CN106852342A - 用于紫秋葡萄病虫防治复合药剂及其病虫防治方法 - Google Patents
用于紫秋葡萄病虫防治复合药剂及其病虫防治方法 Download PDFInfo
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Abstract
本发明属于紫秋葡萄种植技术领域,具体涉及一种用于紫秋葡萄病虫防治复合药剂及其病虫防治方法。该种用于紫秋葡萄病虫防治复合药剂,根据紫秋葡萄的生长特点分成一阶复合药剂、二阶复合药剂、三阶复合药剂、第一混合药剂和第二混合药剂。该种用于紫秋葡萄病虫防治复合药剂及其病虫防治方法,根据紫秋葡萄的生长过程中的重点病害、气候和发病情况进行研究,对喷药的种类、时间和程序进行合理的规划,实现综合防治的目地,使用该种复合药剂施药量仅为普通葡萄的1/4‑1/5,使用该种复合药剂及其病虫防治方法,种植的紫秋葡萄抗自然灾害能力强,亩增产30‑40%,可保证丰产,且所生产出的紫秋外形美观、安全健康。
Description
技术领域
本发明属于紫秋葡萄种植技术领域,具体涉及一种用于紫秋葡萄病虫防治复合药剂及其病虫防治方法。
背景技术
紫秋葡萄原名高山葡萄,是中国湖南芷江县大树坳乡高山组的一种野生紫秋葡萄,在1999年经过大树坳乡紫秋葡萄研究所正式推广,是南方山区高温、高湿、低光照生态环境下选育成功的晚熟鲜食刺紫秋葡萄良种;虽然目前开发的步子不断加快,但绝大部分果农管理极其粗放,树体营养不良,亦未疏花、疏果,真正做为产业去开发的大户屈指可数,科技含量普遍偏低,观念还较落后,大部分农民朋友仍采用12株/亩的稀植模式,造成了一定经济效益的损失。
应用化学农药控制病虫害发生,仍然是目前防治病虫害的主要手段,也是综合防治不可缺少的重要组成部分。尽管化学农药存在污染环境、杀伤天敌和残毒等问题,但它具有见效快、效果好、广谱、使用方便等优点。药剂防治是直接控制病害最有效的措施。
根据紫秋葡萄的生长过程,病虫害的防治重点也是不断改变,如花期和新梢速长期是霜霉病、灰霉病大发生期,浆果膨大期是霜霉病、白腐病、炭疽病的发生期等,现有的防治方法一般都使用某种特效农药或化肥对葡萄叶面喷施,实现单一病种的防治,此外多种特效农药的反复喷施不但劳动力成本高,而且容易导致多种农药残留,影响产品的健康。因此,如果能基于紫秋葡萄的生长特性,提供一种能综合治理、安全健康的复合药剂,实现紫秋葡萄生长阶段的病虫害防治,具有积极的经济和社会效益。
发明内容
为了解决上述问题,本发明根据紫秋葡萄的生长过程提供了一种用于紫秋葡萄病虫防治复合药剂及其病虫防治方法。
于紫秋葡萄病虫防治复合药剂,其特征在于,该复合药剂组成为:
一阶复合药剂:腐霉利45-55%、咪鲜胺20-30%、氰霜唑10-15%、阿维菌素1-5%;
二阶复合药剂:多菌灵50-60%、霜脲锰锌20-30%、氟硅唑20-30%、戊唑醇1-5%、氟氯氰菊酯1-5%;
三阶复合药剂:乙磷铝90-95%、全营养素1-5%、苦参碱1-5%;
其中一阶复合药剂分别于二阶复合药剂和三阶复合药剂混合成第一混合药剂和第二混合药剂。
优化的,一阶复合药剂与水的比例为1:10000-15000。
优化的,二阶复合药剂与水的比例为1:30000-55000。
优化的,三阶复合药剂与水的比例为1:70000-75000。
优化的,第一混合药剂其一阶复合药剂与二阶复合药剂的比例为6-8:1。
优化的,第一混合药剂与水的比例为1:25000-35000。
优化的,第二混合药剂其一阶复合药剂与三阶复合药剂的比例为8-9:1。
优化的,第二混合药剂与水的比例为1:55000-60000。
紫秋葡萄病虫防治方法,其特征在于,使用上述的用于紫秋葡萄病虫防治复合药剂,具体步骤如下:将步用于紫秋葡萄病虫防治复合药剂混合成溶液
4月上旬,使用一阶混合药剂与水混合,对紫秋葡萄的叶片进行喷施;
5月中旬,使用二阶混合药剂与水混合,对紫秋葡萄的进行根茎和叶面进行喷施;
6月中旬,使用第一混合药剂与水混合,对紫秋葡萄的进行根茎和叶面进行喷施;
7月下旬,使用三阶混合药剂对紫秋葡萄的进行根茎进行喷施;
10-11月,使用第二混合药剂与水混合,对紫秋葡萄的进行全面喷施。
进一步的8-9月采果前1个月停止用药。
由上述对本发明的描述可知,本发明提供的用于紫秋葡萄病虫防治复合药剂及其病虫防治方法,根据紫秋葡萄的生长过程中的重点病害、气候和发病情况进行研究,对喷药的种类、时间和程序进行合理的规划,实现综合防治的目地,使用该种复合药剂施药量仅为普通葡萄的1/4-1/5,使用该种复合药剂及其病虫防治方法,种植的紫秋葡萄抗自然灾害能力强,亩增产30-40%,可保证丰产,且所生产出的紫秋外形美观、安全健康。
具体实施方式
为了更好的理解本发明的技术方案,下面通过具体实施例对本发明进一步进行描述。
