SU211918A1 - Method for increasing nitrogen content in medium used for plant cultivation in the form assimilated by plants - Google Patents

Method for increasing nitrogen content in medium used for plant cultivation in the form assimilated by plants Download PDF

Info

Publication number
SU211918A1
SU211918A1 SU651015897A SU1015897A SU211918A1 SU 211918 A1 SU211918 A1 SU 211918A1 SU 651015897 A SU651015897 A SU 651015897A SU 1015897 A SU1015897 A SU 1015897A SU 211918 A1 SU211918 A1 SU 211918A1
Authority
SU
USSR - Soviet Union
Prior art keywords
medium
plants
nitrogen
nitrogen content
medium used
Prior art date
Application number
SU651015897A
Other languages
Russian (ru)
Inventor
Л.А. Юткин
Л.И. Гольцова
Original Assignee
Yutkin L A
Goltsova L I
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Yutkin L A, Goltsova L I filed Critical Yutkin L A
Priority to SU651015897A priority Critical patent/SU211918A1/en
Application granted granted Critical
Publication of SU211918A1 publication Critical patent/SU211918A1/en

Links

Landscapes

  • Micro-Organisms Or Cultivation Processes Thereof (AREA)

Description

(54) СПОСОБ ПОВЫШЕНИЯ СОДЕРЖАНИЯ В СРЕЩ ИСПОЛЬЗУЕМОЙ ДЛЯ ВЫРАЩИВАНИЯ РАСТЕНИЙ, АЗОТА В УСВОЯЕМОЙ РАСТЕНИЯМИ ФОРМЕ Изобретение относитс  к способам улучшени  питательных свойств почв и субстратов за счет повьплени . содержани  в них азота в усво емой растени ми форме. Известен способ перевода азота почвы и воздуха в растворимые соединени  путем эпектрогидравпического воздействи  на почву. С целью резкого увеличени  концентрашш высвобожденного из среды и возду ха азота по предложенному способу после электрогидравлической обработки сред ее засевают штаммами нитрифицирующих и аммонифицирующих бактерий. Обнаружено, что электрогидравлически обработанный субстрат, в котором вс  или почти вс  бактериальна  флора подверглась уничтожению при внесении В не го перераба тываюишх св занный азот нитрифицирующих и аммонифинирукших бактерий-становитс  объектом очень быстрого их размножени  благодар  унич тожению преп тствующих их размножению вредных организмов. Злектрогидравлическую обработку среды и последующий засев среды штаммами бактерий производ т многократно, причем каждый раз тогда, когда крива  роста числа бактерий переходит на пологий участок . Обработку можно производить до тех пор, пока не наступит прекращение роста концентрации высвобожденного азоте . вследствие насыщени  им субстрата. Подбором режима обработки или вве- дением в субстрат каких-либо защитных компонентов, например белков, можно либо сохранить нужные нитрифицирующие и аммонифицирующие виды бактерий, либо замедлить скорость их уничтожени  по сравнению с другими. В этом случае засев штаммами бактерий обработанной среды или уменьшают, или совершенно не производ т, так как резкое взрывообразвое размножение бактерий происходит за счет уцелевших. 21191 Формула вз а 6 р ё т е в и   1. Способ повышеви  содержавн  в среде, вспользуемой дл  вырашвванн  растеввй, азота в усво емой растенв мв i форме путем алектрс гвдравлической обработки среды, отлвчаюшвЙс  тем, что, с целью резкого увелвчеви  ковшвтрадив высвобождеввого вз среды и 1М93духа азота, после алектрс гидравличес- (О 8 кой обработкв среды производ т засев ее штаммами витрифвпврук цвх и аммоввфидируюошх бактерий. 2. Способ по п. 1, отличаюш и и с   тем, что алектрогвдравлическую обработку среды и последук ций засев штаммами бактерий производ т миогократ но до прекрашеви  роста коваеитрадии . высвобождеииого азота.(54) METHOD FOR INCREASING CONTENT IN CUTTING USED TO GROW PLANTS, NITROGEN IN A FORMED PLANTS FORM The invention relates to methods for improving the nutritional properties of soils and substrates by increasing them. their nitrogen content in a form that is absorbed by plants. There is a known method of converting soil nitrogen and air into soluble compounds by means of an electro-hydraulic impact on the soil. In order to sharply increase the concentration of nitrogen released from the medium and air by the proposed method, after electrohydraulic treatment of the media, it is seeded with strains of nitrifying and ammonifying bacteria. It has been found that an electrohydraulically treated substrate, in which all or almost all bacterial flora was destroyed by introducing Into reprocessing associated nitrogen nitrifying and ammoniating bacteria, becomes an object of their very rapid reproduction due to the destruction of harmful organisms that prevent their reproduction. Electro-hydraulic processing of the medium and subsequent seeding of the medium with bacterial strains is carried out many times, each time when the growth curve for the number of bacteria moves to a flat area. The treatment can be carried out until the concentration of the released nitrogen stops growing. due to saturation of the substrate. By selecting a treatment mode or introducing into the substrate any protective components, for example, proteins, one can either save the necessary nitrifying and ammonifying species of bacteria, or slow down the rate of their destruction compared to others. In this case, the seeding with bacteria strains of the treated medium is either reduced or not produced at all, since the sharp explosion-forming multiplication of bacteria occurs at the expense of the survivors. 21191 The formula is taken to be 6 times one and one. The method is upgraded in the medium used for growing plant nitrogen in assimilable plant in the form i by hydraulic processing of the medium in order to drastically increase the processing medium, in order to get a sharp increase in the growth rate, it was created in order to drastically increase the weight of the material, in order to get a sharp increase in the output amount, in order to get a sharp increase in the output amount, in order to get a sharp increase in the output amount, in order to get a sharp increase in the output amount, it was created with the aim of dramatically increasing the quality of the environment, in order to drastically increase the processing environment, so that it could be used for the purpose of dramatically increasing the processing environment, so that it would be used for the purpose of dramatically increasing the processing environment, so that it would be used for the purpose of dramatically increasing the processing environment, so that it would be used for the purpose of dramatically increasing the processing environment, so that it would be used for the purpose of dramatically increasing the processing environment, so that it would be used for the purpose of dramatically increasing the growth rate of the environment. environment and 1M93 of the spirit of nitrogen, after aleksprav hydraulic- (About 8 which treatment of the medium is carried out by seeding it with vitrified vitamins and ammonia and fermentation bacteria. The method according to claim 1, is also distinguished by the fact that electro-hydraulic processing of the medium and subsequent seeding with bacteria strains P Produce myocrete, but until the growth of kovaiitradii stops, release nitrogen.

