CN112568232A - 一种竹类生长调节剂 - Google Patents

一种竹类生长调节剂 Download PDF

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CN112568232A
CN112568232A CN202011440572.3A CN202011440572A CN112568232A CN 112568232 A CN112568232 A CN 112568232A CN 202011440572 A CN202011440572 A CN 202011440572A CN 112568232 A CN112568232 A CN 112568232A
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谭宏超
谭汝强
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Chongqing Yuzhu Agricultural Technology Development Co ltd
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Abstract

本发明公开了一种竹类生长调节剂,包括以下组分(按照重量份数表示):氯吡脲22‑25份,复硝酚钠22‑25份,芸苔素15‑18份,油菜素内酯15‑18份,赤霉素12‑15份,萘乙酸12‑15份,多效唑8‑11份,有益微生物群8‑11份,有机肥35‑38份,土壤改良剂5‑8份,乙二胺四乙酸5‑8份,水380‑385份;本发明所有有效组份吸附到有机肥中,在将该生长调节剂施加到竹子根部后,通过有机肥能够防止有效组份流失,从而提高了有效组份的作用周期,并且通过氯吡脲和复硝酚钠配合,能够促进竹子细胞的原生质流动,提高竹子细胞活力,从而提高了竹子吸收该生长调节剂的效率。

Description

一种竹类生长调节剂
技术领域
本发明涉及生长调节剂技术领域,具体为一种竹类生长调节剂。
背景技术
植物生长调节剂,是人工合成的(或从微生物中提取的天然的),具有和天然植物激素相似生长发育调节作用的有机化合物。
植物激素是指植物体内天然存在的对植物生长、发育有显著作用的微量有机物质,也被称为植物天然激素或植物内源激素;它的存在可影响和有效调控植物的生长和发育,包括从细胞生长、分裂,到生根、发芽、开花、结实、成熟和脱落等一系列植物生命全过程;植物生长调节剂是人们在了解天然植物激素的结构和作用机制后,通过人工合成与植物激素具有类似生理和生物学效应的物质,在农业生产上使用,以有效调节作物的生育过程,达到稳产增产、改善品质、增强作物抗逆性等目的。
为了扩大竹子种植,会将竹子移栽种植,在竹子移栽种植后,竹子的生长速度会减慢,现有技术是通过施加肥料和生长剂用于促进竹子生长,但是竹子移栽后,竹子的活性较低,降低了竹子吸收肥料和生长剂的效率,无法达到促进竹子生长的目的,因此需要一种用于促进移栽竹子生长的生长调节剂;而且将生长剂施加到竹子的根部后,生长剂的有效成分很容易流失,降低了生长剂的功效。
发明内容
本发明的目的在于提供一种竹类生长调节剂,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种竹类生长调节剂,包括以下组分(按照重量份数表示):氯吡脲22-25份,复硝酚钠22-25份,芸苔素15-18份,油菜素内酯15-18份,赤霉素12-15份,萘乙酸12-15份,多效唑8-11份,有益微生物群8-11份,有机肥35-38份,土壤改良剂5-8份,乙二胺四乙酸5-8份,水380-385份。
