Patents
Literature
Patsnap Copilot is an intelligent assistant for R&D personnel, combined with Patent DNA, to facilitate innovative research.
Patsnap Copilot

1534results about How to "Reduce planting costs" patented technology

Culture base material for cultivating shiitake by using chrysanthemum straws and method for cultivating shiitake by using culture base material

InactiveCN102329171AStrengthen multi-level value-added resourcesIncrease yield efficiencyBio-organic fraction processingOrganic fertiliser preparationBiotechnologyChrysanthemum cinerariifolium
The invention discloses a culture base material for cultivating shiitake by using chrysanthemum straws. Chrysanthemum straw chips which are subjected to fermentation treatment are taken as a raw material, and auxiliary materials which have the effect of adjusting nutrition balance are added. The culture base material comprises the following components in percentage by weight: 77 percent of chrysanthemum straw chips, 15 percent of wheat bran, 5 percent of corn meal and 3 percent of bean cake. The chrysanthemum straw chips are treated by a fermentation treatment method and can be taken as a raw material of a culture medium when snowflake-shaped substances overgrow on the chrysanthemum straw chips. The pH value of the culture base material is kept at 6.5+ / -0.1. The invention also discloses a method for cultivating the shiitake by using the culture base material for cultivating the shiitake by using the chrysanthemum straws. The method comprises the steps of mixing materials, bagging, sterilizing, inoculating, growing mycelia, culturing, performing shiitake fruiting management, harvesting and the like. The problems about the improvement of the nutrient of the culture base material by treating the chrysanthemum straws, high-yield cultivation and management are solved.
Owner:安徽省庆元堂徽菊股份有限公司

High-efficiency imitative wild cultivation method for Tetrastigma hemsleyanum Diels et Gilg

InactiveCN102919013AIncrease productionFast productionClimate change adaptationHorticultureCottus marginatusStellaria alsine
The invention relates to a high-efficiency imitative wild cultivation method for Tetrastigma hemsleyanum Diels et Gilg (stellaria alsine Grimm.), which comprises the following steps of: 1) selecting a fertile land or northward terrace land in a mountain area, clearing weeding in fields, and performing fertilizer application; 2) dividing the land subjected to deep tillage into planting belts, forming irrigation ditches between the planting belts, digging drain ditches and operation ditches at the edges of the planting belts, and laying trickle irrigation equipment; 3) performing grass mulching and film mulching on the planting belts; 4) establishing Tetrastigma hemsleyanum Diels et Gilg germchits; 5) in the second year, when the vines of the Tetrastigma hemsleyanum Diels et Gilg grow to 30-50 centimeters long, guiding the vines of the Tetrastigma hemsleyanum Diels et Gilg onto a trellis, and starting three-dimensional planting; 6) in the second year, erecting a steel-structured greenhouse 1.5 meters beyond the planting belts, and covering a shading mesh on the top; and 7) in the fourth or fifth year, harvesting. According to the invention, the artificial field planting of the Tetrastigma hemsleyanum Diels et Gilg is realized; and the advantages of quick putting into production, high yield of underground tubers and overground leaves and vines for medical use, high profit, low planting cost, simple operation process and the like can be achieved.
Owner:浙江汉邦生物科技有限公司

High-yield cultivation method for sugarcanes

The invention provides a high-yield cultivation method for sugarcanes. The high-yield cultivation method includes directly applying raw materials of green manure into newly excavated sugarcane furrows; allowing the raw materials of the green manure to ferment under film covering closed conditions for 15-25 days; lifting each mulching film to a side of the corresponding sugarcane furrow after the raw materials ferment and become thoroughly decomposed; adding compound fertilizers into the sugarcane furrows; covering soil on the compound fertilizers; planting sugarcane seedlings. The raw materials of the green manure comprise, by weight, 300-500 parts of broken sugarcane leaves, 300-500 parts of silt from fish ponds, 200-300 parts of farmyard manure, 200-300 parts of bran hulls, 100-200 parts of sweet potato residues, 50-100 parts of yeasts and 20-50 parts of lactic acid bacteria. Sugarcane buds are soaked in mixed solution for 18-24h to obtain the sugarcane seedlings, and the mixed solution comprises 6-24 parts of quicklime, 1-1.5 parts of gibberellin missible oil and 800-1200 parts of water. The high-yield cultivation method for the sugarcanes has the advantages of high bud ratio, low fertilizer and pesticide consumption in planting procedures and capabilities of obviously increasing the yield of the sugarcanes and obviously improving the quality of the sugarcanes.
Owner:黄建军

Pinellia ternata planting method

The invention discloses a pinellia ternata planting method. The pinellia ternata planting method comprises the steps as follows: (1) growing a propagation material; (2) cultivating; (3) carrying out field management; and (4) harvesting. A pinellia ternata tuber with a diameter of 0.7-1.0 cm is adopted as a pinellia ternata seed source in the step (1) of growing the propagation material; the step (2) of cultivating comprises the sub-steps of selecting land, unpacking and planting; and planting land with a pH value of 6.0-7.5 is selected in the sub-step of selecting land. According to the pinellia ternata planting method, the pinellia ternata tuber with the diameter of 0.7-1.0 cm is adopted as the pinellia ternata seed source, and the soil with the pH value of 6.0-7.5 is adopted as the planting land for planting and cultivating pinellia ternata, so that the emergence rate of the pinellia ternata can be guaranteed, the soil requirement is low, the cost is reduced, and the yield is increased. According to the statistics, after the pinellia ternata planting method is adopted, the dry weight of the yield per mu (1 mu is 1 / 6 of acre) of the planted pinellia ternata can reach 220-260 kg / mu and is increased by 46.7% relative to that of the yield per mu of the conventional planted pinellia ternata. Therefore, the pinellia ternata planting method is suitable for large-scale planting.
Owner:GUIZHOU XINBANG PHARMACEUTICAL CO LTD

