CN105144901A - Method for improving saline and alkaline land through ardealite, TMPU and EDTA - Google Patents

Method for improving saline and alkaline land through ardealite, TMPU and EDTA Download PDF

Info

Publication number
CN105144901A
CN105144901A CN201510535990.3A CN201510535990A CN105144901A CN 105144901 A CN105144901 A CN 105144901A CN 201510535990 A CN201510535990 A CN 201510535990A CN 105144901 A CN105144901 A CN 105144901A
Authority
CN
China
Prior art keywords
ardealite
consumption
edta
saline
tetramethylene
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201510535990.3A
Other languages
Chinese (zh)
Inventor
陈彬
廖吉星
蒋俊蕊
石秀明
郑超
朱飞武
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Gaoshi Investment Co Ltd
Guizhou Kailin Group Co Ltd
Original Assignee
Beijing Gaoshi Investment Co Ltd
Guizhou Kailin Group Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Beijing Gaoshi Investment Co Ltd, Guizhou Kailin Group Co Ltd filed Critical Beijing Gaoshi Investment Co Ltd
Priority to CN201510535990.3A priority Critical patent/CN105144901A/en
Publication of CN105144901A publication Critical patent/CN105144901A/en
Pending legal-status Critical Current

Links

Landscapes

  • Soil Conditioners And Soil-Stabilizing Materials (AREA)

Abstract

The invention provides a method for improving saline and alkaline land through ardealite, TMPU and EDTA. The method includes the steps that first, the land is treated with ardealite and fulvic acid calcium; then, the land is treated with a mixture of TMPU, oxalic acid and hydroxymethyl cellulose; finally, the land is treated with EDTA. By the adoption of the method for improving the saline and alkaline land, saline and alkaline soil can be rapidly improved to be suitable for crop growth; besides, an improver is wide in application range and suitable for soil improvement on soil salinization and alkalinization caused by different reasons in different areas and can improve the soil structure, lower soil alkalinity, increase the soil salt rejection ratio, improve soil fertility, promote crop growth and improve agricultural economy when reasonably applied into soil.