Claims (2)

1. Способ повышения содержания в среде, используемой для выращивания •211918 я1. A way to increase the content in the environment used for growing • 211918 i растений, азота в усвояемой растениями форме путем електрогидравлической обработки среды, отличающийся тем, что, с целью резкого увеличения конпвнтрации высвобожденного из' среды и воздуха азота, после электрогидравличес- <0 кой'обработки среды производят засев ее штаммами нитрифицирующих и аммонифицирующих бактерий.plants, nitrogen in a form assimilated by plants by means of electrohydraulic treatment of the medium, characterized in that, in order to sharply increase the impregnation of nitrogen released from the medium and air, after electrohydraulic processing of the medium, it is inoculated with strains of nitrifying and ammonifying bacteria. $ 2. Способ по π. 1, отличающийся тем, что влектрогидравлическую обработку среды и последующий засев штаммами бактерий производят многократно до прекращения роста концентрации . высвобожденного азота.$ 2. The method of π. 1, characterized in that the electrohydraulic treatment of the medium and subsequent inoculation with bacterial strains is performed repeatedly until the concentration growth stops. released nitrogen.
SU651015897A 1965-07-02 1965-07-02 Method for increasing nitrogen content in medium used for plant cultivation in the form assimilated by plants SU211918A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU651015897A SU211918A1 (en) 1965-07-02 1965-07-02 Method for increasing nitrogen content in medium used for plant cultivation in the form assimilated by plants

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU651015897A SU211918A1 (en) 1965-07-02 1965-07-02 Method for increasing nitrogen content in medium used for plant cultivation in the form assimilated by plants

Publications (1)

Publication Number Publication Date
SU211918A1 true SU211918A1 (en) 1983-01-07

Family

ID=20438647

Family Applications (1)

Application Number Title Priority Date Filing Date
SU651015897A SU211918A1 (en) 1965-07-02 1965-07-02 Method for increasing nitrogen content in medium used for plant cultivation in the form assimilated by plants

Country Status (1)

Country Link
SU (1) SU211918A1 (en)

Similar Documents

Publication Publication Date Title
Ross et al. The significance of thermophilic fungi in mushroom compost preparation
FR2296370A1 (en) PLANT CULTIVATION PROCESS
ATE112442T1 (en) ADMINISTRATION OF BENEFICIAL MICROORGANISMS TO SEEDS AND PLANTS.
MY103073A (en) Method for regulating plant growth
Smith et al. Evaluation of phosphobacterin as a soil inoculant
KR850004184A (en) How to grow lilies
SU211918A1 (en) Method for increasing nitrogen content in medium used for plant cultivation in the form assimilated by plants
ES488534A0 (en) PROCEDURE FOR THE PRODUCTION OF VETIC-ARBUSCULAR MICORRIZAL FUNGI
Gardner et al. Effect of microorganisms on the formation and activity of proteoid roots of Lupinus albus L
ES2074088T3 (en) BIOLOGICAL CONTROL OF THE PUTREFACTION OF THE CORN SEED AND THE RUST OF THE PLANTS.
DE69506253D1 (en) USE OF COMPOUNDS THAT INHIBIT THE BIOSYNTHESIS OF ETHYLENE IN HIGHER PLANTS FOR GROUND IMPROVEMENT
Beckjord et al. Effects of nitrogen fertilization on growth and ectomycorrhizal formation of red oak
ATE58453T1 (en) METHODS OF CULTURE OF WATER HYACINTHS, PLANTS OBTAINED AND THEIR USES.
GB1417194A (en) Method and apparatus for anaerobic fermentation
JPS5540723A (en) Soil activator and its preparation
DE58901124D1 (en) METHOD FOR INFLUENCING THE GROWTH OF POT PLANTS.
GB1194281A (en) Turf.
Birch et al. Toxicity to seedlings of nitrite in sterilized composts
Minotti et al. High cesium uptake in wheat seedlings cultured with ammonium
Carman A non-destructive stain technique for investigating root growth dynamics
KR970032364A (en) How to grow mushrooms
Noyes et al. Root variations induced by carbon dioxide gas additions to soil
FR2122644A5 (en) Cellular plant/nutrient soln culture medium - for growth of house plants in transparent vessels
Fisher Effects of nitrogen supply in nutrient culture on fruit yield in the first truss of the tomato
Lane et al. Studies on Fomes annosus and the infection of pine seedlings