CN115517271B - 一种中药源植物生长调节剂及其制备方法 - Google Patents
一种中药源植物生长调节剂及其制备方法 Download PDFInfo
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Classifications
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
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- A01N25/00—Biocides, pest repellants or attractants, or plant growth regulators, characterised by their forms, or by their non-active ingredients or by their methods of application, e.g. seed treatment or sequential application; Substances for reducing the noxious effect of the active ingredients to organisms other than pests
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- A01N65/00—Biocides, pest repellants or attractants, or plant growth regulators containing material from algae, lichens, bryophyta, multi-cellular fungi or plants, or extracts thereof
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- A01N65/08—Magnoliopsida [dicotyledons]
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- C—CHEMISTRY; METALLURGY
- C09—DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
- C09K—MATERIALS FOR MISCELLANEOUS APPLICATIONS, NOT PROVIDED FOR ELSEWHERE
- C09K17/00—Soil-conditioning materials or soil-stabilising materials
- C09K17/14—Soil-conditioning materials or soil-stabilising materials containing organic compounds only
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- C—CHEMISTRY; METALLURGY
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Abstract
本发明公开了一种中药源植物生长调节剂,原料包括熏倒牛、苦豆子、石菖蒲、红蓼、酸模、藏茵陈、肉桂、陈皮、甘草、干姜、硅藻土粉、膨润土粉和蛭石粉;制备方法包括将具有挥发性有效成分的中药粉碎成细粉,再将含有水溶性有效成分的中药进行水提取并浓缩后,加入细粉,再加入硅藻土粉、膨润土粉和蛭石粉得到混合粉,制粒。本发明的中药源植物生长调节剂具有抑制土壤病菌和虫害的功效,能够增强农作物抗病性和免疫力,具有改善作物根系的生态环境,促进根系的生长,增强根系活力的作用,能够疏松土壤、改善生态环境,具有促进肥料有效性和提高肥料利用率的作用,可有效降解农药残留和大分子有机物,提高农作物的产量和质量。
Description
技术领域
