Method for reducing phosphate fertilizer application by activating rice field soil phosphorus
A soil and phosphate fertilizer technology, applied in fertilization methods, chemical instruments and methods, soil conditioning materials, etc., can solve the problems of large amount of organic fertilizer, risk of phosphorus loss, inconvenient application, etc., to accelerate dissolution and mineralization, and reduce chemical fertilizer application The dosage and application are flexible and convenient
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Embodiment 1
[0023] Embodiment 1: the application of phosphorus activator on potted rice
[0024] The basic physical and chemical properties of the soil are: soil pH value 5.96, total nitrogen content 0.05%, total phosphorus content 0.060%, total potassium content 1.30%, water-soluble phosphorus content 26.70mg / kg, available phosphorus content 133.20mg / kg, Al-P The content is 49.01mg / kg, and the organic matter content is 3.56%. The rice variety planted is Huahang 31.
[0025] Four treatments were set up in the pot experiment: RCK0 was the blank control without phosphate fertilizer, RCK1 was applied superphosphate 4.17g / pot; R1, R2, R3 were the application of humic acid (from lignite), lignin (from paper black liquid) and food waste (monosodium glutamate factory waste residue), its replacement phosphate fertilizer application ratio is respectively 70%, 50%, 30%, that is, R1 is to apply superphosphate 1.25g / pot, and apply activator 2.92g / pot ; R2 is to apply superphosphate 2.09g / pot, apply...
Embodiment 2
[0029] Embodiment 2: the application of phosphorus activator on potted rice
[0030] The basic physical and chemical properties of the soil are: soil pH value 5.87, total nitrogen content 0.05%, total phosphorus content 0.079%, total potassium content 1.25%, water-soluble phosphorus content 29.83mg / kg, available phosphorus content 105.20mg / kg, Al-P The content is 58.05mg / kg, and the organic matter content is 3.61%. The variety of rice planted is Huanghuazhan.
[0031] There were 4 treatments in the pot experiment: CK0 was a blank control without applying phosphate fertilizer, CK1 was applying superphosphate; T1, T2, and T3 used different activators instead of 50% phosphate fertilizer application, and the types and application rates of the activators were shown in Table 2. Each treatment was repeated 4 times, and each pot was filled with 5 kg of soil. The fertilization and transplanting time of each treatment were the same as the daily management. The harvest was unified 90 da...
Embodiment 3
[0035] Example 3: Application of Phosphorus Activator Substituting Part of Phosphorus Fertilizer in Paddy Field Plots
[0036] From July to October 2019, a field test on the application effect of MSG factory waste residue and food waste was carried out in a paddy field in Luoding City, Guangdong Province. Test soil total N, P 2 o 5 and K 2O content is 2.3%, 0.10%, 2.1%, Al-P content 60.2mg / kg, available phosphorus content 15.98mg / kg. The test set-up did not apply phosphate fertilizer (CK0), conventional fertilization (CK1, superphosphate 16.67kg / mu) and phosphorus activator instead of 70% common phosphate fertilizer application (T1, superphosphate 5.00kg / mu, food waste 11.67kg / mu Mu), phosphorus activator instead of 50% common phosphate fertilizer application (T2, superphosphate 8.33kg / mu, food waste 8.33kg / mu), phosphorus activator instead of 30% common phosphate fertilizer application (T3, superphosphate 11.67kg / mu, food waste 5.0kg / mu), a total of 5 treatments. The ar...
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