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303results about How to "Meet growth" patented technology

Method for afforesting wall surfaces and side slopes with climbing-vine curtain wall

InactiveCN101779562AMeet growthMeet the actual needs of coverageWallsExcavationsGrowth plantEngineering
The invention discloses a method for afforesting wall surfaces and side slopes with climbing-vine curtain wall, which comprises the following steps: (1) seed selection of plants: the plants having the climbing and hanging growth properties are selected; (2) planting containers are set: the planting containers are established according to the real situation and construction requirement of the slope surface; (3) filling of planting soil: the cured and finely-broken farming soil is filled; (4) supporting net racks are established and woven; (5) planting of plants: the plants having the climbing and hanging growth properties are planted with the traditional method; (6) later-period management: watering and fertilizer application are immediately carried out; (7) prevention of injurious insects: pesticide and germicide are sprayed. The method has the following advantages that the curtain wall supporting net racks are added, so the growth of the plant vines which climb upwards can be ensured to stay at a mighty state; the nutrition supply is required to be coordinated with the plant growth; the nature of the plants is satisfied through the order coordination and scientific guidance; the later-period management of the plant is fine; and the perennation permanent-green woody Leguminosae is used, so the afforesting coverage rate is improved, the source of the plants is vast, the choice is multiple, and the construction technical method is simple and convenient.
Owner:贵州黔达喀斯特生态科技有限公司

Environment-friendly organic plant cultivation device

ActiveCN103270907AShorten the plant growth cyclePlanting is easy and convenientClimate change adaptationGreenhouse cultivationPlant cultivationControl system
The invention discloses an environment-friendly organic plant cultivation device in the technical field of organic plant cultivation systems. The environment-friendly organic plant cultivation device comprises growing box bodies which can be freely combined and detached. A plant growing tray, a temperature control device, a humidity control device, a plant growing light and a water/nourishment irrigation device are arranged inside each growing box body. Plants can be cultivated not limited by natural conditions, and a procedure is set according to plant growing characteristics to enable the device to intelligently manage the plants. A positioning device is arranged in the environment-friendly organic plant cultivation device, and planting conditions of families which live in the same community or live nearby and possess the same device can be displayed on a community network and known through an IP address/a WLAN/a GNSS/wireless cloud technology. Users can pick up the planted plants at any time, the conditions of the devices possessed by other users in a neighboring community can be checked through the environment-friendly organic plant cultivation device, and the users can exchange and communicate with one another. According to the environment-friendly organic plant cultivation device, sunlight or indoor and outdoor light can be directly converted into electric energy, power is provided for the plant growing light and a control system, and part of organic parts can be planted completely without the external power supply.
Owner:RCG OPTOELECTRONICS

Deep scarification high pressure blowing-in controllable fertilizer distributor

The invention relates to a deep scarification high pressure blowing-in controllable fertilizer distributor, which comprises a traction apparatus, an air compression device, a deep scarification device and a material dispatching device; wherein the traction apparatus moves by power; the air compression device comprises a compressed air collecting vat fixed on the traction apparatus, a compressed air conduit fixedly connected with the compressed air collecting vat, an air compressor fixed on a ration axis and an air compressor cooling roller; the air compressor is connected with the compressed air collecting vat by the conduit; the deep scarification device is fixedly connected with the material dispatching device, comprises a deep scarification pillar and a pellet component fixedly connected with one end thereof; the material dispatching device comprises a material box fixedly connected on a raiser and a material pipe fixedly connected with the material box; the material pipe is arranged on the side of the deep scarification pillar and is fixedly connected with the compressed air conduit on the pipe wall thereof. The deep scarification high pressure blowing-in controllable fertilizer can realize the mechanization operation of the soil subsoil application, has high working performance, good quality, can control fertilizing amount, increases the effective rate of utilization of the fertilizer, does not pollute environment and has good environmental protection effect.
Owner:YANTAI UNIV

Silicon compound coated slow release fertilizer and preparation method thereof

The invention relates to a natural silicon compound coated slow release fertilizer. The slow release fertilizer is prepared by adopting a natural silicon compound as a wrapper, adopting a disc granulation and fluidized bed method, bonding the wrapper to the surfaces of core fertilizer particles through a binder, and enclosing via spraying the external surface with molten wax. The silicon compound comprising Chinese medical stone, natural sands, silica sand and the like contains the silicon element essential to plants, has a density and a good strength, is wrapped on the fertilizer surface to form a compact coat layer, and the compact coat layer is enclosed by strongly lyophobic wax layer, so the slow release performance of a fertilizer is substantially enhanced. After the fertilizer is applied, nutrients are gradually released, natural wax can be completely degraded, and nutrient silicon can also be released by the silicon compound to meet the need of plants, so the secondary pollution problem of routine resin coated fertilizers is overcome. The slow release fertilizer has the advantages of good slow release performance, high hardness, good wear resistance, low cost and environmental protection, and can be widely applied to various plants comprising crops, vegetables, fruits, flowers and lawns.
Owner:INST OF PROCESS ENG CHINESE ACAD OF SCI

