WO2021103940A1 - 一种高吸水性中微量元素混合剂及应用 - Google Patents

一种高吸水性中微量元素混合剂及应用 Download PDF

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WO2021103940A1
WO2021103940A1 PCT/CN2020/125779 CN2020125779W WO2021103940A1 WO 2021103940 A1 WO2021103940 A1 WO 2021103940A1 CN 2020125779 W CN2020125779 W CN 2020125779W WO 2021103940 A1 WO2021103940 A1 WO 2021103940A1
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medium
trace element
element mixture
fertilizer
inorganic
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PCT/CN2020/125779
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English (en)
French (fr)
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王仁宗
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湖北富邦科技股份有限公司
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Priority to MA56085A priority Critical patent/MA56085B1/fr
Publication of WO2021103940A1 publication Critical patent/WO2021103940A1/zh

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    • CCHEMISTRY; METALLURGY
    • C05FERTILISERS; MANUFACTURE THEREOF
    • C05BPHOSPHATIC FERTILISERS
    • C05B7/00Fertilisers based essentially on alkali or ammonium orthophosphates
    • CCHEMISTRY; METALLURGY
    • C05FERTILISERS; MANUFACTURE THEREOF
    • C05BPHOSPHATIC FERTILISERS
    • C05B13/00Fertilisers produced by pyrogenic processes from phosphatic materials
    • C05B13/02Fertilisers produced by pyrogenic processes from phosphatic materials from rock phosphates
    • CCHEMISTRY; METALLURGY
    • C05FERTILISERS; MANUFACTURE THEREOF
    • C05DINORGANIC FERTILISERS NOT COVERED BY SUBCLASSES C05B, C05C; FERTILISERS PRODUCING CARBON DIOXIDE
    • C05D5/00Fertilisers containing magnesium

