CN110742075A - 一种樱桃种植用复合型药水及其应用方法 - Google Patents

一种樱桃种植用复合型药水及其应用方法 Download PDF

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CN110742075A
CN110742075A CN201911047512.2A CN201911047512A CN110742075A CN 110742075 A CN110742075 A CN 110742075A CN 201911047512 A CN201911047512 A CN 201911047512A CN 110742075 A CN110742075 A CN 110742075A
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刘维生
王振启
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Xianning Xianan District Special Fruit Planting Professional Cooperative
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Abstract

本发明涉及樱桃种植技术领域,具体是公开了一种樱桃种植用复合型药水,包括药剂和营养剂组成,所述药剂由以下原料组分组成:赤霉酸1‑3g、酒精20‑60ml、果美达25‑75ml、***素10‑30ml、芸苔素内酯3‑9g、防落素0.2‑0.5g和色素1‑3g;所述的营养剂由以下重量份的原料组分组成:有机肥料10‑20份、麦麸4‑6份、草木灰3‑8份、红糖1‑3份和生物菌剂1‑2份。本发明克服了现有技术的不足,采用点药的方式,使药剂与花朵子房充分接触,便于吸收,保证了产果的质量,在点药后立刻冲施营养剂,为花朵提供养分,保障了花朵的发育。