Production method for high-density pure arbuscular mycorrhizal fungal spore

The invention discloses a production method for high-density pure arbuscular mycorrhizal fungal spore, which belongs to the technical field of microorganism culturing, and comprises the following technical steps of: 1) culturing carrot root tissues converted from agrobacterium rhizogenes plasmid DNA; 2) culturing the carrot root tissues converted from agrobacterium rhizogenes plasmid DNA and glomus intraradices together in an improved synthetic culture medium; 3) taking a culture containing the root, hypha and spore infected by the arbuscular mycorrhizal fungus and transplanting the culture to a special culture box for culturing; 4) collecting the spore and mycelium; and 5) storing the arbuscular mycorrhizal fungal spore. Compared with the prior art, the production method for high-density pure arbuscular mycorrhizal fungal spore has the advantages that: 1, the culture medium is an asepsis environment with low cost, which not only can meet the growing of a host plant, but also is suitable for the growing of AM epiphyte; 2, the nutrition requirements for the growing of the host plant are low and the host plant can grow and be cultured on the synthetic culture medium; 3, the spore cultured by the method is a non-pollution pure culture; and 4, the produced spore is stored in liquids and the activity can be maintained by above 90 percent.
Owner:ZHEJIANG NORMAL UNIVERSITY

Rice and loach mixing planting and breeding method capable of stabilizing grain income and increasing fishery income

InactiveCN106386583APrevent soil compactionPromotes development and tilleringFood processingClimate change adaptationDitchRidge
The invention discloses a rice and loach mixing planting and breeding method capable of stabilizing the grain income and increasing the fishery income. The method includes the steps: selecting a rice field, digging temporary breeding ditches, circular ditches and filed ditches, and allowing communication among the ditches; paving plastic thin films and mud on the bottom of the temporary breeding ditches, arranging a sunshade net over the temporary breeding ditches; increasing the height and the width of ridges, reinforcing the ridges, and additionally arranging escape-proof facilities; transplanting rice seedlings in the first ten days of June, injecting water, and then stacking fermented decomposed chicken manure; disinfecting the rice field after the rice turns green, stocking disinfected young loaches; feeding the loaches with baits twice every day, wherein the feeding amount is 2-3% of the total body weight of the loaches; keeping the water depth of a field surface in 13-20 cm, and keeping the water depths of the circular ditches and the temporary breeding ditches in 40-65 cm; changing water once every 10-15 days in midsummer, wherein the water changing amount is 25-33% of the water amount of the rice field; adding quicklime or bleaching powder to water once every half a month; and catching the loaches to be sold, and harvesting the rice.
Owner:陈冬林

Method for deep biological denitrification and removal of COD of leachate

ActiveCN104276727ASolve the problem of total nitrogen concentration exceeding the standardLow costFatty/oily/floating substances removal devicesTransportation and packagingChemical treatmentRetention time
The invention relates to a method for deep biological denitrification and removal of COD of leachate. The method comprises the following steps: performing denitrification on the leachate by taking kitchen waste hydrolysis acidification liquid as an external carbon source to control the concentration of total nitrogen and the concentration of COD in outlet water, wherein the hydrolysis acidification liquid is specifically obtained by screening and deoiling kitchen wastes and performing anaerobic fermentation on the kitchen wastes in an anaerobic fermentation tank; putting the leachate of a waste landfill site after physical and chemical treatment, biochemical treatment and Fenton oxidation treatment in an SBR anoxic reaction tank, reducing the concentration of COD to below 100mg/L, and controlling the concentration of total nitrogen at 150-300mg/L; feeding the kitchen waste hydrolysis acidification liquid to control the ratio of COD in the acidification liquid to total nitrogen in the leachate at 5-8, uniformly mixing, and then performing denitrification; and finally performing sequencing batch treatment by using an SBR process, and controlling the reaction retention time at 6-12h. The concentration of total nitrogen in the leachate sewage after treatment according to the method provided by the invention is lower than 40mg/L, the concentration of COD is lower than 100mg/L, and the leachate achieves a national emission standard.
Owner:TSINGHUA UNIV

Method for continuously cropping and ecologically breeding macrobrachium nipponensis and hydrilla verticillata