Description

A kind of ardealite+tetramethylene five urea+EDTA improves the method in saline land
Technical field
The present invention relates to saline land processing technology field, particularly relate to a kind of method that ardealite+tetramethylene five urea+EDTA improves saline land.
Background technology
Saline land is the general name of solonchak and alkaline earth and various salinization, alkali-affected soil.Solonchak refers to that in soil, soluble organic fraction content acquires a certain degree, and can produce the great soil group of obviously harm to the g and D of plant.Alkaline earth refers to that quantity reaches the degree that can endanger plant growth and growth containing a large amount of exchangeability ion in soil, and the soil that soil property is changed.In actual state, solonchak and alkaline earth often exist in a mixed way jointly, are referred to as saline land.
Saline land is important land resources, and it is a kind of soil types of extensively distribution on the earth.About nearly 1,000,000,000 hectares of whole world saline soil area, China's Resource of Saline Soil is distributed widely in 17 provinces and regions based on the north, the main integrated distribution region of northwest, northeast, North China and coastal Deng Shi China saline soil, the gross area reaches more than 500,000,000 mus, and account for that the whole nation can utilize land area nearly 5%.The wherein gross area in Coastal beach saline land about 2,350,000 hm 2, and now annual still with 2-3 ten thousand hm 2speed become silted up rise.Saline land control and exploitation are the problems that irrigated area agricultural development can not be ignored, and for promotion agricultural sustainable development, Ensuring Food Safety has important function.
The Method and Technology in domestic process saline land is summed up roughly as follows: (1) is physically improved; Level land, deep plough sun the earth which has been ploughed up, loosen the soil in time, raise landform, microcell is improved the soil.(2) water conservancy improvement.Fill with deploying cover, storage fresh water on saline-alkali land for leaching, washing salinity by irrigation, underground salt discharge.(3) chemical modifying is changed; The chemical agents such as ardealite, superphosphate, fulvic acid are used to improve.(4) biological modification; Rice cultivation, plantation salt-tolerant plant Tian Qing etc., use micro-EDTA fertile.At present, the soil conditioner of soil salinization chemical harnessing is more, as gypsum, calcium sulphate, superphosphate, trade waste ardealite, industrial waste acid, fertilizer, detritus acid, flyash, peat, fermentation acid-sludge etc., these all achieve certain effect to improvement saline land, relatively more conventional is fertilizer, gypsum, and wherein gypsum is with Ca 2+displacement Na +and improved saline land by sour neutralization bases; But the restriction be subject to as complex manufacturing, poor processing effect and some other condition can not obtain large-area popularization.
Summary of the invention
For solving the problems of the technologies described above, the invention provides a kind of method that ardealite+tetramethylene five urea+EDTA improves saline land.
The present invention is achieved by the following technical programs.
A kind of ardealite+tetramethylene five urea+EDTA provided by the invention improves the method in saline land, comprises the following steps:
(1) ardealite and fulvic acid calcium are sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, ardealite is mixed with soil layer, keeps 10 ~ 30 days;
(2) then the mixture of tetramethylene five urea, oxalic acid, CMC is sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, sustained-release adhesive is mixed with soil layer, keeps 5 ~ 10 days;
(3) EDTA is sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, make material mix with soil layer all with, and keep 10 ~ 30 days;
In above-mentioned, the consumption of ardealite is 200 ~ 1200kg/ mu; Fulvic acid calcium consumption is 30 ~ 300kg/ mu, and the amount of mixture of tetramethylene five urea, oxalic acid, CMC is 30 ~ 400kg/ mu, and the consumption of EDTA is 5 ~ 50kg/ mu.
Further, the mixed proportion of described tetramethylene five urea, oxalic acid, CMC is: 40:(1 ~ 5): (1 ~ 5);
And above-mentioned material is separately deposited, and mixes in use.
Further, described step (2) is after the mixture adding tetramethylene five urea, oxalic acid, CMC, and spray clear water, the saline land making 20cm dark is moistening.
Further, the consumption of various material of the present invention is determined according to different saline lands, is specially:
In slight alkaline land, the consumption of ardealite is 200 ~ 600kg/ mu, and fulvic acid calcium consumption is 30 ~ 100kg/ mu, mixture 30 ~ 60kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 5 ~ 20kg/ mu;
In moderate saline-alkali soil, the consumption of ardealite is 600 ~ 900kg/ mu; Fulvic acid calcium consumption is 100 ~ 200kg/ mu, mixture 60 ~ 90kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 20 ~ 35kg/ mu.
In heavy salinized ground, the consumption of ardealite is 900 ~ 1200kg/ mu; Fulvic acid calcium consumption is 200 ~ 300kg/ mu, mixture 90 ~ 120kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 35 ~ 50kg/ mu.