本发明属于植物生长调节剂技术领域,具体涉及一种中药源植物生长调节剂及其制备方法。
背景技术
在现代农业生产中,化肥发挥着越来越重要的作用。化肥已经和继续给我们的生存环境带来诸多不良后果,如土壤板结、水质污染、农产品污染、温室效应等问题。造成肥料利用率低的主要原因包括农田过量施肥,施肥结构不平衡,重化肥、轻有机肥,重大量元素肥料、轻中微量元素肥料,重氮肥、轻磷钾肥的“三重三轻”问题还比较突出。
忽视土壤和环境养分的利用,作物产量潜能未能充分发挥以及养分损失未能得到有效阻控等,因此提高和充分发挥作物产量潜能是有效提高肥料利用率的经济办法,既提高了肥料利用率,减少经济损失,降低环境风险,又增加了农作物产量,提高收益。因此,提高化肥利用率是当前我国农业发展中迫切需要重点研究的课题。
植物生长调节剂是肥料行业的新生事物,跟高塔造粒、缓控释肥等新型肥料一样,也是为了顺应国家提高肥料利用率、发展现代农业的要求应运而生的。植物生长调节剂含有多种中草药成分,不能直接为作物提供养分,但能提高肥料的利用率:一是作用于肥料,促进作物吸收;二是作用于环境,改良土壤结构,促进作物对肥料的吸收;三是作用于植物,增强作物对肥料的吸收能力。
发明内容
本发明的目的是提供一种中药源植物生长调节剂及其制备方法。
为了达到上述目的,本发明采用的技术方案为:
一种中药源植物生长调节剂,由下列重量份配比的原料制成:熏倒牛5-50份、苦豆子5-45份、石菖蒲3-40份、红蓼3-35份、酸模3-30份、藏茵陈3-30份、肉桂2-25份、陈皮2-25份、甘草2-20份、干姜2-35份、硅藻土粉10-50份、膨润土粉5-40份和蛭石粉5-30份。
一种中药源植物生长调节剂的制备方法,包括如下步骤:
步骤一、将熏倒牛、石菖蒲、肉桂、陈皮和干姜混合后粉碎,过筛,收集中药粉末;将熏倒牛、石菖蒲、肉桂、陈皮、干姜含有会发性有效成分的中药粉碎成细粉,以保证挥发性有效成分不受损失,更好的发挥增效作用;
步骤二、将苦豆子、红蓼、酸模、藏茵陈和甘草混合后置于提取罐中,加去离子水煎煮提取,煎煮液离心滤过;将苦豆子、酸模、藏茵陈、红蓼、甘草含有水溶性有效成分的中药水煎煮提取,以提高增效剂中水溶性有效成分的浓度,有利于增强增效作用;
步骤三、将步骤二得到的滤液减压浓缩得到浓缩液,将浓缩液与步骤一得到的中药粉末混匀后,干燥,粉碎,过筛,得到细粉;
步骤四、将步骤三得到的细粉置混合机中,依次加入硅藻土粉、膨润土粉和蛭石粉,充分混匀得到混合粉;
步骤五、将步骤四得到的混合粉置于旋转式制粒机中,喷入去离子水,旋转制得颗粒,将颗粒烘干,即制得植物源肥料增效剂。
为了进一步实现本发明,步骤二中所述加去离子水煎煮提取的次数为1-5次,每次煎煮的时间为0.5-5h,每次加入去离子水的量为苦豆子、红蓼、酸模、藏茵陈和甘草总质量分数的3-30倍。在不影响增效剂功效的前提下,为使增效剂对中药的载药量最大化,将清热解毒中药水煎提取,为使增效剂加工生产成本最低化,将清热解毒中药至少水煎1次,每次至少0.5小时,加入去离子水的质量分数尽可能的最大。
为了进一步实现本发明,步骤三中所述干燥的温度不大于60℃。
为了进一步实现本发明,步骤五中所述喷入去离子水的量为混合粉质量分数的1-5倍。
为了进一步实现本发明,步骤二中所述步骤一和步骤三中所述过筛的目数不小于80目。在尽量保证中药的挥发性成分不受损失的前提下,将芳香燥湿的中药共同粉碎成细粉,其细度要求不得小于80目。
为了进一步实现本发明,步骤五中所述颗粒的粒度为1.0mm-4.75mm。
本发明相较于现有技术的有益效果为:
本发明将中草药苦豆子、熏倒牛、石菖蒲、红蓼、酸模、藏茵陈、肉桂、陈皮、甘草、干姜与矿物质硅藻土粉、膨润土粉、蛭石粉配伍组成的复合物,虽无法代替氮、磷、钾肥料的使用,但却可以通过作用于肥料、土壤、作物,促进作物对营养元素的吸收,进而间接提高肥料利用率,最后达到作物增产的效果。
本发明的中药源植物生长调节剂具有抑制土壤病菌和虫害的功效,能够增强农作物抗病性和免疫力,具有改善作物根系的生态环境,促进根系的生长,增强根系活力的作用,能够疏松土壤、改善生态环境,具有促进肥料有效性和提高肥料利用率的作用,可有效降解农药残留和大分子有机物,提高农作物的产量和质量。