Definitions

  • the invention relates to the technical field of new type fertilizers, in particular to a super absorbent medium and trace element mixture and its application.
  • the common medium and trace elements are sulfur, calcium, magnesium, silicon, iron, manganese, copper, zinc, boron, molybdenum and other elements.
  • nitrogen, phosphorus, potassium and other elements although the medium and trace elements are essential nutrients for crops, their dosage It is generally less, and it is easily fixed by the soil after application and loses its fertilizer effect.
  • chelated trace element fertilizers appeared on the market, which can greatly increase the fertilizer utilization rate.
  • due to its high cost its popularization and use are largely affected.
  • Granular sulfur fertilizer granulation and molten sulfur coating are also restricted due to the dispersion of added trace elements in molten sulfur.
  • the purpose of the present invention is to overcome the above-mentioned problems in the prior art and provide a medium and trace element mixture and its application.
  • the present invention can quickly upgrade conventional fertilizers to new fertilizers containing one or more medium and trace elements, or prepare medium and trace elements. Elemental granular fertilizer.
  • the invention quickly and flexibly adds medium and trace elements; solves the problem that the pure medium and trace element granules are difficult to uniformly disperse in the soil and cause crop poisoning; by adding a dispersant, the problem of dispersing medium and trace elements in molten sulfur is accelerated, and The disintegration of the film layer solves the problem that the particle size of the massive sulfur is too large to be absorbed by crops; the medium and trace element film formed by this method is firmly combined with the fertilizer particles and is not easy to fall off.
  • the surface of the coated fertilizer prepared by this scheme is a layer of trace element film with sulfur as the carrier.
  • the chemical inertness of sulfur makes the coated fertilizer not easy to absorb moisture and agglomerate, so it can reduce or even eliminate the use of fertilizer to prevent agglomeration To reduce the cost of fertilizer production.
  • a super absorbent medium and trace element mixture which is composed of medium and trace elements and a dispersant.
  • Each component is calculated by weight percentage. It is characterized in that: the sulfur in the mixture accounts for 50%-95%, and the dispersant accounts for 0.5%-20. %, the medium and trace elements other than sulfur account for 0.1%-45%, and the preparation method is as follows: adding medium and trace elements and a dispersant to the liquid sulfur and mixing them uniformly. It can be applied to the preparation of medium and trace element granular fertilizers and fertilizer coating.
  • the middle and trace elements are one or several mixtures of simple substances, oxides, hydroxides or compounds containing sulfur, calcium, magnesium, silicon, iron, manganese, copper, zinc, boron, and molybdenum.
  • the dispersant is an inorganic-organic modified water absorbing material, an inorganic water absorbing material, and an inorganic modified water absorbing material.
  • the inorganic-organic modified water-absorbing material is kaolin-sodium polyacrylate super absorbent composite resin, montmorillonite-polyacrylamide super absorbent composite resin, mica-sodium polyacrylate super absorbent composite resin or sepiolite- Polyacrylic acid super absorbent composite resin.
  • the said inorganic water-absorbing material is kaolin, montmorillonite, mica and/or sepiolite.
  • the inorganic modified water-absorbing material is inorganic modified kaolin, inorganic modified montmorillonite, inorganic modified mica, inorganic modified sepiolite or super magnesium carbonate.
  • An application of a super absorbent medium and trace element mixture is characterized in that the super absorbent medium and trace element mixture is granulated in a steel belt granulator or a high-tower granulation device to obtain a granular trace element mixture.
  • the superabsorbent medium and trace element mixture is used for the preparation of coated fertilizers.
  • the above medium and trace element mixtures are used to account for the particles.
  • 5-12% of the fertilizer weight is sprayed on the surface of the granular fertilizer heated to a certain temperature and solidified after cooling to form a medium and trace element film on the surface of the fertilizer.
  • the granular fertilizer is calcium magnesium phosphate fertilizer, compound fertilizer, compound fertilizer, urea, granular potassium sulfate, granular potassium chloride, superphosphate, double superphosphate, monoammonium phosphate, diammonium phosphate or calcium ammonium nitrate.
  • the stated temperature means that the granular fertilizer needs to be preheated to 70-100°C in the drum, disc or fluidized bed equipment.
  • the advantages of the present invention are: 1.
  • the medium and trace element mixture is uniform, stable and easy to transport; 2. It can be customized according to customer needs; 3.
  • the medium and trace elements can be added quickly and flexibly. 4.
  • the mixture of trace elements in the granule and the coated fertilizer have good disintegration.
  • the composition of the mixture is as follows: 95% sulfur, 0.1% zinc oxide and 4.9% kaolin-sodium polyacrylate super absorbent composite resin.
  • the sulfur is heated to a liquid state, and zinc oxide, kaolin-sodium polyacrylate super absorbent composite resin are added to the liquid sulfur and mixed uniformly to prepare a medium and trace element mixture.
  • the coated fertilizer coated with the medium and trace element mixture does not require additional anti-caking agents, moisture-proof agents, and anti-whitening agents to have anti-caking, moisture-proof and anti-whitening effects, and the coating layer does not affect the nutrients of the coated fertilizer Normal release.
  • composition of the mixture is as follows: 50% sulfur, 45% magnesium oxide and 5% montmorillonite.
  • the sulfur is heated to a liquid state, and magnesium oxide and montmorillonite are added to the liquid sulfur and mixed uniformly to prepare a medium and trace element mixture.
  • composition of the mixture is as follows: 70% sulfur, 10% iron trioxide, 15% inorganic modified mica and 5% inorganic modified sepiolite.
  • the sulfur is heated to a liquid state, and ferric oxide, inorganic modified mica and inorganic modified sepiolite are added to the liquid sulfur and mixed uniformly to prepare a medium and trace element mixture.
  • the composition of the mixture is as follows: 80% sulfur, 19.5% magnesium hydroxide and 0.5% super magnesium carbonate.
  • the sulfur is heated to a liquid state, and magnesium hydroxide and super magnesium carbonate are added to the liquid sulfur and mixed uniformly to prepare a medium and trace element mixture.