其中,所述氯吡脲22份,复硝酚钠22份,芸苔素15份,油菜素内酯15份,赤霉素12份,萘乙酸12份,多效唑8份,有益微生物群8份,有机肥35份,土壤改良剂5份,乙二胺四乙酸5份,水382份。
其中,所述氯吡脲24份,复硝酚钠23份,芸苔素17份,油菜素内酯17份,赤霉素14份,萘乙酸14份,多效唑9份,有益微生物群9份,有机肥36份,土壤改良剂7份,乙二胺四乙酸7份,水385份。
其中,所述有机肥包括动物粪便和植物残体,所述动物粪便和植物残体重量比为1:1。
其中,所述土壤改良剂包括蛭石、膨润土和珍珠岩,所述蛭石、膨润土和珍珠岩的重量比为1:1:1。
其中,一种竹类生长调节剂,由以下步骤制作而成:
S1、按分量通过电子秤分别称取氯吡脲、复硝酚钠、芸苔素和油菜素内酯,然后将称取后的氯吡脲、复硝酚钠、芸苔素和油菜素内酯依次加入到反应釜内,在常温状态下,通过反应釜搅拌5~8分钟;
S2、然后按分量通过电子秤分别称取赤霉素、萘乙酸和多效唑,然后将称取后的赤霉素、萘乙酸和多效唑依次加入到反应釜内,在常温状态下,通过反应釜搅拌5~8分钟;
S3、按分量通过电子秤称取足量的水,然后将称取的水加入到反应釜内,并将反应釜的温度调节至55℃~60℃,接着通过反应釜搅拌12~15分钟;
S4、按分量通过电子秤分别称取有益微生物群、有机肥、土壤改良剂和乙二胺四乙酸,然后依次将称取后的有益微生物群、有机肥、土壤改良剂和乙二胺四乙酸加入到反应釜内,并保持反应釜的温度在55℃~60℃状态下,接着通过反应釜搅拌22~25分钟,待反应釜内部的混合物与水均匀混合后,将反应釜的温度调节至常温,并保持反应釜继续搅拌,待反应釜内部的混合液恢复至常温后,将反应釜内部的混合液取出,得到该竹类生长调节剂。
与现有技术相比,本发明的有益效果是:
本发明通过科学合理的配比,将氯吡脲、复硝酚钠、芸苔素、油菜素内酯、赤霉素、萘乙酸、多效唑、有益微生物群、有机肥、土壤改良剂、乙二胺四乙酸和水均匀混合待一起,制成该竹类生长调节剂;氯吡脲能够促进细胞分裂,促进细胞扩大伸长,从而提高竹子的生长速度;复硝酚钠与植物接触后能迅速渗透到植物体内,促进细胞的原生质流动,提高细胞活力,从而提高了竹子吸收该生长调节剂的效率;芸苔素能显著地增加竹子的营养体生长,能有效增加叶绿素含量,提高光合作用效率,促根壮苗、保花保果,提高竹子的抗寒、抗旱、抗盐碱等抗逆性,显著减少病害的发生;油菜素内酯能调节与生长有关的某些蛋白质的合成与代谢,实现对生长的控制;赤霉素有助于竹子长势;萘乙酸可以促进细胞分裂与扩大,诱导形成不定根,从而加速移栽竹子的生根速度;多效唑可以促进植物分蘖、增加植物抗逆性能;有益微生物群能在局部形成优势菌群,引导环境微生物群向良性方向活动,并抑制腐败菌、病源菌的增殖,从而起到改善环境、改良土壤、净化水质、消除臭味、抑制腐败的作用;有机肥能够为竹子生长提高养分;土壤改良剂用于改良土壤的物理、化学和生物性质,使其更适宜于植物生长;乙二胺四乙酸用作螯合剂,使所有组份能够与水形成稳定的水溶性配合物;在使用时,所有有效组份吸附到有机肥中,在将该生长调节剂施加到竹子根部后,通过有机肥能够防止有效组份流失,从而提高了有效组份的作用周期,并且通过氯吡脲和复硝酚钠配合,能够促进竹子细胞的原生质流动,提高竹子细胞活力,从而提高了竹子吸收该生长调节剂的效率。
具体实施方式
下面将对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
