Reuse of bacteria

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The bacillary dysentery reuse bacterium, also known as the residue, the waste, and the waste fungus tube, is a culture material for cultivating edible fungi. These waste materials all contain a large amount of mycelia, proteins and other nutrients, and are called “bacteriophage protein”. . The total amount of bacillary dysentery in our country is about 8 to 1 million tons, and its main substrate is cottonseed husks, sawdust, rice straw, corn cob, bagasse and a variety of agricultural straws. These substrates, after fermentation by various microorganisms, have been degraded to varying degrees by cellulose, hemicellulose, and wood. Crude protein and crude fat have been more than doubled than unfermented substrates, and crude cellulose has decreased by 50. %, lignin decreased by 30%. The amino acids, fungi, and trace elements such as iron, calcium, zinc, and manganese contained in bacillary dysentery are relatively abundant. After proper treatment, it can be used as feed, bait, or its additives for feeding pigs, cattle, sheep, chickens, ducks, rabbits, squirrels, northern deer, and fish, replacing some of the food, and reducing production costs.
The nutrient value of bacillary dysentery is relatively abundant. Here, the nutritional comparison of some edible fungi before and after cultivation is as follows: (1) Crude protein of oyster mushroom and anchovy mushroom bacterium increases from 5.65% before mushrooming to 7.9%, crude fiber from the front of mushroom 51.45% decreased to 9.32%; fat increased slightly; reduced cesium increased from 2.1% to 3.9%, and total hydrazine increased from 19.8% to 25.2%. After cultivating Pleurotus ostreatus with cottonseed hulls, crude protein in the fungal oysters increased by 9.30% compared with pure cottonseed husks, nitrogen-free extracts 9.74%, calcium increased by 159.26%, crude fiber content decreased by 17.37%. 2 Mushroom strains contained crude protein 8.76%, crude fat 0.62%, crude fiber 30.0%, and ash 7.93%. Each kilogram of bacteria contained 10.86 grams of calcium, 3.6 grams of phosphorus, 4.04 grams of potassium, 8.7 grams of sodium, 0.0049 grams of copper, 1.58 grams of magnesium, 0.69 grams of iron, 0.06 grams of zinc, and 0.0774 grams of manganese. 3 Mushrooms contained 10.92% of crude protein, 9.93% of protamine, 14% of crude fat, and 3.25% of fine fiber. The rest of the nutrients were higher than those of cereals.
The process for producing feed for bacillary dysentery is: selection of bacillary dysentery products. The raw materials of the 3rd and 4th crops of the harvested land should be carefully selected, and white mycelium should be taken to remove the mildew and rot from the rot, and the 2 parts of the golden babe 2 feed starter (more than 5 times dilution of rice bran) Mix), corn flour, soybean meal, wheat bran, etc. may also be added in an appropriate amount. Sealed fermentation can be 2-3 days.
With pigs fed with bacteria, the cost of raising pigs is reduced by 35% for each 1 kg of weight gain. For pigs fed with bacteria, they can save about 75 kg of food per pig and save 50 yuan in cost.
Can also be made into a fertilizer by the fungus: The fungus can be fermented with the 2% Golden Gymnosium nutrient soil (5 times more than the rice bran diluted to facilitate mixing), after 5-10 days of fermentation. Fermentation results in more nutritious organic fertilizers. The nutrient contents of N, P and K in fertilizers were higher than those in rice straw and fresh manure. After applying the fertilizer in the soil, humus with good aeration and water storage capacity can be formed. It is of great significance to improve soil and improve soil fertility. In addition, the mycelia of edible fungi secrete certain stimulant substances and special enzymes during the growth process, and these enzymes can decompose complex organic substances into nutrients that are easily absorbed by plants. Deep in the orchard, can improve the soil and improve the quality of fruit, specifically for the effect of increasing production and income. When applied to vegetables, the drought-resistance of vegetables can be significantly enhanced, plant growth is strong, and the appearance quality is good. In flower cultivation, it can be used as a base fertilizer for flower nurseries and flower pots to improve the soil structure, improve air permeability, and retain water and water, so that the flowers and plants that grow out are prosperous, have a large amount of flowers, and are attractive in color. The cost is extremely low. In the application, special care should be taken not to mix with phosphate fertilizer (the bacteria contain more free calcium ions).

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