Microalgae nutrition repair solution for relieving grassland desertification and preparation method thereof
A repair solution and microalgae technology, applied in liquid fertilizers, applications, organic fertilizers, etc., can solve the problems of reducing the degradation of soil microbial transformation of toxic substances, reducing the number and activity of soil microorganisms, and inhibiting the development of plant roots, so as to improve plant growth. , Improve plant stress resistance, prevent plant diseases and insect pests
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Embodiment 1
[0040] A microalgae nutrient restoration solution for alleviating grassland desertification, the preparation method comprising the following steps:
[0041] S1, expanding the cultivation of Monofidobacterium microfidum, Microcoleum, Pseudocladonella, nitrogen-fixing Anabaena and Chlorella pyrenoidosa, respectively, to obtain five kinds of algae liquids, among which, under the expansion of cultivation,
[0042] The expansion cultivation process of the five algae fluids includes: selecting and separating a single microalgae cell under a microscope → culturing a single microalgae cell in 15mL medium solution for 10 days to obtain 15mL algae fluid → transfer to 85mL medium solution Continue culturing for 10 days to obtain 100mL of algae solution → inoculate into 0.9L medium solution for 10 days to obtain 1L of algae solution → inoculate into 4L medium solution for 10 days to obtain 5L Algae liquid → inoculated into 13L medium solution and continued to cultivate for 10 days to obta...
Embodiment 2
[0047] The difference from Example 1 is that in the expanded cultivation of step S1,
[0048] The expansion cultivation process of the five algae fluids includes: selecting and separating a single microalgae cell under a microscope → culturing a single microalgae cell in 15mL medium solution for 12 days to obtain 15mL algae fluid → transfer to 85mL medium solution Continue culturing for 10 days to obtain 100mL of algae liquid → inoculate into 0.9L medium solution for 12 days to obtain 1L of algae liquid → inoculate into 4L medium solution for 12 days to obtain 5L Algae liquid → inoculated into 13L medium solution and continued to cultivate for 12 days to obtain 18L of algae liquid → transferred to 782L medium solution and continued to cultivate for 12 days to obtain 800L of algae liquid. At the end of the expansion of each stage above, the number of viable microalgae cells is ≥10 6 cells / mL, the number of active microalgae cells in the final obtained algae liquid is ≥10 6 a / ...
Embodiment 3
[0051] The difference from Example 1 is that in the expanded cultivation of step S1,
[0052] The expansion cultivation process of the five algae liquids includes: selecting and separating a single microalgal cell under a microscope → culturing a single microalgal cell in 15mL of medium solution for 15 days to obtain 15mL of algae liquid → transfer to 85mL of medium solution Continue culturing for 15 days, obtain 100mL of algae liquid → inoculate into 0.9L medium solution and continue culturing for 15 days, obtain 1L of algae liquid → transfer and inoculate into 4L medium solution for 15 days, obtain 5L Algae liquid → inoculated into 13L medium solution and continued to cultivate for 15 days to obtain 18L of algae liquid → transferred to 782L medium solution and continued to cultivate for 15 days to obtain 800L of algae liquid. At the end of the expansion of each stage above, the number of viable microalgae cells is ≥10 6 cells / mL, the number of active microalgae cells in the...
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