, 20
% of borax, 5-10% of calcium superphosphate, 5-15% of ferrous sulfate, 10-15%
of potassium sulfate, 0.5-1% of rice vinegar and a proper amount of water.The
method is as follows:
(!adding 10 kg of urea into 10 kg of water to dissolve into urea solution;
@dissolving 5 kg of zinc sulfate and 20 kg of water into a zinc sulfate solution,
and adding 10 kg of lime solution into the zinc sulfate solution;
DESCRIPTION @dissolving 10 kg of borax into borax solution with 15 kg of hot water, and
adding 10kg of water;
@ adding 5 kg of calcium superphosphate into 10 kg of water, fully stirring,
standing for 12 h, filtering, and taking supernatant;
@ adding 5 kg of ferrous sulfate and 5 kg of potassium sulfate into 10 kg of
water respectively, and then fully stirring and mixing to form ferrous sulfate solution
and potassium sulfate solution;
@ urea solution, zinc sulfate solution, borax solution, ferrous sulfate solution
and potassium sulfate solution are mixed and stirred to form "A" solution, which is
diluted with water according to the ratio of 1:10;
( mixing the above liquid with 10 kg of rice vinegar, fully stirring, and mixing
with the supernatant of calcium phosphate to form "B" solution;
@ Stirring and mixing the "A" solution and the "B" solution, and diluting them
with water according to the ratio of 1:40.
The content of biuret in urea shall not exceed 1%.
5 kg of ferrous sulfate is mixed and diluted with water for many times. In the
specific implementation of this patent, 5 kg of ferrous sulfate is mixed with water by
stirring for 5 times.
10 kg of borax is dissolved into borax solution with 15 kg of 40-50°C hot water.
In the specific implementation of this patent, corn flour or mung bean powder can be
used instead of borax.
Implementation case 1:
(!adding 5 kg of urea into 10 kg of water to dissolve into urea solution;
DESCRIPTION @dissolving 3 kg of zinc sulfate and 15 kg of water into a zinc sulfate solution,
and adding 10 kg of lime solution into the zinc sulfate solution;
@dissolving 5 kg of borax into borax solution with 15 kg of hot water, and
adding 10kg of water;
@ adding 5 kg of calcium superphosphate into 15 kg of water, fully stirring,
standing for 12 h, filtering, and taking supernatant;
@ adding 5 kg of ferrous sulfate and 5 kg of potassium sulfate into 15 kg of
water respectively, and then fully stirring and mixing to form ferrous sulfate solution
and potassium sulfate solution;
@ urea solution, zinc sulfate solution, borax solution, ferrous sulfate solution
and potassium sulfate solution are mixed and stirred to form "A" solution, which is
diluted with water according to the ratio of 1:10;
( mixing the above liquid with 5kg of rice vinegar, fully stirring, and mixing
with the supernatant of calcium phosphate to form "B" solution;
@ Stirring and mixing the "A" solution and the "B" solution, and diluting them
with water according to the ratio of 1:40.
Implementation case 2:
(!adding 10 kg of urea into 20 kg of water to dissolve into urea solution;
@dissolving 8 kg of zinc sulfate and 25 kg of water into a zinc sulfate solution,
and adding 10 kg of lime solution into the zinc sulfate solution;
@dissolving 8 kg of borax into borax solution with 15 kg of hot water, and
adding 15kg of water;
@ adding 10 kg of calcium superphosphate into 20 kg of water, fully stirring,
standing for 12 h, filtering, and taking supernatant;
DESCRIPTION @adding 7 kg of ferrous sulfate and 7 kg of potassium sulfate into 20 kg of
water respectively, and then fully stirring and mixing to form ferrous sulfate solution
and potassium sulfate solution;
@ urea solution, zinc sulfate solution, borax solution, ferrous sulfate solution
and potassium sulfate solution are mixed and stirred to form "A" solution, which is
diluted with water according to the ratio of 1:10;
( mixing the above liquid with 8kg of rice vinegar, fully stirring, and mixing
with the supernatant of calcium phosphate to form "B" solution;
@ Stirring and mixing the "A" solution and the "B" solution, and diluting them
with water according to the ratio of 1:40.
According to the actual situation, people are prepared according to the method,
and the urea solution can be prepared as needed. In the specific implementation of the
patent, 0.5-2.0 kg of urea is needed per mu, and the spraying concentration on the leaf
surface is low, which is economical (spraying once or twice for leafy vegetables and
once for solanaceous fruits every 10 days, the dosage is one fifth of the soil
application), which is beneficial to the absorption of crops. By mixing the "A"
solution and the "B" solution,then diluted with water according to the proportion, and
then spray the mixed liquid on the leaves of plants by pulling pesticide sprayer to
make the plants absorb the mixed liquid.
The present invention and its embodiments have been described above, and this
description is not restrictive. The drawings are only one of the embodiments of the
present invention, and the actual structure is not limited to this. To sum up, if the
ordinary technicians in this field are inspired by it, without departing from the creative
purpose of the present invention, the structure and embodiments similar to the
DESCRIPTION technical scheme are designed creatively, which should belong to the protection scope
of the present invention.

