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Closed cycle agricultural mode construction method combining sugarcane planting and aquatic product three-dimensional breeding

A three-dimensional breeding and closed-cycle technology, applied in agriculture, fish farming, sugarcane cultivation, etc., can solve the problems such as the unseen mature mode of sugarcane and aquaculture, and achieve the effect of improving fish meat quality, increasing output and good economic benefits.

Pending Publication Date: 2021-06-18
GUANGXI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] There is no mature model combining sugarcane and aquaculture in the prior art

Method used

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  • Closed cycle agricultural mode construction method combining sugarcane planting and aquatic product three-dimensional breeding
  • Closed cycle agricultural mode construction method combining sugarcane planting and aquatic product three-dimensional breeding
  • Closed cycle agricultural mode construction method combining sugarcane planting and aquatic product three-dimensional breeding

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0040] A method for preparing charcoal-based slow-release fertilizer, comprising the following steps:

[0041] (1) Take soybean or corn stalks, sugarcane filter mud, sugarcane tail tip and sugarcane leaves, and dry them for later use;

[0042] (2) Crush soybean or corn stalks, sugarcane tails and sugarcane leaves to a particle size of 50 mesh, mix them evenly, and carry out pyrolytic carbonization under nitrogen protection at a carbonization temperature of 450°C for 4 hours to obtain straw biochar;

[0043] (3) Transport the sugarcane filter mud to a carbonization furnace, and carbonize it at a temperature of 400°C for 3.5 hours to obtain filter mud biochar;

[0044] (4) Take 3 parts of diatomite, 1 part of cyclodextrin, and 2 parts of lignin in parts by weight, and add water to prepare a coating solution;

[0045] (5) Take the straw biochar obtained in step (2) and the filter sludge biochar obtained in step (3) and mix evenly, spray the coating solution in step (4) to form a...

Embodiment 2

[0049] A method for preparing charcoal-based slow-release fertilizer, comprising the following steps:

[0050] (1) Take soybean or corn stalks, sugarcane filter mud, sugarcane tail tip and sugarcane leaves, and dry them for later use;

[0051] (2) Crush soybean or corn stalks, sugarcane tails and sugarcane leaves to a particle size of 80 mesh, mix them evenly, and carry out pyrolytic carbonization under the protection of nitrogen at a carbonization temperature of 550°C for 3.5 hours to obtain straw biochar;

[0052] (3) Transport the sugarcane filter sludge to a carbonization furnace, and carbonize it at a temperature of 420°C for 3.5 hours to obtain filter sludge biochar;

[0053] (4) Take 5 parts of diatomite, 2 parts of cyclodextrin, and 2.5 parts of lignin in parts by weight, and add water to prepare a coating solution;

[0054] (5) Take the straw biochar obtained in step (2) and the filter sludge biochar obtained in step (3) and mix evenly, spray the coating solution in ...

Embodiment 3

[0058] A method for preparing charcoal-based slow-release fertilizer, comprising the following steps:

[0059] (1) Take soybean or corn stalks, sugarcane filter mud, sugarcane tail tip and sugarcane leaves, and dry them for later use;

[0060] (2) Crush soybean or corn stalks, sugarcane tails and sugarcane leaves to a particle size of 100 mesh, mix them evenly, and carry out pyrolytic carbonization under the protection of nitrogen at a carbonization temperature of 650°C for 3 hours to obtain straw biochar;

[0061] (3) Transport the sugarcane filter sludge to a carbonization furnace, and carbonize it at a temperature of 440°C for 3 hours to obtain filter sludge biochar;

[0062] (4) Take 4 parts of diatomite, 1.5 parts of cyclodextrin, and 3 parts of lignin in parts by weight, and add water to prepare a coating solution;

[0063] (5) Take the straw biochar obtained in step (2) and the filter sludge biochar obtained in step (3) and mix evenly, spray the coating solution in ste...

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Abstract

The invention discloses a closed cycle agricultural mode construction method combining sugarcane planting and aquatic product three-dimensional breeding. The closed cycle agricultural mode construction method comprises the following steps of developing sugarcane tip leaves, interplanted crops and crop rotation into feed to feed ecological aquatic products, separating and drying fish manure, mixing and carbonizing with sugarcane leaves and interplanted crop straws to prepare a carbon-based slow-release fertilizer, applying the carbon-based slow-release fertilizer to sugarcanes, preparing discharged wastewater into liquid fertilizer, integrally irrigating water and the fertilizer to a sugarcane field, reducing the chemical fertilizer input, fertilizing the sugarcane field, and increasing the yield. According to the closed cycle agricultural mode construction method, environmental pollution is avoided, generated waste can be recycled, the fertilizer and the like are not needed after a stable circulation system is formed, the production cost is greatly reduced, and good economic benefits are achieved.

Description

technical field [0001] The invention relates to the technical field of agricultural planting, in particular to a method for constructing a closed-cycle agricultural model combining sugarcane planting and aquatic three-dimensional cultivation. Background technique [0002] Circular agriculture refers to activities that promote the reciprocal multi-layer and efficient flow of various agricultural resources in the agricultural system, so as to achieve the purpose of energy saving, emission reduction and income increase, and promote the sustainable development of modern agriculture and rural areas. Circular agriculture is an agricultural production method that uses the principle of material recycling and multi-level utilization of materials to achieve less waste production and improve resource utilization efficiency. As an environment-friendly farming method, circular agriculture has good social, economic and ecological benefits. [0003] Sugarcane is an important pillar of my ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01G22/55A01K61/10C05G3/40C05G3/80C05G5/12C05G5/30
CPCA01G22/55A01K61/10C05G3/40C05G3/80C05G5/12C05G5/30C05D9/00Y02A40/81
Inventor 李凯谢彩锋杭方学邓立高陆海勤潘莉莉陆文德梁汉柱周昊
Owner GUANGXI UNIV
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