实施例1,本发明提供一种技术方案:一种竹类生长调节剂,包括以下组分(按照重量份数表示):氯吡脲22份,复硝酚钠22份,芸苔素15份,油菜素内酯15份,赤霉素12份,萘乙酸12份,多效唑8份,有益微生物群8份,有机肥35份,土壤改良剂5份,乙二胺四乙酸5份,水382份。
其中,有机肥包括动物粪便和植物残体,动物粪便和植物残体重量比为1:1。
其中,土壤改良剂包括蛭石、膨润土和珍珠岩,蛭石、膨润土和珍珠岩的重量比为1:1:1。
其中,一种竹类生长调节剂,由以下步骤制作而成:
S1、按分量通过电子秤分别称取氯吡脲、复硝酚钠、芸苔素和油菜素内酯,然后将称取后的氯吡脲、复硝酚钠、芸苔素和油菜素内酯依次加入到反应釜内,在常温状态下,通过反应釜搅拌5~8分钟;
S2、然后按分量通过电子秤分别称取赤霉素、萘乙酸和多效唑,然后将称取后的赤霉素、萘乙酸和多效唑依次加入到反应釜内,在常温状态下,通过反应釜搅拌5~8分钟;
S3、按分量通过电子秤称取足量的水,然后将称取的水加入到反应釜内,并将反应釜的温度调节至55℃~60℃,接着通过反应釜搅拌12~15分钟;
S4、按分量通过电子秤分别称取有益微生物群、有机肥、土壤改良剂和乙二胺四乙酸,然后依次将称取后的有益微生物群、有机肥、土壤改良剂和乙二胺四乙酸加入到反应釜内,并保持反应釜的温度在55℃~60℃状态下,接着通过反应釜搅拌22~25分钟,待反应釜内部的混合物与水均匀混合后,将反应釜的温度调节至常温,并保持反应釜继续搅拌,待反应釜内部的混合液恢复至常温后,将反应釜内部的混合液取出,得到该竹类生长调节剂。
实施例2,本发明提供一种技术方案:一种竹类生长调节剂,包括以下组分(按照重量份数表示):氯吡脲24份,复硝酚钠23份,芸苔素17份,油菜素内酯17份,赤霉素14份,萘乙酸14份,多效唑9份,有益微生物群9份,有机肥36份,土壤改良剂7份,乙二胺四乙酸7份,水385份。
其中,有机肥包括动物粪便和植物残体,动物粪便和植物残体重量比为1:1。
其中,土壤改良剂包括蛭石、膨润土和珍珠岩,蛭石、膨润土和珍珠岩的重量比为1:1:1。
其中,一种竹类生长调节剂,由以下步骤制作而成:
S1、按分量通过电子秤分别称取氯吡脲、复硝酚钠、芸苔素和油菜素内酯,然后将称取后的氯吡脲、复硝酚钠、芸苔素和油菜素内酯依次加入到反应釜内,在常温状态下,通过反应釜搅拌5~8分钟;
S2、然后按分量通过电子秤分别称取赤霉素、萘乙酸和多效唑,然后将称取后的赤霉素、萘乙酸和多效唑依次加入到反应釜内,在常温状态下,通过反应釜搅拌5~8分钟;
S3、按分量通过电子秤称取足量的水,然后将称取的水加入到反应釜内,并将反应釜的温度调节至55℃~60℃,接着通过反应釜搅拌12~15分钟;
S4、按分量通过电子秤分别称取有益微生物群、有机肥、土壤改良剂和乙二胺四乙酸,然后依次将称取后的有益微生物群、有机肥、土壤改良剂和乙二胺四乙酸加入到反应釜内,并保持反应釜的温度在55℃~60℃状态下,接着通过反应釜搅拌22~25分钟,待反应釜内部的混合物与水均匀混合后,将反应釜的温度调节至常温,并保持反应釜继续搅拌,待反应釜内部的混合液恢复至常温后,将反应釜内部的混合液取出,得到该竹类生长调节剂。
综上所述:通过科学合理的配比,将氯吡脲、复硝酚钠、芸苔素、油菜素内酯、赤霉素、萘乙酸、多效唑、有益微生物群、有机肥、土壤改良剂、乙二胺四乙酸和水均匀混合待一起,制成该竹类生长调节剂;氯吡脲能够促进细胞分裂,促进细胞扩大伸长,从而提高竹子的生长速度;复硝酚钠与植物接触后能迅速渗透到植物体内,促进细胞的原生质流动,提高细胞活力,从而提高了竹子吸收该生长调节剂的效率;芸苔素能显著地增加竹子的营养体生长,能有效增加叶绿素含量,提高光合作用效率,促根壮苗、保花保果,提高竹