Claims (1)

  1. CLAIMS 1. A crop flower-bud differentiation promoter is characterized in that it consists
    of urea, zinc sulfate, borax, calcium superphosphate, ferrous sulfate, potassium sulfate,
    rice vinegar and water, the mixture ratio is: 5-20% of urea, 5-15% of zinc sulfate, 20
    % of borax, 5-10% of calcium superphosphate, 5-15% of ferrous sulfate, 10-15%
    of potassium sulfate, 0.5-1% of rice vinegar and a proper amount of water.The
    method is as follows:
    (!adding 10 kg of urea into 10 kg of water to dissolve into urea solution;
    @dissolving 5 kg of zinc sulfate and 20 kg of water into a zinc sulfate solution,
    and adding 10 kg of lime solution into the zinc sulfate solution;
    @dissolving 10 kg of borax into borax solution with 15 kg of hot water, and
    adding 10kg of water;
    @ adding 5 kg of calcium superphosphate into 10 kg of water, fully stirring,
    standing for 12 h, filtering, and taking supernatant;
    @ adding 5 kg of ferrous sulfate and 5 kg of potassium sulfate into 10 kg of
    water respectively, and then fully stirring and mixing to form ferrous sulfate solution
    and potassium sulfate solution;
    @ urea solution, zinc sulfate solution, borax solution, ferrous sulfate solution
    and potassium sulfate solution are mixed and stirred to form "A" solution, which is
    diluted with water according to the ratio of 1:10;
    ( mixing the above liquid with 10kg of rice vinegar, fully stirring, and mixing
    with the supernatant of calcium phosphate to form "B" solution;
    @ Stirring and mixing the "A" solution and the "B" solution, and diluting them
    with water according to the ratio of 1:40.
    CLAIMS 2. A crop flower-bud differentiation promoter according to claim 1 is
    characterized in that the content of biuret in urea should not exceed 1%.
    3. A crop flower-bud differentiation promoter according to claim 1 is
    characterized in that 5 kg of ferrous sulfate is mixed and diluted with water in several
    times.
    4. A crop flower-bud differentiation promoter according to claim 1 is
    characterized in that 10kg of borax is dissolved into borax solution with 15 kg of hot
    water at 40-50°C.
AU2021106329A 2021-08-21 2021-08-21 Flower bud differentiation promoter for crops Ceased AU2021106329A4 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU2021106329A AU2021106329A4 (en) 2021-08-21 2021-08-21 Flower bud differentiation promoter for crops

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
AU2021106329A AU2021106329A4 (en) 2021-08-21 2021-08-21 Flower bud differentiation promoter for crops

Publications (1)

Publication Number Publication Date
AU2021106329A4 true AU2021106329A4 (en) 2021-11-04

Family

ID=78488396

Family Applications (1)

Application Number Title Priority Date Filing Date
AU2021106329A Ceased AU2021106329A4 (en) 2021-08-21 2021-08-21 Flower bud differentiation promoter for crops

Country Status (1)

Country Link
AU (1) AU2021106329A4 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115968727A (en) * 2023-02-08 2023-04-18 上海市农业科学院 Method for improving yield and quality of eggplant seed production

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115968727A (en) * 2023-02-08 2023-04-18 上海市农业科学院 Method for improving yield and quality of eggplant seed production

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