Beneficial effect of the present invention is:
1), in this method, ardealite is aobvious acid, and it can neutralize with the saline land of aobvious alkalescence, effectively can reduce the pH value in saline land;
2) contained in ardealite fulvic acid calcium calcium ion can with carbonate in saline land and bicarbonate radical generation chemical reaction, generate calcium carbonate and calcium bicarbonate, wherein calcium carbonate is water insoluble, calcium bicarbonate is slightly soluble in water, the character of calcium carbonate and calcium bicarbonate can impel Zinc fractions granular structure, and its granular structure can wrapping portion sodium ion, promotes desalinization of soil by flooding or leaching speed, reduce the bulk density of soil simultaneously, increase soil water permeability;
3) tetramethylene five urea is line-like structures, it has binding agent effect, the granular structure formed is reacted in ardealite and saline land, after interpolation tetramethylene five urea, tetramethylene five urea can promote the formation of granular structure, and tetramethylene five urea can fill up the vacancy position in the granular structure of calcium carbonate and calcium bicarbonate formation simultaneously, makes granular structure inside and outside portion relative insulation, reduce the sodium ion of mobility in soil, promote desalinization of soil by flooding or leaching speed;
4) tetramethylene five urea can slowly decompose at temperature and microbial action, and during decomposition, can form organic salt with the cation such as the sodium in soil, calcium, the solvability of its organic salt is low, reduces the cation such as sodium, calcium of soil free state;
5) tetramethylene five urea itself is slow-release fertilizer, and the product after its decomposition can provide nitrogen element for plant, can not cause the secondary pollution of soil;
6) when using tetramethylene five urea, adding oxalic acid, CMC raw material, tetramethylene five urea rapid curing can be impelled, granular structure can be impelled to be formed fast.
7) EDTA can react with the sodium in soil, calcium, iron ion complex compounds such as forming EDTA-Na, EDTA-Ca, EDTA-Fe, the solvability of EDTA-Na is lower than other sodium salts, and the complex compound that after EDTA-Ca, EDTA-Fe and iron, element is formed is slightly soluble in water, add EDTA and can reduce salt content in soil
8) in the present invention, ardealite is first adopted to process saline land, reduce pH value, simultaneously by generating calcium carbonate, the granular structure such as calcium bicarbonate, and then add the materials such as tetramethylene five urea, the granular structure being is formed more fast, and fill up the position, space of granular structure, the inner relative insulation of the granular structure being, reduce the sodium ions content of the mobility in soil, the salt content in soil is reduced with this, finally add EDTA again, can with the sodium of granular structure outside, calcium, iron plasma reaction forms complex compound, reduce the salt content in the soil of granular structure outside, the object improving saline land is reached with this.
The present invention adopts above-mentioned saline and alkali land improvement method, can quick improvement saline-alkali soil, suitable for crop grows, and this modifying agent operation strategies is wider, be applicable to different regions, salinization of soil soil melioration that different reason causes, rationally be manured into soil, can soil structure be improved, reduce soil alkalinity, improve soil salt discharge rate, increase soil fertility, promote the growth of crops, improve agricultural economy.
Embodiment
Further describe technical scheme of the present invention below, but described in claimed scope is not limited to.
Embodiment one
1, raw material prepares
Ardealite,
Fulvic acid calcium,
Tetramethylene five urea, its structural formula is,
Oxalic acid,
CMC,
EDTA,
2, ardealite+tetramethylene five urea+EDTA improves the method in saline land, comprises the following steps:
(1) ardealite and fulvic acid calcium are sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, ardealite is mixed with soil layer, keeps 10 days;
(2) tetramethylene five urea, oxalic acid, CMC are mixed in the ratio of 40:1:1, then saline and alkaline the earth's surface is sprinkling upon equably, and deep plough 20cm, sustained-release adhesive is mixed with soil layer, spray clear water, the saline land making 20cm dark is moistening, keeps 5 ~ 10 days;
(3) EDTA is sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, make material mix with soil layer all with, and keep 10 days;
In the present embodiment, the consumption of various material is determined according to different saline lands, is specially:
In slight alkaline land, the consumption of ardealite is 200kg/ mu, and fulvic acid calcium consumption is 30kg/ mu, the mixture 30kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 5kg/ mu;
In moderate saline-alkali soil, the consumption of ardealite is 600kg/ mu; Fulvic acid calcium consumption is 100kg/ mu, the mixture 60kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 20kg/ mu.