Pollution-free grape planting method

The invention relates to a pollution-free grape planting method, comprising the steps of before field planting of a grape seedling, performing different treatments on soil and a grape seedling root; paving straws on the soil, then scattering quick lime, paulownia saw dust, castor leaf powder, vinasse and other sterilization components, deeply tilling the oil and laminating a film for hard light irradiation, so germs in the soil can be effectively killed, and a well environment is provided for grape growth; dipping the root with mud prepared from nitrogen, phosphorous and potassium compound fertilizer, calcium superphosphate, urea, attapulgite, polyacrylamide, bamboo vinegar and sea mud, and then coating a layer of plant ash, wherein the mud contains the slow-release fertilizers, and water retention, so fertilizing and watering times can be effectively reduced, and the grape planting cost is reduced; after field planting, applying straw powder and vermiculite to the root, thus improving the soil, preventing the loss of the mud coated to the root of the grape and improving the use rate of the fertilizers. The pollution-free grape planting method has the beneficial effect that a safe and environment-friendly prevention and control method is adopted for preventing and controlling diseases and insect pests.
Owner:CHONGQING DIHUANG AGRI DEV

Method for ecologically interplanting sarcandra glabra under phyllostachys edulis forest

The invention relates to a method for ecologically interplanting sarcandra glabra under a phyllostachys edulis forest. The method comprises the steps of: (1) tissue culture and seedling raising: sarcandra glabra blades are selected as explants to conduct adventitious bud induction, an adventitious bud induction culture medium uses an MS (Murashige and Skoog) culture medium as a basic culture medium and additionally comprises 2.0 to 4.0mg/L of TDZ (thidiazuron), 0.1 to 0.2mg/L of NAA (naphthyl acetic acid), 100 to 150g/L of banana puree and 0.5 to 1.0g/L of activated carbon, and then adventitious buds are subjected to enrichment culture and rooting culture; (2) seedling hardening: bottom seedlings are conveyed to under the phyllostachys edulis forest to be hardened; (3) transplantation: tissue culture seedlings are transplanted to a north slope bamboo forest with a number of living stems (NLS) of phyllostachys edulis of 150 to 400 plants/mu or a south slope bamboo forest with an NLS of 200 to 400 plants/mu; (4) forest management: the second intertillage is conducted in June and September every year; and (5) harvest: the sarcandra glabra is harvested in November to December every year. By adopting the method, the culture period of the sarcandra glabra can be shortened and the yield of the sarcandra glabra can be increased.
Owner:浙江慧普农业科技有限公司

Method for rapid propagation and timely flowering of China rose

The invention relates to a method for rapid propagation and timely flowering of China rose, and relates to the technical field of flower planting. The method comprises the following steps: in January and February, scissoring annual stingless wild rose branches, and reserving one or two bud points to be taken as stocks for grafting; selecting annual China rose branches as scions, reserving one or two bud joints, cutting the upper ends of the scions to be flat, cutting the lower ends of the scions to be inclined planes with the angles of 30-45 degrees, wherein the distances between pruning wounds and axillary buds are 1 cm; putting the cut stocks and scions in nutrient solution and soaking for 10-20 minutes, then grafting the soaked stocks with the scions together, tightening grafting ports with plastic films, and then daubing rooting powder on the roots of the stocks and inserting the roots of the stocks in soil; beginning to transplant two months later after the stocks are alive through cottage, irrigating and fertilizing according to a conventional management method 15-20 days later, wherein the China rose can be flowered in May. The method is simple and feasible; compared with a traditional grafting method, the survival rate can reach more than 90%, nursery stocks grow strongly, the China rose can be flowered timely, the planting cost is reduced, and the economic benefit is improved.
Owner:ANHUI BAIHUI GARDEN

Soilless cultivation irrigation circulating control system

Disclosed is a soilless cultivation irrigation circulating control system. The soilless cultivation irrigation circulating control system comprises a mother liquor supply device, an acid liquor supply device, a clear water storage tank device, a return water recovery device, a fertilizer mixing device, a nutrient solution storage tank device, an irrigation control device and a control cabinet. According to the connection relation of the devices, the mother liquor supply device, the fertilizer mixing device, the nutrient solution storage tank device and the irrigation control device are connected in sequence; the fertilizer mixing device is connected with the acid liquor supply device, the clear water storage tank device and the return water recovery device; the nutrient solution storage tank device is connected with the acid liquor supply device; the control cabinet is in wired or wireless connection with the mother liquor supply device, the acid liquor supply device, the clear water storage tank device, the return water recovery device, the fertilizer mixing device, the nutrient solution storage tank device and the irrigation control device. According to the soilless cultivation irrigation circulating control system, the labor cost is saved, the utilization of fertilizer is greatly improved, the purposes of high efficiency and high yield are achieved, and return water seeping after drip irrigation is conducted can be collected, and can be recycled after filtration and disinfection are conducted.
Owner:弥勒品元园艺有限公司
Who we serve
  • R&D Engineer
  • R&D Manager
  • IP Professional
Why Eureka
  • Industry Leading Data Capabilities
  • Powerful AI technology
  • Patent DNA Extraction
Social media
Try Eureka
PatSnap group products