复方中熏倒牛解热、抑菌作,苦豆子清热燥湿、止痛、杀虫,石菖蒲理气活血、祛湿、散风开窍,红蓼解毒消肿、杀虫止痒,酸模清热解毒、利湿止痒;藏茵陈清热解毒、除湿,肉桂散寒止痛、温通经脉,陈皮理气健脾、燥湿化痰,甘草清热解毒,干姜温中散寒、回阳通脉、温肺化饮。上述复方药物具有清热解毒、除湿杀虫作用,配伍后具有清除土壤中的有害物质,激发植物生长效能的作用。硅藻土粉、膨润土粉、蛭石粉均为辅料,有助于颗粒成型。
具体实施方式
下面结合具体实施方式对本发明做进一步说明。
一种中药源植物生长调节剂,由下列重量份配比的原料制成:熏倒牛5-50份、苦豆子5-45份、石菖蒲3-40份、红蓼3-35份、酸模3-30份、藏茵陈3-30份、肉桂2-25份、陈皮2-25份、甘草2-20份、干姜2-35份、硅藻土粉10-50份、膨润土粉5-40份和蛭石粉5-30份。
一种中药源植物生长调节剂的制备方法,包括如下步骤:
步骤一、将熏倒牛、石菖蒲、肉桂、陈皮和干姜混合后粉碎,过筛,不小于80目,收集中药粉末;
步骤二、将苦豆子、红蓼、酸模、藏茵陈和甘草混合后置于提取罐中,加1-5次去离子水煎煮提取,每次加入苦豆子、红蓼、酸模、藏茵陈和甘草总质量分数3-30倍的去离子水,每次煎煮的时间为0.5-5h,煎煮液离心滤过;
步骤三、将步骤二得到的滤液减压浓缩得到浓缩液,将浓缩液与步骤一得到的中药粉末混匀后,60℃以下干燥,粉碎,过筛,过筛的目数不小于80目,得到细粉;
步骤四、将步骤三得到的细粉置混合机中,依次加入硅藻土粉、膨润土粉和蛭石粉,充分混匀得到混合粉;
步骤五、将步骤四得到的混合粉置于旋转式制粒机中,喷入混合粉质量分数1-5倍量的去离子水,旋转制得粒度为1.0mm-4.75mm的颗粒,将颗粒烘干,即制得中药源植物生长调节剂。
实施例1:
一种中药源植物生长调节剂,由下列重量份配比的原料制成:熏倒牛28kg、苦豆子32kg、石菖蒲25kg、红蓼20kg、酸模27kg、藏茵陈15kg、肉桂19kg、陈皮15kg、甘草10kg、干姜18kg、硅藻土粉23kg、膨润土粉15kg和蛭石粉18kg。
一种中药源植物生长调节剂的制备方法,包括如下步骤:
步骤一、将熏倒牛、石菖蒲、肉桂、陈皮和干姜混合后粉碎,过100目筛,收集中药粉末;
步骤二、将苦豆子、红蓼、酸模、藏茵陈和甘草混合后置于提取罐中,加入苦豆子、红蓼、酸模、藏茵陈和甘草总质量分数30倍的去离子水,煎煮提取1次,煎煮5h,煎煮液离心滤过;
步骤三、将步骤二得到的滤液减压浓缩得到浓缩液,将浓缩液与步骤一得到的中药粉末混匀后,60℃下干燥,粉碎,过100目筛,得到细粉;
步骤四、将步骤三得到的细粉置混合机中,依次加入硅藻土粉、膨润土粉和蛭石粉,充分混匀的到混合粉;
步骤五、将步骤四得到的混合粉置于旋转式制粒机中,喷入混合粉质量分数3倍量的去离子水,旋转制得粒度为1.0mm-4.75mm的颗粒,将颗粒烘干,即制得中药源植物生长调节剂。
实施例2:
一种中药源植物生长调节剂,由下列重量份配比的原料制成:熏倒牛32kg、苦豆子27kg、石菖蒲20kg、红蓼25kg、酸模15kg、藏茵陈21kg、肉桂17kg、陈皮19kg、甘草13kg、干姜17kg、硅藻土粉15kg、膨润土粉21kg和蛭石粉20kg。
一种植物源肥料增效剂的制备方法,包括如下步骤:
步骤一、将熏倒牛、石菖蒲、肉桂、陈皮和干姜混合后粉碎,过80目筛,收集中药粉末;
步骤二、将苦豆子、红蓼、酸模、藏茵陈和甘草混合后置于提取罐中,加4次去离子水煎煮提取4次,每次加入苦豆子、红蓼、酸模、藏茵陈和甘草总质量分数15倍的去离子水,每次煎煮的时间为1h,煎煮液离心滤过;
步骤三、将步骤二得到的滤液减压浓缩得到浓缩液,将浓缩液与步骤一得到的中药粉末混匀后,55℃下干燥,粉碎,过80目筛,得到细粉;
步骤四、将步骤三得到的细粉置混合机中,依次加入硅藻土粉、膨润土粉和蛭石粉,充分混匀的到混合粉;
步骤五、将步骤四得到的混合粉置于旋转式制粒机中,喷入混合粉质量分数4倍量的去离子水,旋转制得粒度为1.0mm-4.75mm的颗粒,将颗粒烘干,即制得中药源植物生长调节剂。