子的抗寒、抗旱、抗盐碱等抗逆性,显著减少病害的发生;油菜素内酯能调节与生长有关的某些蛋白质的合成与代谢,实现对生长的控制;赤霉素有助于竹子长势;萘乙酸可以促进细胞分裂与扩大,诱导形成不定根,从而加速移栽竹子的生根速度;多效唑可以促进植物分蘖、增加植物抗逆性能;有益微生物群能在局部形成优势菌群,引导环境微生物群向良性方向活动,并抑制腐败菌、病源菌的增殖,从而起到改善环境、改良土壤、净化水质、消除臭味、抑制腐败的作用;有机肥能够为竹子生长提高养分;土壤改良剂用于改良土壤的物理、化学和生物性质,使其更适宜于植物生长;乙二胺四乙酸用作螯合剂,使所有组份能够与水形成稳定的水溶性配合物;在使用时,所有有效组份吸附到有机肥中,在将该生长调节剂施加到竹子根部后,通过有机肥能够防止有效组份流失,从而提高了有效组份的作用周期,并且通过氯吡脲和复硝酚钠配合,能够促进竹子细胞的原生质流动,提高竹子细胞活力,从而提高了竹子吸收该生长调节剂的效率。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (6)

1.一种竹类生长调节剂,其特征在于,包括以下组分(按照重量份数表示):氯吡脲22-25份,复硝酚钠22-25份,芸苔素15-18份,油菜素内酯15-18份,赤霉素12-15份,萘乙酸12-15份,多效唑8-11份,有益微生物群8-11份,有机肥35-38份,土壤改良剂5-8份,乙二胺四乙酸5-8份,水380-385份。
2.根据权利要求1所述的一种竹类生长调节剂,其特征在于:所述氯吡脲22份,复硝酚钠22份,芸苔素15份,油菜素内酯15份,赤霉素12份,萘乙酸12份,多效唑8份,有益微生物群8份,有机肥35份,土壤改良剂5份,乙二胺四乙酸5份,水382份。
3.根据权利要求1所述的一种竹类生长调节剂,其特征在于:所述氯吡脲24份,复硝酚钠23份,芸苔素17份,油菜素内酯17份,赤霉素14份,萘乙酸14份,多效唑9份,有益微生物群9份,有机肥36份,土壤改良剂7份,乙二胺四乙酸7份,水385份。
4.根据权利要求1所述的一种竹类生长调节剂,其特征在于:所述有机肥包括动物粪便和植物残体,所述动物粪便和植物残体重量比为1:1。
5.根据权利要求1所述的一种竹类生长调节剂,其特征在于:所述土壤改良剂包括蛭石、膨润土和珍珠岩,所述蛭石、膨润土和珍珠岩的重量比为1:1:1。
6.根据权利要求1-5中任意所述的一种竹类生长调节剂,其特征在于:由以下步骤制作而成:
S1、按分量通过电子秤分别称取氯吡脲、复硝酚钠、芸苔素和油菜素内酯,然后将称取后的氯吡脲、复硝酚钠、芸苔素和油菜素内酯依次加入到反应釜内,在常温状态下,通过反应釜搅拌5~8分钟;
S2、然后按分量通过电子秤分别称取赤霉素、萘乙酸和多效唑,然后将称取后的赤霉素、萘乙酸和多效唑依次加入到反应釜内,在常温状态下,通过反应釜搅拌5~8分钟;
S3、按分量通过电子秤称取足量的水,然后将称取的水加入到反应釜内,并将反应釜的温度调节至55℃~60℃,接着通过反应釜搅拌12~15分钟;
S4、按分量通过电子秤分别称取有益微生物群、有机肥、土壤改良剂和乙二胺四乙酸,然后依次将称取后的有益微生物群、有机肥、土壤改良剂和乙二胺四乙酸加入到反应釜内,并保持反应釜的温度在55℃~60℃状态下,接着通过反应釜搅拌22~25分钟,待反应釜内部的混合物与水均匀混合后,将反应釜的温度调节至常温,并保持反应釜继续搅拌,待反应釜内部的混合液恢复至常温后,将反应釜内部的混合液取出,得到该竹类生长调节剂。
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