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Foliar blocking and controlling agent for reducing content of cadmium and arsenic in rice as well as preparation method and application of foliar blocking and controlling agent

A technology of inhibitor and control agent, rice cadmium, applied in the field of foliar inhibitor and control agent for reducing cadmium and arsenic content in rice and its preparation, can solve problems such as unclear working mechanism, poor arsenic effect, wasteful application efficiency, etc. Good arsenic resistance control effect, increased activity, and improved application efficiency

Pending Publication Date: 2022-07-12
GUANGXI ZHUANG AUTONOMOUS REGION ACAD OF AGRI SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, foliar inhibitors mainly include silicon, selenium, and iron-zinc trace element foliar inhibitors. These types of foliar inhibitors still have unstable effects and unclear working mechanisms. Some foliar inhibitors, such as Selenium, iron and zinc trace elements can only be applied to lightly cadmium-polluted paddy fields, but the effect on arsenic is not good
At the same time, most of the current foliar inhibitors are directly dissolved in water and then sprayed on the rice leaf surface, which cannot be effectively adsorbed on the waxy layer of the rice leaf surface and lost, resulting in the loss of effective components and waste. Low application efficiency and poor effect

Method used

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  • Foliar blocking and controlling agent for reducing content of cadmium and arsenic in rice as well as preparation method and application of foliar blocking and controlling agent
  • Foliar blocking and controlling agent for reducing content of cadmium and arsenic in rice as well as preparation method and application of foliar blocking and controlling agent
  • Foliar blocking and controlling agent for reducing content of cadmium and arsenic in rice as well as preparation method and application of foliar blocking and controlling agent

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] Through the pot experiment of adding cadmium and arsenic compound polluted soil by foreign aid, the cadmium content of potted soil was 1.0mg / kg, the arsenic content was 40mg / kg, and the soil pH was 6.2. Nine experiments were set up to treat 3 different foliar formulations: (1) Formula 1 was sprayed twice; (2) Formula 1 was sprayed once; (3) Formula 2 was sprayed twice; ( 4) Formula 2 was sprayed once on the leaves; (5) Formula 3 was sprayed twice on the leaves; (6) Formula 3 was sprayed once on the leaves; (7) The formula 1 was mixed and sprayed twice at one time; (8) ) Formula 1 was mixed and sprayed once; (9) Control - sprayed with clean water.

[0026] Foliar inhibitor formula 1: 1000ml foliar inhibitor contains potassium dihydrogen phosphate 60g, sodium dodecylbenzene sulfonate 14g, sodium thiosulfate 180g, cystine 65g, citric acid 25g, nano silicon 50g, Manganese sulfate 25g, isoamyl acetate 10g. The preparation method is as follows: A. First, dissolve various so...

Embodiment 2

[0038]The implementation site is a paddy field near a lead-zinc mining area in Guiping City, Guangxi. The soil of the paddy field is cadmium-arsenic compound pollution. The cadmium content is 0.91 mg / kg, the arsenic content is 42.3 mg / kg, and the soil pH is 6.5. The time was late rice, and the rice variety was Guangliangxiang No. 2 conventional rice. Three experimental treatments were set up: (1) Formula 1 was sprayed twice; (2) Formula 1 was sprayed once; (3) Formula 2 Foliar sprayed twice; (4) Formula 2 foliar sprayed once (5) Control - sprayed with clean water.

[0039] Foliar inhibitor formula 1: 1000ml foliar inhibitor contains 50g potassium dihydrogen phosphate, 12g sodium dodecylbenzene sulfonate, 170g sodium thiosulfate, 60g cystine, 25g citric acid, 50g nano silicon, Manganese sulfate 35g, isoamyl acetate 8g.

[0040] Foliar inhibitor formula 2: 1000ml foliar inhibitor contains 50g potassium dihydrogen phosphate, 12g sodium dodecylbenzenesulfonate, 25g citric acid, 5...

Embodiment 3

[0049] The implementation site is a village in Liuwei Town, Jinchengjiang District, Hechi City, Guangxi. The soil of the paddy field is cadmium-arsenic compound pollution, of which the cadmium content is 1.15 mg / kg, the arsenic content is 51.2 mg / kg, and the soil pH is 6.3. The time is late rice, and the rice variety is Hengfengyou 777 hybrid rice variety. Two foliar inhibitor formulations were used to set up 5 experimental treatments: (1) Formula 1 was sprayed once on the foliar surface; (2) Formula 1 was sprayed on the foliar surface twice; (3) Formula 2 was sprayed on the foliar surface once ; (4) Formula 2 was sprayed twice on the foliage; (5) Control - sprayed with clean water.

[0050] Foliar inhibitor formula 1: 1000ml foliar inhibitor contains 70g potassium dihydrogen phosphate, 12g sodium dodecylbenzene sulfonate, 185g sodium thiosulfate, 70g cystine, 30g citric acid, 55g nano silicon, Manganese sulfate 25g, isoamyl acetate 8g.

[0051] Foliar inhibitor formula 2: 1...

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PUM

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Abstract

The invention discloses a leaf surface blocking and controlling agent for reducing the content of cadmium and arsenic in rice and a preparation method and application of the leaf surface blocking and controlling agent. Every 1 L of the foliar blocking and controlling agent for reducing the content of cadmium and arsenic in rice is prepared from 40 g to 75 g of monopotassium phosphate, 10 g to 15 g of sodium dodecyl benzene sulfonate, 150 g to 200 g of sodium thiosulfate, 50 g to 80 g of cystine, 20 g to 35 g of citric acid, 40 g to 60 g of nanometer silicon, 20 g to 40 g of manganese sulfate and 5 g to 10 g of isoamyl acetate. According to the invention, a sodium thiosulfate sulfur-containing compound and cystine sulfur-containing nutrient molecules are added to be combined with macro-elements such as phosphorus, potassium, silicon and the like which are necessary for rice production and trace elements such as ion channel regulation and control, and a plurality of modes of inducing synthesis of sulfur-based substances in the rice to be combined with complexing of heavy metal ions, regulation and control of ion channels, competitive inhibition and absorption and the like are combined; the effect of reducing rice heavy metal accumulation is achieved. By adding sodium dodecyl benzene sulfonate and isoamyl acetate, effective absorption of rice to amino acid, sodium thiosulfate, silicon, manganese and other components can be promoted, and the application efficiency of the effective components of the foliar agent and the resistance and control effect of heavy metal cadmium and arsenic are greatly improved.

Description

technical field [0001] The invention belongs to the technical field of plant growth regulators, and particularly relates to a foliar inhibitor and control agent for reducing the content of cadmium and arsenic in rice, and a preparation method and application thereof. Background technique [0002] The heavy metal elements of cadmium and arsenic have strong biological toxicity. The excess rate of pollutants in China's cultivated soil sites is 19.1%, and the excess rate of cadmium and arsenic is about 10%. They are the main pollutants of heavy metals in my country's soil. Rice has the characteristics of enriching heavy metal cadmium and arsenic. The people of our country use rice as the main food every day. The excess of heavy metal cadmium and arsenic in rice has become the main obstacle to the safe production of food in my country, which seriously threatens people's health. At present, the safe production of rice in heavy metal-contaminated rice fields is mainly solved by the...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C05G3/00C05G5/20A01C21/00
CPCC05B7/00C05G3/00C05G5/20A01C21/005C05C11/00C05D9/00C05D9/02C05F11/00Y02A40/10
Inventor 黄雁飞刘斌黄玉溢陈桂芬聂雄峰熊柳梅
Owner GUANGXI ZHUANG AUTONOMOUS REGION ACAD OF AGRI SCI
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