In heavy salinized ground, the consumption of ardealite is 900kg/ mu; Fulvic acid calcium consumption is 200kg/ mu, the mixture 90kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 35kg/ mu.
Embodiment two
1, raw material prepares
Ardealite,
Fulvic acid calcium,
Tetramethylene five urea, its structural formula is,
Oxalic acid,
CMC,
EDTA,
2, ardealite+tetramethylene five urea+EDTA improves the method in saline land, comprises the following steps:
(1) ardealite and fulvic acid calcium are sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, ardealite is mixed with soil layer, keeps 30 days;
(2) tetramethylene five urea, oxalic acid, CMC are mixed in the ratio of 40:5:1, then saline and alkaline the earth's surface is sprinkling upon equably, and deep plough 20cm, sustained-release adhesive is mixed with soil layer, spray clear water, the saline land making 20cm dark is moistening, keeps 5 ~ 10 days;
(3) EDTA is sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, make material mix with soil layer all with, and keep 30 days;
In the present embodiment, the consumption of various material is determined according to different saline lands, is specially:
In slight alkaline land, the consumption of ardealite is 600kg/ mu, and fulvic acid calcium consumption is 100kg/ mu, the mixture 60kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 20kg/ mu;
In moderate saline-alkali soil, the consumption of ardealite is 900kg/ mu; Fulvic acid calcium consumption is 200kg/ mu, the mixture 90kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 35kg/ mu.
In heavy salinized ground, the consumption of ardealite is 1200kg/ mu; Fulvic acid calcium consumption is 300kg/ mu, the mixture 120kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 50kg/ mu.
Embodiment three
1, raw material prepares
Ardealite,
Fulvic acid calcium,
Tetramethylene five urea, its structural formula is,
Oxalic acid,
CMC,
EDTA,
2, ardealite+tetramethylene five urea+EDTA improves the method in saline land, comprises the following steps:
(1) ardealite and fulvic acid calcium are sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, ardealite is mixed with soil layer, keeps 20 days;
(2) tetramethylene five urea, oxalic acid, CMC are mixed in the ratio of 40:3:3, then saline and alkaline the earth's surface is sprinkling upon equably, and deep plough 20cm, sustained-release adhesive is mixed with soil layer, spray clear water, the saline land making 20cm dark is moistening, keeps 5 ~ 10 days;
(3) EDTA is sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, make material mix with soil layer all with, and keep 20 days;
In the present embodiment, the consumption of various material is determined according to different saline lands, is specially:
In slight alkaline land, the consumption of ardealite is 400kg/ mu, and fulvic acid calcium consumption is 70kg/ mu, the mixture 45kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 13kg/ mu;
In moderate saline-alkali soil, the consumption of ardealite is 750kg/ mu; Fulvic acid calcium consumption is 150kg/ mu, the mixture 75kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 28kg/ mu.
In heavy salinized ground, the consumption of ardealite is 1100kg/ mu; Fulvic acid calcium consumption is 250kg/ mu, the mixture 105kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 43kg/ mu.
The above, it is only better example of the present invention, not any pro forma restriction is done to the present invention, anyly do not depart from technical solution of the present invention content, the any simple modification done above example according to technical spirit of the present invention, coversion material equivalent variations and modification, all still belong in the scope of technical solution of the present invention.
Meanwhile, in order to be further elaborated beneficial effect of the present invention, present inventor has performed a large amount of property used test, special instruction, the present invention's test is intended to the beneficial effect that the technology of the present invention is described, is never only limitted to scope of the present invention.
Test method: select the saline land of Haixing County, Cangzhou, Hebei Province to test, experimental group: use above-described embodiment one ~ embodiment three to process the saline land of different salinity, and throw in N 2o6kg/ mu, P 2o 55kg/ mu, K 2the fertilizer of O3kg/ mu, carries out plantation wheat; Control group: independent ardealite process is carried out to the saline land of different salt content, total consumption of the material of the saline and alkali land improvement method of the corresponding embodiment one ~ embodiment three of consumption difference of ardealite, and throw in N 2o6kg/ mu, P 2o 55kg/ mu, K 2the fertilizer of O3kg/ mu, carries out plantation wheat.By statistics output, in slight alkaline land, use the saline land wheat yield of the modifying agent process of the present embodiment than the high 45-65% using ardealite process; In moderate saline-alkali soil, use the saline land wheat yield of the modifying agent process of the present embodiment than using the high by 50 ~ 70% of ardealite process; In heavy salinized ground, use the saline land wheat yield of the modifying agent process of the present embodiment than the high 50-80% using ardealite process.