Description

一种樱桃种植用复合型药水及其应用方法
技术领域
本发明涉及樱桃种植技术领域,具体属于一种樱桃种植用复合型药水及其应用方法。
背景技术
樱桃,蔷薇科,李亚科,樱属植物。乔木,高2-6米,树皮灰白色。小枝灰褐色,嫩枝绿色,无毛或被疏柔毛。冬芽卵形,无毛。果实可以作为水果食用,外表色泽鲜艳、晶莹美丽、红如玛瑙,黄如凝脂,果实富含糖、蛋白质、维生素及钙、铁、磷、钾等多种元素。
樱桃的种植过程中经常由于植物内源激素赤霉素被大量消耗而造成次年小年或果品质量差甚至不做果现象,经常出现亩产量低甚至绝收的现象,产出的果品也是品质参差不齐。
公开号为CN109362731A的中国专利公开了一种大樱桃坐果剂及坐果方法,通过三次授粉喷药诱导子房膨大而得到优质果的目的,能有效提高果实产量和品质。
但是在实际操作中我们发现存在以下几点问题:1、在喷药后花朵子房膨大,但是由于养分不足,限制了花朵的发育,导致不能达到预期效果;2、采用喷洒的方式进行授粉,大量的药水不能与花朵子房接触,没有实际的效果,造成大量的药水浪费,同时也造成花朵子房不能均匀的接触药剂,产出的果品质量还是参差不齐。
发明内容
本发明的目的是提供了一种樱桃种植用复合型药水及其应用方法,克服了现有技术的不足,采用点药的方式,使药剂与花朵子房充分接触,便于吸收,保证了产果的质量,在点药后立刻冲施营养剂,为花朵提供养分,保障了花朵的发育。
为解决上述问题,本发明所采取的技术方案如下:
一种樱桃种植用复合型药水,包括药剂和营养剂组成,所述药剂由以下原料组分组成:赤霉酸1-3g、酒精20-60ml、果美达25-75ml、***素10-30ml、芸苔素内酯3-9g、防落素0.2-0.5g和色素1-3g;所述的营养剂由以下重量份的原料组分组成:有机肥料10-20份、麦麸4-6份、草木灰3-8份、红糖1-3份和生物菌剂1-2份。
进一步,包括药剂和营养剂组成,所述药剂由以下原料组分组成:赤霉酸2g、酒精40ml、果美达50ml、***素20ml、芸苔素内酯6g、防落素0.35g和色素2g;所述的营养剂由以下重量份的原料组分组成:有机肥料15份、麦麸5份、草木灰5.5份、红糖2份和生物菌剂1.5份。
进一步,所述药剂的制备方法有如下步骤:
(1)将赤霉酸加入到酒精中摇匀,赤霉酸完全溶解在酒精中,得到赤霉酸酒精溶液;
(2)依次向赤霉酸酒精溶液中加入果美达、***素、芸苔素内酯和色素,摇匀后,得到混合药水;
(3)向混合药水加入防落素,摇匀至完全溶解,得到药剂。
进一步,所述***素采用质量分数为4%的6-苄氨基嘌呤,所述防落素为对氯苯氧乙酸,所述色素采用天然提取的红色素。
进一步,所述营养剂的制备方法有如下步骤:
(1)首先按照重量份数称取红糖,加入水中摇匀至完全溶解,然后将红糖液加入到生物菌剂中,在厌氧条件下静置10-12小时,得到菌液;
(2)向菌液中依次加入麦麸和草木灰,在厌氧条件下静置5-8小时,充分发酵后得到发酵菌液;
(3)按照重量份数称取有机肥料与发酵菌液充分混合,得到营养剂。
进一步,所述生物菌剂为枯草杆菌液。
进一步,所述有机肥料由以下重量份的原料组成:尿素10-16份、黄腐酸5-8份、氨基酸钙1-4份、硫酸钙0.2-0.6份、硫酸钾2-6份和微量元素0.1-0.6份。
一种樱桃种植用复合型药水的应用方法,包括以下步骤:
(1)当每棵树花开60%左右时,用混合药水按照1:100的质量比兑水后对花朵的子房进行点药,为第一次点药,点药后将营养剂随水冲施一次;
(2)第一次点药后间隔12天后,用药剂按照1:180的质量比兑水后对花朵的子房进行点药,为第二次点药,点药后将营养剂随水冲施一次;
(3)再次间隔12天后,用药剂按照1:100的质量比兑水后对花朵的子房进行点药,为第三次点药,点药后将营养剂随水冲施一次。
进一步,三次点药的时间控制在上午十点前或者下午四点后进行。
本发明与现有技术相比较,本发明的实施效果如下:
本发明所述一种樱桃种植用复合型药水,采用点药的方式,使药剂与花朵子房充分接触,便于吸收,保证了产果的质量,在药剂中添加色素便于对花朵进行标记,避免出现反复点药或者遗漏的情况;在点药后立刻冲施营养剂,为花朵提供养分,保障了花朵的发育;使用高氮高钙高钾的有机肥料,有效的避免果实太小、裂果等问题,保障果实的品质。
具体实施方式
下面结合实施例对本发明作进一步的描述,但本发明不仅限于这些实例,在为脱离本发明宗旨的前提下,所为任何改进均落在本发明的保护范围之内。
实施例1
本实施例提供了一种樱桃种植用复合型药水,包括药剂和营养剂组成。
其中药剂的制备方法有如下步骤:
(1)将1g赤霉酸加入到20ml酒精中摇匀,赤霉酸完全溶解在酒精中,得到赤霉酸酒精溶液;
(2)依次向赤霉酸酒精溶液中加入25ml果美达、10ml质量分数为4%的6-苄氨基嘌呤、3g芸苔素内酯和1g天然红色素,摇匀后,得到混合药水;
(3)向混合药水加入0.2g对氯苯氧乙酸,摇匀至完全溶解,得到药剂。
其中营养剂的制备方法有如下步骤:
(1)首先按照重量份数称取100g红糖,加入500ml水中摇匀至完全溶解,然后将红糖液加入到100ml生物菌剂中,在厌氧条件下静置10-12小时,得到菌液;
(2)向菌液中依次加入400g麦麸和300g草木灰,在厌氧条件下静置5-8小时,充分发酵后得到发酵菌液;
(3)按照重量份数称取1000g有机肥料与发酵菌液充分混合,得到营养剂。
实施例2
本实施例提供了一种樱桃种植用复合型药水,包括药剂和营养剂组成。
其中药剂的制备方法有如下步骤:
(1)将2g赤霉酸加入到40ml酒精中摇匀,赤霉酸完全溶解在酒精中,得到赤霉酸酒精溶液;
(2)依次向赤霉酸酒精溶液中加入50ml果美达、20ml质量分数为4%的6-苄氨基嘌呤、6g芸苔素内酯和2g天然红色素,摇匀后,得到混合药水;
(3)向混合药水加入0.35g对氯苯氧乙酸,摇匀至完全溶解,得到药剂。
其中营养剂的制备方法有如下步骤:
(1)首先按照重量份数称取200g红糖,加入500ml水中摇匀至完全溶解,然后将红糖液加入到150ml生物菌剂中,在厌氧条件下静置10-12小时,得到菌液;
(2)向菌液中依次加入500g麦麸和550g草木灰,在厌氧条件下静置5-8小时,充分发酵后得到发酵菌液;
(3)按照重量份数称取1500g有机肥料与发酵菌液充分混合,得到营养剂。
实施例3
本实施例提供了一种樱桃种植用复合型药水,包括药剂和营养剂组成。
其中药剂的制备方法有如下步骤:
(1)将3g赤霉酸加入到60ml酒精中摇匀,赤霉酸完全溶解在酒精中,得到赤霉酸酒精溶液;
(2)依次向赤霉酸酒精溶液中加入75ml果美达、30ml质量分数为4%的6-苄氨基嘌呤、9g芸苔素内酯和3g天然红色素,摇匀后,得到混合药水;
(3)向混合药水加入0.5g对氯苯氧乙酸,摇匀至完全溶解,得到药剂。
其中营养剂的制备方法有如下步骤:
(1)首先按照重量份数称取300g红糖,加入500ml水中摇匀至完全溶解,然后将红糖液加入到200ml生物菌剂中,在厌氧条件下静置10-12小时,得到菌液;
(2)向菌液中依次加入600g麦麸和800g草木灰,在厌氧条件下静置5-8小时,充分发酵后得到发酵菌液;
(3)按照重量份数称取2000g有机肥料与发酵菌液充分混合,得到营养剂。
实施例4
本实施例一种樱桃种植用复合型药水的应用方法,其特征在于:包括以下步骤:
(1)当每棵树花开60%左右时,用混合药水按照1:100的质量比兑水后对花朵的子房进行点药,为第一次点药,点药后将营养剂随水冲施一次;
(2)第一次点药后间隔12天后,用药剂按照1:180的质量比兑水后对花朵的子房进行点药,为第二次点药,点药后将营养剂随水冲施一次;
(3)再次间隔12天后,用药剂按照1:100的质量比兑水后对花朵的子房进行点药,为第三次点药,点药后将营养剂随水冲施一次。
检测例
对四亩樱桃试验田命名为A、B、C、D组,分别使用实施例1-3和公开号为CN109362731A的中国专利说明书中坐果处理实施例1提供的方法进行处理,分别计算其坐果率和高品率,统计结果如表1所示:
Figure BDA0002254490550000071
根据表1的统计结果可知,使用本发明提供的樱桃种植用复合型药水及其应用方法,有效的提高了樱桃花朵的坐果率和高品率,同时提高了药剂的使用率,降低了种植成本。
以上内容仅仅是对本发明构思所作的举例和说明,所属本技术领域的技术人员对所描述的具体实施例做各种各样的修改或补充或采用类似的方式替代,只要不偏离发明的构思或者超越本权利要求书所定义的范围,均应属于本发明的保护范围。