于紫秋葡萄病虫防治复合药剂,该复合药剂组成为:
一阶复合药剂:腐霉利45-55%、咪鲜胺20-30%、氰霜唑10-15%、阿维菌素1-5%,一阶复合药剂与水的比例为1:10000-15000
二阶复合药剂:多菌灵50-60%、霜脲锰锌20-30%、氟硅唑20-30%、戊唑醇1-5%、氟氯氰菊酯1-5%,二阶复合药剂与水的比例为1:30000-55000
三阶复合药剂:乙磷铝90-95%、全营养素1-5%、苦参碱1-5%,三阶复合药剂与水的比例为1:70000-75000;
其中一阶复合药剂分别于二阶复合药剂混合成第一混合药剂,第一混合药剂其一阶复合药剂与二阶复合药剂的比例为6-8:1,第一混合药剂与水的比例为1:25000-35000;
一阶复合药剂与三阶复合药剂混合成第二混合药剂,第二混合药剂其一阶复合药剂与三阶复合药剂的比例为8-9:1,第二混合药剂与水的比例为1:55000-60000。
紫秋葡萄病虫防治方法,其特征在于,使用上述的用于紫秋葡萄病虫防治复合药剂,具体步骤如下:将步用于紫秋葡萄病虫防治复合药剂混合成溶液
4月上旬,为紫秋葡萄的萌芽、展叶和新梢生长期,此时开始进行防治,使用一阶混合药剂与水混合,对紫秋葡萄的叶片进行喷施;
5月中旬,为紫秋葡萄的花期和新梢速长期,此时为霜霉病、灰霉病大发生期,使用二阶混合药剂与水混合,对紫秋葡萄的进行根茎和叶面进行喷施;
6月中旬,为紫秋葡萄的浆果膨大期,此时病害重点防治霜霉病,同时预防白腐病、炭疽病,使用第一混合药剂与水混合,对紫秋葡萄的进行根茎和叶面进行喷施;
7月下旬,为紫秋葡萄的果实着色期,果实渐渐进入成熟,使用三阶混合药剂对紫秋葡萄的进行根茎进行喷施,以免污染果面;
8-9月,为紫秋葡萄的采果期,采果前1个月停止用药;
10-11月,采果后,使用第二混合药剂与水混合,对紫秋葡萄的进行全面喷施。
上述用于紫秋葡萄病虫防治复合药剂及其病虫防治方法,根据紫秋葡萄的生长过程中的重点病害、气候和发病情况进行研究,对喷药的种类、时间和程序进行合理的规划,实现综合防治的目地,使用该种复合药剂施药量仅为普通葡萄的1/4-1/5,使用该种复合药剂及其病虫防治方法,种植的紫秋葡萄抗自然灾害能力强,亩增产30-40%,可保证丰产,且所生产出的紫秋外形美观、安全健康。
以上所述,仅为本发明较佳实施例而已,故不能以此限定本发明实施的范围,即依本发明申请专利范围及说明书内容所作的等效变化与修饰,皆应仍属本发明专利涵盖的范围内。
Claims (10)
1.用于紫秋葡萄病虫防治复合药剂,其特征在于,该复合药剂组成为:
一阶复合药剂:腐霉利45-55%、咪鲜胺20-30%、氰霜唑10-15%、阿维菌素1-5%;
二阶复合药剂:多菌灵50-60%、霜脲锰锌20-30%、氟硅唑20-30%、戊唑醇1-5%、氟氯氰菊酯1-5%;
三阶复合药剂:乙磷铝90-95%、全营养素1-5%、苦参碱1-5%;
其中一阶复合药剂分别于二阶复合药剂和三阶复合药剂混合成第一混合药剂和第二混合药剂。
2.根据权利要求1所述的用于紫秋葡萄病虫防治复合药剂,其特征在于:所述一阶复合药剂与水的比例为1:10000-15000。
3.根据权利要求1所述的用于紫秋葡萄病虫防治复合药剂,其特征在于:所述二阶复合药剂与水的比例为1:30000-55000。
4.根据权利要求1所述的用于紫秋葡萄病虫防治复合药剂,其特征在于:所述三阶复合药剂与水的比例为1:70000-75000。
5.根据权利要求1所述的用于紫秋葡萄病虫防治复合药剂,其特征在于:所述第一混合药剂其一阶复合药剂与二阶复合药剂的比例为6-8:1。
6.根据权利要求5所述的用于紫秋葡萄病虫防治复合药剂,其特征在于:所述第一混合药剂与水的比例为1:25000-35000。
7.根据权利要求1所述的用于紫秋葡萄病虫防治复合药剂,其特征在于:所述第二混合药剂其一阶复合药剂与三阶复合药剂的比例为8-9:1。
8.根据权利要求7所述的用于紫秋葡萄病虫防治复合药剂,其特征在于:所述第二混合药剂与水的比例为1:55000-60000。
9.紫秋葡萄病虫防治方法,其特征在于,使用权利要求1-8任意一项所述的用于紫秋葡萄病虫防治复合药剂,具体步骤如下:将步用于紫秋葡萄病虫防治复合药剂混合成溶液
4月上旬,使用一阶混合药剂与水混合,对紫秋葡萄的叶片进行喷施;
5月中旬,使用二阶混合药剂与水混合,对紫秋葡萄的进行根茎和叶面进行喷施;
6月中旬,使用第一混合药剂与水混合,对紫秋葡萄的进行根茎和叶面进行喷施;
7月下旬,使用三阶混合药剂对紫秋葡萄的进行根茎进行喷施;
10-11月,使用第二混合药剂与水混合,对紫秋葡萄的进行全面喷施。
10.根据权利要求9所述的紫秋葡萄病虫防治方法,其特征在于:所述采果前1个月停止用药。
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