实施例3:
一种中药源植物生长调节剂,由下列重量份配比的原料制成:熏倒牛35kg、苦豆子25kg、石菖蒲24kg、红蓼23kg、酸模21kg、藏茵陈19kg、肉桂13kg、陈皮14kg、甘草9kg、干姜23kg、硅藻土粉20kg、膨润土粉19kg和蛭石粉17kg。
一种中药源植物生长调节剂的制备方法,包括如下步骤:
步骤一、将熏倒牛、石菖蒲、肉桂、陈皮和干姜混合后粉碎,过120目筛,收集中药粉末;
步骤二、将苦豆子、红蓼、酸模、藏茵陈和甘草混合后置于提取罐中,加3次去离子水煎煮提取3次,每次加入苦豆子、红蓼、酸模、藏茵陈和甘草总质量分数20倍的去离子水,每次煎煮的时间为2h,煎煮液离心滤过;
步骤三、将步骤二得到的滤液减压浓缩得到浓缩液,将浓缩液与步骤一得到的中药粉末混匀后,50℃下干燥,粉碎,过120目筛,得到细粉;
步骤四、将步骤三得到的细粉置混合机中,依次加入硅藻土粉、膨润土粉和蛭石粉,充分混匀的到混合粉;
步骤五、将步骤四得到的混合粉置于旋转式制粒机中,喷入混合粉质量分数3倍量的去离子水,旋转制得粒度为1.0mm-4.75mm的颗粒,将颗粒烘干,即制得中药源植物生长调节剂。
实施例4:
一种中药源植物生长调节剂,由下列重量份配比的原料制成:熏倒牛5kg、苦豆子5kg、石菖蒲3kg、红蓼3kg、酸模3kg、藏茵陈3kg、肉桂2kg、陈皮2kg、甘草2kg、干姜2kg、硅藻土粉10kg、膨润土粉5kg和蛭石粉5kg。
一种中药源植物生长调节剂的制备方法,包括如下步骤:
步骤一、将熏倒牛、石菖蒲、肉桂、陈皮和干姜混合后粉碎,过100目筛,收集中药粉末;
步骤二、将苦豆子、红蓼、酸模、藏茵陈和甘草混合后置于提取罐中,加2次去离子水煎煮提取2次,每次加入苦豆子、红蓼、酸模、藏茵陈和甘草总质量分数25倍的去离子水,每次煎煮的时间为3h,煎煮液离心滤过;
步骤三、将步骤二得到的滤液减压浓缩得到浓缩液,将浓缩液与步骤一得到的中药粉末混匀后,45℃下干燥,粉碎,过100目筛,得到细粉;
步骤四、将步骤三得到的细粉置混合机中,依次加入硅藻土粉、膨润土粉和蛭石粉,充分混匀的到混合粉;
步骤五、将步骤四得到的混合粉置于旋转式制粒机中,喷入混合粉质量分数1倍量的去离子水,旋转制得粒度为1.0mm-4.75mm的颗粒,将颗粒烘干,即制得中药源植物生长调节剂。
实施例5:
一种中药源植物生长调节剂,由下列重量份配比的原料制成:熏倒牛50kg、苦豆子45kg、石菖蒲40kg、红蓼35kg、酸模30kg、藏茵陈30kg、肉桂25kg、陈皮25kg、甘草20kg、干姜35kg、硅藻土粉50kg、膨润土粉40kg和蛭石粉5-30kg。
一种中药源植物生长调节剂的制备方法,包括如下步骤:
步骤一、将熏倒牛、石菖蒲、肉桂、陈皮和干姜混合后粉碎,过120目筛,收集中药粉末;
步骤二、将苦豆子、红蓼、酸模、藏茵陈和甘草混合后置于提取罐中,加5次去离子水煎煮提取5次,每次加入苦豆子、红蓼、酸模、藏茵陈和甘草总质量分数3倍的去离子水,每次煎煮的时间为0.5h,煎煮液离心滤过;
步骤三、将步骤二得到的滤液减压浓缩得到浓缩液,将浓缩液与步骤一得到的中药粉末混匀后,60℃下干燥,粉碎,过120目筛,得到细粉;
步骤四、将步骤三得到的细粉置混合机中,依次加入硅藻土粉、膨润土粉和蛭石粉,充分混匀的到混合粉;
步骤五、将步骤四得到的混合粉置于旋转式制粒机中,喷入混合粉质量分数5倍量的去离子水,旋转制得粒度为1.0mm-4.75mm的颗粒,将颗粒烘干,即制得中药源植物生长调节剂。
以下为采用实施例1进行检测的实验例:
实验例1、中药源植物生长调节剂质量检测:
表1的结果说明该调节剂检验结果合格。
实验例2、中药源植物生长调节剂效果检测:
1、中药源植物生长调节剂施用方式
试验用氮、磷、钾肥及植中药源植物生长调节剂均为颗粒物(见表2),在当归田整地时混合均匀后撒施。
2、中药源植物生长调节剂对当归麻口发病率影响
按麻口病的病情指数及病指防效计算公式,计算并统计当归病情指数、病指防效。
病情指数(%)=(∑各级病根数×相对级数值)/(30×9)×100%
病情防效(%)=(对照组病情指数-处理组病情指数)/(对照组病情指数)×100%