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  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Inorganic Chemistry (AREA)
  • Fertilizers (AREA)

Abstract

本发明涉及一种高吸水性中微量元素混合剂及应用。中微量元素混合剂中硫磺占50%-95%,分散剂占0.5%-20%,硫之外的中微量元素占0.1%-45%,制备方法为:在液态硫磺中添加中微量元素、分散剂并混合均匀制得。可应用于颗粒中微量元素混合剂的制备及进行颗粒肥料包膜。本发明有以下优点:该中微量元素混合剂均匀、稳定,便于输送,并可根据客户需求进行定制,能快速、灵活添加中微量元素。

Description

一种高吸水性中微量元素混合剂及应用 技术领域
本发明涉及新型肥料技术领域,具体涉及一种高吸水性中微量元素混合剂及应用。
背景技术
中国农业经历了连续多年的快速发展,取得了举世瞩目的成就。与此同时,粗放的增长模式带来诸多问题:资源快速消耗,环境污染严重,土地资源功能退化等。高养分速效肥料利用率极其低下,肥料流失造成的农业面源污染非常严重。随着我国现代农业技术和农业生产结构的改革与完善,适应我国农业生产需求、环境友好的肥料将会成为我国肥料的主体,肥料产业的发展也会向着肥料养分高效化、肥料施用简便化、肥料成本经济化、环境影响生态化、作物养分平衡化等方向发展。平衡施肥是实现农业高质量发展的关键,作物所需的养分除了氮、磷、钾等元素以外,还有中微量元素和有机肥等,中微量元素对作物的产品和品质都有极大的影响。
近年来,国内***绕中微量元素肥料有越来越多的研究和应用,极大推动了肥料行业的进步。常见的中微量元素有硫、钙、镁、硅、铁、锰、铜、锌、硼、钼等元素,不同于氮磷钾等元素,中微量元素虽然是作物必需的营养元素,但其用量一般比较少,且施用后极易被土壤固定从而失去肥效。为了解决微量元素被固定的问题,市场上出现了螯合态的微量元素肥料,可极大提升肥料利用率,但因其成本偏高,很大程度上影响其推广使用。
颗粒硫肥造粒以及熔融硫包衣,还因所添加中微量元素在熔融硫中分散问题,而受到限制。
中微量营养元素对作物的生长发育具有不可替代的重要作用,因此,如何简单、快捷、高效率、安全地实现中微量元素的添加具有十分重要的意义。在常规肥料的基础上,最大化中微量营养元素的价值和使用效率,以达到中微量元素和大量元素的协同和平衡。
发明内容
本发明目的为了克服上述现有技术存在的问题,提供一种中微量元素混合剂及应用, 本发明可以快速将常规肥料升级为含一种或多种中微量元素的新型肥料,或制备中微量元素颗粒肥。本发明快速、灵活添加中微量元素;解决纯中微量元素颗粒剂在土壤中难以均匀分散造成作物中毒的问题;以添加分散剂的方式,加快中微量无素在熔融硫中的分散问题,及膜层的崩解问题,解决块状硫磺粒径太大,难以被作物吸收的问题;此方式形成的中微量元素膜与肥料颗粒结合牢固,不易脱落。
采用本方案制备的包膜肥料表面是一层硫为载体的微量元素膜层,硫的化学惰性,使得包膜后的肥料不易吸潮,不易结块,因此可以减少甚至不使用肥料防结块剂,从而降低肥料生产成本。
本发明的具体实现方式如下:
一种高吸水性中微量元素混合剂,由中微量元素和分散剂组成,各组分按重量百分比计,其特征在于:混合剂中硫磺占50%-95%,分散剂占0.5%-20%,硫之外的中微量元素占0.1%-45%,制备方法为:在液态硫磺中添加中微量元素、分散剂并混合均匀制得。可应用于中微量元素颗粒肥料的制备及进行肥料包膜。
所述中微量元素为含有硫、钙、镁、硅、铁、锰、铜、锌、硼、钼元素的单质、氧化物、氢氧化物或化合物中的一种或几种混合物。
所述的分散剂为无机-有机改性吸水材料、无机吸水材料、无机改性吸水材料。
所述的无机-有机改性吸水材料为高岭土-聚丙烯酸钠高吸水性复合树脂、蒙脱土-聚丙烯酰胺高吸水性复合树脂、云母-聚丙烯酸钠高吸水性复合树脂或海泡石-聚丙烯酸高吸水性复合树脂。