Claims (4)

1. improve the method in saline land with ardealite+tetramethylene five urea+EDTA, it is characterized in that, comprise the following steps:
(1) ardealite and fulvic acid calcium are sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, ardealite is mixed with soil layer, keeps 10 ~ 30 days;
(2) then the mixture of tetramethylene five urea, oxalic acid, CMC is sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, sustained-release adhesive is mixed with soil layer, keeps 5 ~ 10 days;
(3) EDTA is sprinkling upon saline and alkaline the earth's surface equably, and the 20cm that deep ploughs, make material mix with soil layer all with, and keep 10 ~ 30 days;
In above-mentioned, the consumption of ardealite is 200 ~ 1200kg/ mu; Fulvic acid calcium consumption is 30 ~ 300kg/ mu, and the amount of mixture of tetramethylene five urea, oxalic acid, CMC is 30 ~ 120kg/ mu, and the consumption of EDTA is 5 ~ 50kg/ mu.
2. ardealite+tetramethylene five urea+EDTA as claimed in claim 1 improves the method in saline land, it is characterized in that: the mixed proportion of described tetramethylene five urea, oxalic acid, CMC is: 40:(1 ~ 5): (1 ~ 5);
And above-mentioned material is separately deposited, and mixes in use.
3. ardealite+tetramethylene five urea+EDTA as claimed in claim 1 improves the method in saline land, it is characterized in that: described step (2) is after the mixture adding tetramethylene five urea, oxalic acid, CMC, spray clear water, the saline land making 20cm dark is moistening.
4. ardealite+tetramethylene five urea+EDTA as claimed in claim 1 improves the method in saline land, it is characterized in that: the consumption of various material of the present invention is determined according to different saline lands, is specially:
In slight alkaline land, the consumption of ardealite is 200 ~ 600kg/ mu, and fulvic acid calcium consumption is 30 ~ 100kg/ mu, mixture 30 ~ 60kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 5 ~ 20kg/ mu;
In moderate saline-alkali soil, the consumption of ardealite is 600 ~ 900kg/ mu; Fulvic acid calcium consumption is 100 ~ 200kg/ mu, mixture 60 ~ 90kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 20 ~ 35kg/ mu.
In heavy salinized ground, the consumption of ardealite is 900 ~ 1200kg/ mu; Fulvic acid calcium consumption is 200 ~ 300kg/ mu, mixture 90 ~ 120kg/ mu of tetramethylene five urea, oxalic acid, CMC, and the consumption of EDTA is 35 ~ 50kg/ mu.
CN201510535990.3A 2015-08-28 2015-08-28 Method for improving saline and alkaline land through ardealite, TMPU and EDTA Pending CN105144901A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510535990.3A CN105144901A (en) 2015-08-28 2015-08-28 Method for improving saline and alkaline land through ardealite, TMPU and EDTA

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510535990.3A CN105144901A (en) 2015-08-28 2015-08-28 Method for improving saline and alkaline land through ardealite, TMPU and EDTA

Publications (1)

Publication Number Publication Date
CN105144901A true CN105144901A (en) 2015-12-16

Family

ID=54786306

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510535990.3A Pending CN105144901A (en) 2015-08-28 2015-08-28 Method for improving saline and alkaline land through ardealite, TMPU and EDTA

Country Status (1)

Country Link
CN (1) CN105144901A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109496663A (en) * 2018-12-21 2019-03-22 北京碧青园生态环境科技有限公司 A kind of raising heavy salinized ground soil species tree planting technique and application

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1854245A (en) * 2005-04-27 2006-11-01 王莹 Improvement of vegetative salt alkaline land soil
CN101012360A (en) * 2007-02-01 2007-08-08 厦门大学 Artwork with modified urea-formaldehyde resin as adhesive and preparing method thereof
CN101434495A (en) * 2007-11-13 2009-05-20 任兆磊 Phosphogypsum sustained-controlled compound fertilizer
CN101624436A (en) * 2009-08-03 2010-01-13 北京化工大学 Environment-protective urea-formaldehyde resin with novel structure as well as preparation method and application thereof
CN101798513A (en) * 2010-03-31 2010-08-11 河北省农林科学院旱作农业研究所 Preparation method of soil alkaline conditioner
CN102604573A (en) * 2012-01-12 2012-07-25 北华大学 E0-grade melamine modified urea-formaldehyde resin adhesive, and preparation method and application thereof
CN103833454A (en) * 2012-11-22 2014-06-04 苏斌 Green modified urea formaldehyde resin controlled-release coated fertilizer