表3的结果表明,中药源植物生长调节剂与氮、磷、钾肥混合施用对当归麻口病有明显的防治作用。
3、中药源植物生长调节剂对当归常规检测指标的影响
表4的结果表明,中药源植物生长调节剂与氮、磷、钾肥混合施用对当归总灰分、酸性不溶性灰分影响无显著性影响,但对浸出物有提高作用。
4、中药源植物生长调节剂对当归关键药效物质含量的影响
表5的结果表明,中药源植物生长调节剂与氮、磷、钾肥混合施用对当归阿魏酸、藁本内酯和总多糖含量均有明显增加。
5、中药源植物生长调节剂对当归折合产量增产率的影响
收获时调查当归产量,计算产量增加率,以不使用增效肥料为对照。
表6的结果表明,中药源植物生长调节剂与氮、磷、钾肥混合施用对当归产量有提高。
上述实验结果表明,本发明中药源植物生长调节剂与化肥一起使用具有增加肥料功效、提高当归品质与产量的作用。
实验例3、中药源植物生长调节剂效果检测-1:
1、中药源植物生长调节剂施用方式
试验用氮、磷、钾肥及中药源植物生长调节剂均为颗粒物(见表7),在马铃薯田整地时混合均匀后撒施。
2、中药源植物生长调节剂对马铃薯烂薯病的影响:
表8的结果表明,中药源植物生长调节剂与氮、磷、钾肥混合施用对马铃薯烂薯有明显的防治作用。
3、中药源植物生长调节剂对对马铃薯折合产量增产率的影响
收获时测算马铃薯产量,计算产量增加率,以不使用肥料增效剂为对照。
表9的结果表明,中药源植物生长调节剂与氮、磷、钾肥混合施用能够显著提高马铃薯产量。
实验例4、中药源植物生长调节剂效果检测-2:
1、中药源植物生长调节剂施用方式
氮、磷、钾肥及中药源植物生长调节剂均为颗粒物(见表10),在马铃薯田整地时混合均匀后撒施。
2、中药源植物生长调节剂对马铃薯烂薯影响
表11的结果表明,中药源植物生长调节剂与氮、磷、钾肥混合施用对马铃薯烂薯有明显的防治作用。
3、中药源植物生长调节剂对马铃薯的影响
表12的结果表明,中药源植物生长调节剂与氮、磷、钾肥混合施用能够提高马铃薯产量。
Claims (7)
1.一种中药源植物生长调节剂的应用,其特征在于,所述中药源植物生长调节剂由下列重量份配比的原料制成:熏倒牛5-50份、苦豆子5-45份、石菖蒲3-40份、红蓼3-35份、酸模3-30份、藏茵陈3-30份、肉桂2-25份、陈皮2-25份、甘草2-20份、干姜2-35份、硅藻土粉10-50份、膨润土粉5-40份和蛭石粉5-30份;
所述应用包括防治当归麻口病、增加当归阿魏酸、藁本内酯和总多糖含量以及提高当归产量。
2.如权利要求1所述的中药源植物生长调节剂的应用,其特征在于,所述的中药源植物生长调节剂的制备方法,包括如下步骤:
步骤一、将熏倒牛、石菖蒲、肉桂、陈皮和干姜混合后粉碎,过筛,收集中药粉末;
步骤二、将苦豆子、红蓼、酸模、藏茵陈和甘草混合后置于提取罐中,加去离子水煎煮提取,煎煮液离心滤过;
步骤三、将步骤二得到的滤液减压浓缩得到浓缩液,将浓缩液与步骤一得到的中药粉末混匀后,干燥,粉碎,过筛,得到细粉;
步骤四、将步骤三得到的细粉置混合机中,依次加入硅藻土粉、膨润土粉和蛭石粉,充分混匀得到混合粉;
步骤五、将步骤四得到的混合粉置于旋转式制粒机中,喷入去离子水,旋转制得颗粒,将颗粒烘干,即制得中药源植物生长调节剂。
3.如权利要求2所述的中药源植物生长调节剂的应用,其特征在于:步骤二中所述加去离子水煎煮提取的次数为1-5次,每次煎煮的时间为0.5-5h,每次加入去离子水的量为苦豆子、红蓼、酸模、藏茵陈和甘草总质量分数的3-30倍。
4.如权利要求3所述的中药源植物生长调节剂的应用,其特征在于:步骤三中所述干燥的温度不大于60℃。
5.如权利要求4所述的中药源植物生长调节剂的应用,其特征在于:步骤五中所述喷入去离子水的量为混合粉质量分数的1-5倍。
6.如权利要求5所述的中药源植物生长调节剂的应用,其特征在于:步骤一和步骤三中所述过筛的目数不小于80目。
7.如权利要求6所述的中药源植物生长调节剂的应用,其特征在于:步骤五中所述颗粒的粒度为1.0mm-4.75mm。
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