所述的无机吸水材料为高岭土、蒙脱土、云母和/或海泡石。
所述的无机改性吸水材料为无机改性高岭土、无机改性蒙脱土、无机改性云母、无机改性海泡石或超级碳酸镁。
一种高吸水性中微量元素混合剂的应用,其特征在于:将高吸水性中微量元素混合剂在钢带造粒机或高塔造粒设备进行造粒制得颗粒中微量元素混合剂。
将高吸水性中微量元素混合剂用于包膜肥料的制备,通过将常规颗粒肥料置于具有加热功能的包裹滚筒、圆盘或流化床设备中,将上述的中微量元素混合剂占颗粒肥料重量5-12%喷涂在加热到一定温度的颗粒肥料表面,经冷却固化,在肥料表面形成一层中微量元素膜。
所述颗粒肥料为钙镁磷肥、复合肥、复混肥、尿素、颗粒硫酸钾、颗粒氯化钾、过磷酸钙、重过磷酸钙、磷酸一铵、磷酸二铵或硝酸铵钙。
所述的一定温度是指颗粒肥料在滚筒、圆盘或流化床设备中需预热至70-100℃。
本发明的优点在于:1、该中微量元素混合剂均匀、稳定,便于输送;2、可根据客户需求进行定制;3、能快速、灵活添加中微量元素。4、颗粒中微量元素混合剂和包膜肥料崩解性好。
具体实施方式
下面结合具体实施例对本发明作进一步说明,包括但不仅限于以下案例,以下实施例各物质按重量百分计,各原料均直接购买得到。
实施例一
(1)制备高吸水性中微量元素混合剂,混合剂组成如下:95%硫、0.1%氧化锌和4.9%高岭土-聚丙烯酸钠高吸水性复合树脂。将硫磺加热至液态,在液态硫磺中添加氧化锌、高岭土-聚丙烯酸钠高吸水性复合树脂并混合均匀制得中微量元素混合剂。
(2)制备包裹中微量元素的新型肥料。在包裹滚筒中加入磷酸二铵(MAP:10-50-0),预热至100℃,中微量元素混合剂添加比例:1吨磷酸一铵包裹100kg中微量元素混合剂,包裹后的颗粒肥料冷却后进行包装。
(3)最终制备得到的新型中微量元素肥料养分如下:
  N P 2O 5 单质S 水难溶Zn
养分组成 9.1% 45.4% 8.6% 0.007%
包膜了中微量元素混合剂后的包膜肥料不需要额外添加防结块剂、防潮剂、防泛白剂即具有防结防潮防泛白效果,且包膜层不影响包膜肥料养分的正常释放。
实施例二
(1)制备高吸水性中微量元素混合剂,混合剂组成如下:50%硫、45%氧化镁和5%蒙脱土。将硫磺加热至液态,在液态硫磺中添加氧化镁、蒙脱土并混合均匀制得中微量元素混合剂。
(2)制备颗粒中微量元素混合剂,将中微量元素混合剂通过钢带造粒机进行造粒, 制备颗粒中微量元素混合剂。
(3)最终制备的颗粒中微量元素混合剂养分如下:
  单质S 水难溶Mg
养分组成 50% 23%
实施例三
(1)制备高吸水性中微量元素混合剂。混合剂组成如下:70%硫、10%三氧化二铁、15%无机改性云母和5%无机改性海泡石。将硫磺加热至液态,在液态硫磺中添加三氧化二铁、无机改性云母和无机改性海泡石并混合均匀制得中微量元素混合剂。
(2)制备包裹中微量元素的新型肥料。在包裹滚筒中加入颗粒钙镁磷肥,预热至80℃。中微量元素混合剂添加比例:1吨颗粒钙镁磷肥包裹100kg中微量元素混合剂,包裹后的颗粒肥料冷却后进行包装。
(3)最终制备得到的新型中微量元素肥料养分如下:
  P 2O 5 Ca Mg Si 单质S 水难溶Fe
养分组成 9.8% 26.3% 5.9% 7.6% 6.3% 0.6%
实施例四
(1)制备高吸水性中微量元素混合剂。混合剂组成如下:80%硫、19.5%氢氧化镁和0.5%超级碳酸镁。将硫磺加热至液态,在液态硫磺中添加氢氧化镁、超级碳酸镁并混合均匀制得中微量元素混合剂。
(2)制备包裹中微量元素的新型肥料。在包裹滚筒中加入复合肥(15-15-15),预热至70℃。中微量元素混合剂添加比例:1吨复合肥包裹120kg中微量元素混合剂,包裹后的颗粒肥料冷却后进行包装。
(3)最终制备得到的新型中微量元素肥料养分如下:
  N P 2O 5 K 2O 单质S Mg
养分组成 13.4% 13.4% 13.4% 8.5% 0.86%

