Excerpt from the test report on the application of active silicon magnesium calcium fertilizer and active magnesium fertilizer

▲ Guangdong Earth Fertilizer Station In 1999, experiments were conducted on the placement of silicon, magnesium, and calcium fertilizers on rice and peanut crops. It is divided into three treatments and three repetitions: 1. Conventional fertilization + Si-Mg-Ca fertilizer; 2. Conventional fertilization; 3. Control (without fertilization). The rice points are located in Wuguozantian, the owner of Jinmin District in Changshan Township, Kaiping City, and Guodeyuantian, the owner of Xiashi Village in Taiping Town, Kaiping City. As a result, the output of Kaiping was 2.1% higher than that of conventional fertilization and 1.7% of new crops. The difference in yield was not significant between the two points. Significant, but the incidence of sheath blight is 4.7-28.3% lower than conventional fertilization. Peanuts are located in Liushayingtian, Qinglong Village, Xi'an, Kaiping City, and Yuyingzhen, the owner of Longfeng County, Xinfengfeng Town. As a result, the yield at Kaiping was 3.1% higher than that of conventional fertilization and the yield at Xinfeng was 6.8%. The yield difference between the two points was not significant. , but the flower rust disease decreased by 0.3-3.7%, indicating that silicon magnesium and calcium fertilizer has a certain effect on disease resistance. ▲Zhongguan Lechang Beixiang Township Agricultural Technology Station. Horseshoe application of active silicon-magnesium-calcium fertilizer in the middle zone test. The experimental area of ​​Mushi Si-Mg-Ca 25 kg, divided into the second dressing: August 27 (the ramet period), September 29 (the bulb formation period), the fertilizer into the water after mixing and splash. The control area was sprayed with water at the same time. As for conventional fertilization (basal fertilizer Mushi 15 kg imported compound fertilizer, ammonium bicarbonate 20 kg, phosphate fertilizer 25 kg; top-dressing early in mid-August 10 kg of urea, in late August applied compound fertilizer 5 kg) and the management are consistent. Test results: Planting in early August, harvesting in mid-December, and taking 5 representative plots each to receive real yield, converted to yield per mu. The average output per mu of farmers is 200.25 kg in the test area, which is 4.0% higher than the control (1926.0 kg). The level 1 horseshoe (36 per kg) is 37.25% in the test area, and only 28.75% in the control area. The second level is horseshoe (52 per kg. ) were 53.33% and 61.53% respectively; Grade 3 horseshoe (68 per kg) were 9.43% and 9.58% respectively. Since the first-class product in the test area is large and the selling price is good, the total income of the mu is 2382-2682 yuan, which is an increase of 370.8-438 yuan/mu compared with the control area (2011.2-2244 yuan). Excluding the cost of silicon magnesium and calcium fertilizer 60 yuan, the increase of net income 310-378 yuan per mu. Among them, Pan Cailun's net income increased by 610.8 yuan. The test was determined later this year. If basal fertilizer can be used, it is estimated that the benefit will be better. (Editor's note: Because of the significant benefits of active silicon, magnesium, and calcium for horseshoe and recognition for local farmers, the fertilizer is very popular in the local area.) ▲Lianping County Agricultural Bureau, Soil Fertilizer Unit, Lianpingyouxi Agricultural Technology Station in 1999 11 In the month, Huang Hui Qin households at Pengshan House, Pengtian Village, Youxi Town carried out an active silicon magnesium-calcium fertilizer test with an area of ​​156m2. The field was divided into three parts, and the two sides were treated areas. Mushi Active Silicon Magnesium and Calcium Fertilizer was 39.5 kg. For the control area (without applying Si, Mg and Ca fertilizers), the rest of fertilization and management are the same. Observing the growth of each stage of the growth process in the field, the two contrasts are not much different. When harvested, they took 2m2 to obtain the best results. The differences in wet yield between the results of the treatment and the control were not significant. However, the treatment area was 11.4% and 13% higher than the control area in terms of the number and weight of the first grade garlic. . ▲ The Agricultural Technology Station of Heshui Town, Gaoming City, Guangdong Province In 1999, Li Daqianghu of Tiancun Town and Suchao Village of Yao Village of the town of Gaoming City used active silicon magnesium-calcium fertilizer and LPK fertilizer. 4 treatments: 1. 50 kg of compound fertilizer in Mushi, 40 kg of silicon magnesium and calcium fertilizer, 2. 50 kg of compound fertilizer in Mushi, 10 kg of LPK fertilizer, 3 kg, 40 kg of silicon magnesium, calcium, and 4 kg; Apply 50 kg of compound fertilizer (control). As a result, Tiancang Li Daqiang, 1,2, and 3 treatments all increased production compared with the control, with an increase of 280, 160, and 560 kilograms per mu, respectively. The increased yields were 6.4, 3.7, and 12.8%, respectively, and the proportion of primary products was slightly higher than the control. In the above figures, the yield is increased by the treatment 3 with mixed application, while the increase in production of active silicon magnesium calcium is also slightly greater than the treatment with LPK fertilizer 2 , indicating that the active silicon magnesium calcium fertilizer is more suitable for use on root and stem crops. ▲ Jin Kui’s subsidiary technology group and Fu Shanshan, Gong Village, Xi’an District, Gaoming City, conducted fertilizer test on potato in winter in 1998 with active silicon magnesium calcium fertilizer. Conventional fertilization was used as a control. Conventional fertilizer plus 30 mg/mu of silicon, magnesium, and calcium fertilizers was used as a test treatment and repeated twice. The beginning of the trial (December 5) was later. The potato was more than 30 centimeters high. The silicon-magnesium-calcium-calcium fertilizer had to be applied in the middle of the raft, and the soil was poured after the application. Harvested on February 9, 1999, nearly 50m2 of all the districts received real estate. The results were converted into yield per mu, with a control of 700.14 kg and a test area of ​​1271.25 kg, with an increase in yield of 81.5%. The effect is extremely significant. Reasons for increased production: Dark green leaves with magnesium, calcium, calcium, magnesium, calcium, thick stalks, and late blight disease: In mid-January, the control had 20% of phytoplasma susceptibility, and the application of silicon magnesium calcium began to show signs in late January. Not only increase production, and large and uniform potato, into the number of grades (> 3 two / a) and more, skin color is good and smooth, selling price increases, and bring greater economic benefits. ▲ Jinkui Subsidiary's Technology Group conducted a trial of carrots at the Gaoming Sanzhou Niijinchang from the beginning of 1999 to the beginning of 2000. There were three treatments: One was using multiple fertilizers, and the other was 40 kg of Mg active magnesium fertilizer as base fertilizer. The treatment of 30 mu of active magnesium fertilizer in two mu is different from other fertilizers. Three treatments were used for routine fertilization control. Sowing on September 15th, finishing the last top dressing in late November and harvesting on January 13th the following year. The results are as follows: 1. The yield of 2107 kg per mu was increased by 26.6% compared with the control (1664.3 kg), and the yield per mu (≥ 2 for both or roots) was increased by 87.3%. The treatment of 1812 kilograms per mu yielded an increase of 8.9% over the control, and the per-mu yield increased by 57.3%. It can be seen that the effect of active magnesium fertilizer in increasing production and improving grades is very significant. 2. The harvested samples were sent to the provincial Institute of Ecology, Environment and Soil for the determination: the average of the first and second treatments was 3.09mg/100g, an increase of 44.4%; the raw sugar was increased by 0.4% (absolute value), an increase of 4.7%; and the carotenoids were slightly higher. Increase (0.2mg/100ml). Visible addition of active magnesium fertilizer, carrots have a certain increase in nutritional value.

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