The invention discloses a method for continuously cropping and ecologically breeding macrobrachium nipponensis and hydrilla verticillata. The method is used for breeding the macrobrachium nipponensis by means of continuously cropping the macrobrachium nipponensis and the hydrilla verticillata. The method has the advantages that eutrophic substances and harmful substances such as residual feed and feces in ponds can be converted by the hydrilla verticillata owing to a technical mode for ecologically and continuously cropping the macrobrachium nipponensis and the hydrilla verticillata, and a characteristic of strongly inhibiting generation of some algae of the hydrilla verticillata is sufficiently utilized, so that purposes of purifying breeding water and ecologically breeding the macrobrachium nipponensis can be achieved; breeding byproducts such as ammonia nitrogen and nitrite in bottom sediments of the ponds can be consumed by means of planting the hydrilla verticillata, effects of purifying the bottom sediments and maintaining excellent ecological environments of the ponds can be realized, the macrobrachium nipponensis is in the suitable ecological environments of the ponds in total breeding procedures, suitable habitat environments and palatable green feed are provided for growth of the macrobrachium nipponensis by the hydrilla verticillata, the bred macrobrachium nipponensis is high in yield and good in quality, and the price of the macrobrachium nipponensis can be increased; spores and grass seeds of the hydrilla verticillata can be offered for sale, so that an extra economical benefit can be created.
Owner:LIYANG AQUATIC PROD TECH PROMOTION STATION

Planting method of improving sweetness and increasing yield of Meizhen sweet corns

The invention relates to a planting method of improving the sweetness and increasing the yield of Meizhen sweet corns. The planting method comprises the following steps: land selection, seed selection and treatment, land preparation, ridge forming, basal dressing, seeding, field management, harvesting and the like. By adopting the planting method of improving the sweetness and increasing the yield of the Meizhen sweet corns, in the planting process, aiming at the characteristics of high growth of the Meizhen sweet corns, a proper proportion of a fertilizer can be selected to meet the nutrition required by growth of the sweet corns, and proper seedlings are controlled to be beneficial to promoting growth of the sweet corns; by adopting tillering removal and reasonable topdressing to ensure normal tasseling silking, the sweet ear diameter can be increased, and the sweetness of the sweet corns is improved; and the yield can be increased through pest control so as to meet the market needs, and industrial development of the sweet corn planting industry is promoted. The planting method can effectively improve the sweetness and increase the yield of Meizhen sweet corns, can be popularized and promoted as a standard Meizhen sweet corn planting method and has a profound significance.
Owner:贵州学君电子信息商贸有限公司

Dispenser

The invention relates a dispenser comprises: an outer container (300), an internal vessel (200) for storing contents and inserted inside the outer container (300), and a pumping part (100) combined in an upper part of the internal vessel (200) and for discharging the contents in the internal vessel (200);
  • the internal vessel is composed with a material capable of the contraction and expansion; a plurality of wrinkles (210) are formed through a blow injection manner; and the connecting rod (220) for coupling with the pumping part (100), an elastic steel band (420) formed in the outer circumference of the internal vessel (200), and a plurality of an elastic steel pieces (421) formed by cutting out a part of the steel band (420) to stand are formed onto the upper part of the internal vessel, respectively;
  • the elastic steel piece (421) is gradually risen as the contents within the internal vessel (200) is gradually discharged, as maintaining a state where an end part reaches in contact with each other with an inner surface of the outer container (300);
  • the contents is discharged (or exhausted) by the compressed air (301) by filling between the outer container (300) and the internal vessel (200).
The dispenser further comprises a compression rubber band (410) in an outer circumference of the internal vessel (200).
The dispenser further includes an elastic steel band (420) in an outer circumference of the internal vessel (200) and a plurality of elastic steel pieces (421) in which a part of the steel band (420) is cut out cut to stand, so that the elastic steel piece (421) is gradually risen as maintaining a state where an end part reaches in contact with each other with the inner surface of the outer container (300) according as the contents within the internal vessel (200) is gradually discharged.
The invention is an environment friendly product which can discharge the contents with the compressed air filled between the internal vessel and the external container.
And, the invention achieves environment-friendly products to solve the above problems and most ideal products to meet the green growth project of the government, while the products, which very much comes out in the market, mixed the freon gas with the liquid gas causes harmful influence for the human body and regarded as the main cause of the greenhouse gas.
Owner:JUNG HAE RYONG

Method for producing biological medicament fertilizer product through solid state fermentation of biological residue

The invention relates to the technical field of biological pesticides, in particular to a method for producing a biological medicament fertilizer product through solid state fermentation of biological residue. The method comprises the following steps of: 1) pretreating the biological residue; 2) performing solid state fermentation, namely inoculating bacillus thuringiensis seed liquor into a sterile culture material for solid state fermentation, wherein temperature-changing fermentation that the initial fermentation temperature is reduced by 2-5DEG C is adopted in the 8 to 11 hours of fermentation; and 3) adding chitosan oligosaccharide powder to obtain the biological medicament fertilizer product. The method has the advantages of low cost, simple process, low equipment investment, environment-friendly production process and the like; moreover, in the method, the chitosan oligosaccharide powder is added into a fermentation product, and the obtained biological medicament fertilizer has effects of killing insects in a broad spectrum and inhibiting viruses, has the functions of regulating plant metabolism and promoting plant growth, has the fertilizer efficiency integrating effect, and combines a biological pesticide and a biological fertilizer.
Owner:INST OF PROCESS ENG CHINESE ACAD OF SCI
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