Irrigation and drainage method for improving soda alkali-saline paddy field in field steeping period
A technology for soda saline-alkali land and horizontal drainage, which is applied in the fields of land preparation methods, applications, agricultural machinery and implements, etc., can solve the problems of poor saline-alkali removal effect and low rice yield in paddy fields in soda-saline-alkali land, and achieve the effect of thorough saline-alkali discharge.
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specific Embodiment approach 1
[0036] Specific implementation mode one: the method for irrigation and drainage during soaking period of the improved soda saline-alkali paddy field described in this implementation mode is realized according to the following steps:
[0037] One, select the soda saline-alkali paddy field with pH of 9.77-10.65; the EC of the soda saline-alkali paddy field is 0.68-2.94mS / cm;
[0038] 2. To level the land, add 100% GR of desulfurized gypsum as a modifier according to the alkalinity of the soil; the amount of desulfurized gypsum added is calculated according to the following formula:
[0039] 100%GR=1.25×CEC×(ESP i –ESP f )×10 -2
[0040] In the above formula:
[0041] 100% GR is the amount of desulfurized gypsum added, the unit is mol c / kg, where, mol c The subscript c is the charge number, mol c Is the unit, equivalent to the equivalent concentration;
[0042] CEC is the soil cation exchange capacity, which is 200mmol c / kg; ESP i is the initial alkalinity of the soil...
specific Embodiment approach 2
[0052] Specific embodiment two: the difference between this embodiment and specific embodiment one is: in the step 3, the water consumption for the first artificial irrigation soaking field is that the water surface reaches a height of 6-10 cm above the soil surface. Other steps and parameters are the same as in the first embodiment.
specific Embodiment approach 3
[0053] Specific embodiment three: the difference between this embodiment and specific embodiment two is: the water consumption for the first artificial irrigation soaking field in step three is that the water surface reaches the height of 8 cm above the soil surface. Other steps and parameters are the same as in the second embodiment.
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