Plant root layer oxidation-reduction potential regulation device, cultivation device and regulation method
A technology of potential regulation and cultivation device, applied in the fields of ecology and environmental science, root biology, and plant nutrition, which can solve the problems of lack of regulation and no regulation.
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Embodiment 1
[0088] This embodiment provides a plant root layer oxidation-reduction potential regulating device, and rice planting is taken as an example for illustration. figure 1 It is a schematic diagram of the overall structure of the control device of the present invention, figure 2 It is a sectional view of the culture device of the present invention.
[0089] The control device of the present invention comprises a container 1 with an open upper end, the container 1 is a clay basin of a hollow cylinder, the radius of the inner cavity is 12.5 cm, and the height is 26 cm; The free water in the layer container, after the two are combined, the structure diagram of the container 1 with the upper end opening is as follows image 3 shown.
[0090] The control device of the present invention also includes a cylinder 6 arranged in the container and one end of the cylinder is fixed on the bottom of the container, and the outside of the cylinder 6 and the inside of the container are separat...
Embodiment 2
[0119]This embodiment is the same as Embodiment 1 except for the following features: the liquid storage tank 19 is filled with 30g / L hydrogen peroxide to increase the redox potential, and the gas source 14 is connected to nitrogen to reduce the redox potential. The nitrogen flow rate is 60L / min, and the hydrogen peroxide flow rate is 1.5mL / min. The following sets the soil redox potential as 300mV as an example to illustrate the use effect. After the treatment starts, the change of soil redox potential is as follows: Figure 9 shown.
Embodiment 3
[0121] This embodiment is the same as Embodiment 1 except for the following features: 3g / L sodium dithionite is housed in the liquid storage tank 19 to reduce the redox potential, and the gas source 14 is connected to compressed air to increase the redox potential.
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