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1854245A (en) * 2005-04-27 2006-11-01 王莹 Improvement of vegetative salt alkaline land soil
CN101012360A (en) * 2007-02-01 2007-08-08 厦门大学 Artwork with modified urea-formaldehyde resin as adhesive and preparing method thereof
CN101434495A (en) * 2007-11-13 2009-05-20 任兆磊 Phosphogypsum sustained-controlled compound fertilizer
CN101624436A (en) * 2009-08-03 2010-01-13 北京化工大学 Environment-protective urea-formaldehyde resin with novel structure as well as preparation method and application thereof
CN101798513A (en) * 2010-03-31 2010-08-11 河北省农林科学院旱作农业研究所 Preparation method of soil alkaline conditioner
CN102604573A (en) * 2012-01-12 2012-07-25 北华大学 E0-grade melamine modified urea-formaldehyde resin adhesive, and preparation method and application thereof
CN103833454A (en) * 2012-11-22 2014-06-04 苏斌 Green modified urea formaldehyde resin controlled-release coated fertilizer

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109496663A (en) * 2018-12-21 2019-03-22 北京碧青园生态环境科技有限公司 A kind of raising heavy salinized ground soil species tree planting technique and application

Similar Documents

Publication Publication Date Title
CN105103757A (en) Method for improving saline and alkaline land by using ardealite, tetrametilenpentaurea and biological bacteria
CN101967071B (en) Salt-restraining special fertilizer for seashore solonchak rapes and production process thereof
CN102219614B (en) Biological improving fertilizer special for saline-alkali soil and preparation method thereof
CN105103700A (en) Method for improving saline-alkaline land soil
CN107182509B (en) Method for promoting organization of saline-alkali barren soil by utilizing compound microorganisms
CN106068749A (en) A kind of saline and alkali land improvement method based on Rice Cropping
CN107384424A (en) A kind of alkaline soil improver
CN113684033A (en) Soda saline-alkali soil improving composition and preparation method and application thereof
CN105062499A (en) Three-step improvement method for saline alkali soil
CN105112067A (en) Saline-alkali soil modifier containing phosphogypsum and slow-release binder and use method of saline-alkali soil modifier
CN103782856A (en) Saline-alkali soil rice planting integration method
CN106748470A (en) It is a kind of to improve light, mixed type fertilizer of moderate saline-alkali soil and preparation method thereof
CN105123010A (en) Method for improving saline-alkali soil through ardealite, slow-release binder, straw and biological bacteria
CN106171408A (en) A kind of saline and alkali land improvement method based on wheat planting
CN103773380A (en) Method for preparing special modifier for saline-alkali soil cotton fields from cotton stalks
CN106171102A (en) A kind of saline and alkali land improvement method based on peanut cultivation
CN104629770A (en) Saline-alkali soil conditioner based on flue gas desulfurization gypsum
CN105144901A (en) Method for improving saline and alkaline land through ardealite, TMPU and EDTA
CN105123012A (en) Method for improving saline-alkali soil through ardealite, slow-release binder, EDTA, straw and biological bacteria
CN106146213A (en) A kind of salt-soda soil compounds modifying agent and preparation thereof and application process
CN105144900A (en) Method for improving saline and alkaline land through ardealite, dimethylolurea and EDTA
CN105112063A (en) Method for improving saline-alkali soil by using phosphogypsum, trimethylene tetraurea and biological bacteria
CN105131958A (en) Method for amending saline-alkaline land by using ardealite, methylene diurea, EDTA (Ethylene Diamine Tetraacetic Acid) and biological bacteria
CN105144898A (en) Method for improving saline and alkaline land through ardealite, DMTU, EDTA and biological bacteria
CN105123009A (en) Method for improving saline-alkali soil through ardealite, DMTU and EDTA

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication

Application publication date: 20151216

RJ01 Rejection of invention patent application after publication