Claims (9)

1.一种樱桃种植用复合型药水,其特征在于:包括药剂和营养剂组成,所述药剂由以下原料组分组成:赤霉酸1-3g、酒精20-60ml、果美达25-75ml、***素10-30ml、芸苔素内酯3-9g、防落素0.2-0.5g和色素1-3g;所述的营养剂由以下重量份的原料组分组成:有机肥料10-20份、麦麸4-6份、草木灰3-8份、红糖1-3份和生物菌剂1-2份。
2.一种樱桃种植用复合型药水,其特征在于:包括药剂和营养剂组成,所述药剂由以下原料组分组成:赤霉酸2g、酒精40ml、果美达50ml、***素20ml、芸苔素内酯6g、防落素0.35g和色素2g;所述的营养剂由以下重量份的原料组分组成:有机肥料15份、麦麸5份、草木灰5.5份、红糖2份和生物菌剂1.5份。
3.根据权利要求1所述的一种樱桃种植用复合型药水,其特征在于:所述药剂的制备方法有如下步骤:
(1)将赤霉酸加入到酒精中摇匀,赤霉酸完全溶解在酒精中,得到赤霉酸酒精溶液;
(2)依次向赤霉酸酒精溶液中加入果美达、***素、芸苔素内酯和色素,摇匀后,得到混合药水;
(3)向混合药水加入防落素,摇匀至完全溶解,得到药剂。
4.根据权利要求1或3所述的一种樱桃种植用复合型药水,其特征在于:所述***素采用质量分数为4%的6-苄氨基嘌呤,所述防落素为对氯苯氧乙酸,所述色素采用天然提取的红色素。
5.根据权利要求1所述的一种樱桃种植用复合型药水,其特征在于:所述营养剂的制备方法有如下步骤:
(1)首先按照重量份数称取红糖,加入水中摇匀至完全溶解,然后将红糖液加入到生物菌剂中,在厌氧条件下静置10-12小时,得到菌液;
(2)向菌液中依次加入麦麸和草木灰,在厌氧条件下静置5-8小时,充分发酵后得到发酵菌液;
(3)按照重量份数称取有机肥料与发酵菌液充分混合,得到营养剂。
6.根据权利要求1或5所述的一种樱桃种植用复合型药水,其特征在于:所述生物菌剂为枯草杆菌液。
7.根据权利要求1或5所述的一种樱桃种植用复合型药水,其特征在于:所述有机肥料由以下重量份的原料组成:尿素10-16份、黄腐酸5-8份、氨基酸钙1-4份、硫酸钙0.2-0.6份、硫酸钾2-6份和微量元素0.1-0.6份。
8.一种樱桃种植用复合型药水的应用方法,其特征在于:包括以下步骤:
(1)当每棵树花开60%左右时,用混合药水按照1:100的质量比兑水后对花朵的子房进行点药,为第一次点药,点药后将营养剂随水冲施一次;
(2)第一次点药后间隔12天后,用药剂按照1:180的质量比兑水后对花朵的子房进行点药,为第二次点药,点药后将营养剂随水冲施一次;
(3)再次间隔12天后,用药剂按照1:100的质量比兑水后对花朵的子房进行点药,为第三次点药,点药后将营养剂随水冲施一次。
9.一种樱桃种植用复合型药水的应用方法,其特征在于:三次点药的时间控制在上午十点前或者下午四点后进行。
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