Claims (10)

  1. 一种高吸水性中微量元素混合剂,由中微量元素和分散剂组成,各组分按重量百分比计,其特征在于:混合剂中硫磺占50%-95%,分散剂占0.5%-20%,硫之外的中微量元素占0.1%-45%,制备方法为:在液态硫磺中添加中微量元素、分散剂并混合均匀制得。
  2. 如权利要求1所述的高吸水性中微量元素混合剂,其特征在于:所述中微量元素为含有硫、钙、镁、硅、铁、锰、铜、锌、硼、钼元素的单质、氧化物、氢氧化物或化合物中的一种或几种混合物。
  3. 如权利要求1所述的高吸水性中微量元素混合剂,其特征在于:所述的分散剂为无机-有机改性吸水材料、无机吸水材料、无机改性吸水材料。
  4. 如权利要求3所述的高吸水性中微量元素混合剂,其特征在于:所述的无机-有机改性吸水材料为高岭土-聚丙烯酸钠高吸水性复合树脂、蒙脱土-聚丙烯酰胺高吸水性复合树脂、云母-聚丙烯酸钠高吸水性复合树脂或海泡石-聚丙烯酸高吸水性复合树脂。
  5. 如权利要求3所述的高吸水性中微量元素混合剂,其特征在于:所述的无机吸水材料为高岭土、蒙脱土、云母或海泡石。
  6. 如权利要求3所述的高吸水性中微量元素混合剂,其特征在于:所述的无机改性吸水材料为无机改性高岭土、无机改性蒙脱土、无机改性云母、无机改性海泡石和/或超级碳酸镁。
  7. 如权利要求1所述的一种高吸水性中微量元素混合剂的应用,其特征在于:将高吸水性中微量元素混合剂在钢带造粒机或高塔造粒设备进行造粒制得颗粒中微量元素混合剂。
  8. 如权利要求1-6之一所述的一种高吸水性中微量元素混合剂的应用,其特征在于:将高吸水性中微量元素混合剂用于包膜肥料的制备,通过将常规颗粒肥料置于具有加热功能的包裹滚筒、圆盘或流化床设备中,将所述的中微量元素混合剂占颗粒肥料重量5-12%喷涂在加热到一定温度的颗粒肥料表面,经冷却固化,在肥料表面形成一层中微量元素膜。
  9. 如权利要求8所述的一种高吸水性中微量元素混合剂的应用,其特征在于:所述颗粒肥料为钙镁磷肥、复合肥、复混肥、尿素、颗粒硫酸钾、颗粒氯化钾、过磷酸钙、重过磷酸钙、磷酸一铵、磷酸二铵或硝酸铵钙。
  10. 如权利要求8所述的一种高吸水性中微量元素混合剂的应用,其特征在于:所述的一定温度是指颗粒肥料在滚筒、圆盘或流化床设备中需预热至70-100℃。
PCT/CN2020/125779 2019-11-27 2020-11-02 一种高吸水性中微量元素混合剂及应用 WO2021103940A1 (zh)

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