CN106035397A - 一种生物除草剂及其制备方法 - Google Patents
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Abstract
本发明公开了一种生物除草剂及其制备方法,本发明的有益效果是:该新型一种生物除草剂及其制备方法,除草效果好,一般都能除掉80%‑90%,有些能除掉100%,除草也很彻底,能杀死苗圃里常见的一年生和多年生杂草,清除杂草,提高苗木的质量与产量,费用为人工除草的三十分之一或二十分之一,可以减少土壤板结和土壤侵蚀,同时节约了除草剂的经费,为企业生产降低了原料的浪费,复合环保的理念,不仅能充分发挥生物除草剂的防效,而且可以弥补化学除草剂在对付某些抗性杂草上的不足,降低化学除草剂给环境带来的污染。
Description
技术领域
本发明涉及生物除草剂制备方法领域,具体为一种生物除草剂及其制备方法。
背景技术
全世界广泛分布的杂草有30000种,每年约1 800种对作物造成不同程度的危害.每年因杂草危害造成的农作物减产高达9.7%。近百年来采用化学除草剂有效地控制了许多杂草。但化学药剂的大量使用也引发了一系列的问题,诸如除草剂抗性杂草植株的出现、土壤污染、水质的退化、以及对非杂草生物(特别是人、畜)的危害等等。随着全球环境意识的提高和农业可持续发展的需要.高效、环保、无害的微生物除草剂的研究越来越显示其重要的社会意义和经济价值;现有技术中对于传统生物除草剂的生产成本高,见效慢,这应该是两大缺点,还有就是受环境影响较敏感,技术不是很成熟,下雨天生物制剂容易被冲掉稀释,效果大打折扣。
发明内容
本发明的目的在于提供一种生物除草剂及其制备方法,以解决上述背景技术中提出的问题。
本发明的目的是通过下述技术方案予以实现:一种生物除草剂及其制备方法,其特征在于,包括以下步骤:硝基苯酚0.5-0.7%、氯苯酚0.3-0.7%、氨基甲酸0.2-0.4%、硫酸和硫酸铜0.1-0.6%、波尔多液0.1-0.5%、有机化学除草剂0.4-0.7%、草甘磷0.3-0.7%、除虫菊素0.2-0.6%、鱼藤酮0.2-0.8%、烟碱0.3-0.7%,有机溶液0.1-0.8%、有机溶液0.4-1.0%。
上述有机溶液由如下重量份数的原料制备得到:可的松0.5-0.8%、柔红霉素0.1-0.7%、异喹胍0.1-0.8%、地塞米松0.4-0.8%、地西泮0.4-0.7%、洋地黄毒苷0.2-0.4%、地高辛0.6-0.7%、地尔硫卓0.8-1.1%、多西他赛0.4-1.1%、多潘立酮0.2-1.1%、灰黄霉素0.1-0.5%、氢化可的松0.4-0.7%、伊马替尼1.1-1.3%。
上述一种生物除草剂及其制备方法由如下重量份数的原料制备得到:硝基苯酚0.6%、氯苯酚0.4%、氨基甲酸0.3%、硫酸和硫酸铜0.4%、波尔多液0.4%、有机化学除草剂0.6%、草甘磷0.2%、除虫菊素0.6%、鱼藤酮0.5%、烟碱0.7%,有机溶液0.4%、有机溶液1.0%。
上述有机溶液由如下重量份数的原料制备得到:可的松0.6%、柔红霉素0.6%、异喹胍0.4%、地塞米松0.5%、地西泮0.5%、洋地黄毒苷0.3%、地高辛0.5%、地尔硫卓1.0%、多西他赛0.9%、多潘立酮0.9%、灰黄霉素0.2%、氢化可的松0.5%、伊马替尼1.2%。
上述有机溶液,其特征在于将称取的可的松0.6%、柔红霉素0.6%、异喹胍0.4%、地塞米松0.5%、地西泮0.5%、洋地黄毒苷0.3%、地高辛0.5%、地尔硫卓1.0%、多西他赛0.9%、多潘立酮0.9%、灰黄霉素0.2%、氢化可的松0.5%、伊马替尼1.2%同时放入真空搅拌机中进行搅拌,并且通过0.9~0.98MPa(9~10kgf/cm)的蒸汽,维持2小时,随后冷却后得到有机溶液。
上述一种生物除草剂及其制备方法,其特征在于将称取的硝基苯酚0.6%、氯苯酚0.4%、氨基甲酸0.3%、硫酸和硫酸铜0.4%、波尔多液0.4%、有机化学除草剂0.6%、草甘磷0.2%、除虫菊素0.6%、鱼藤酮0.5%、烟碱0.7%,有机溶液0.4%、有机溶液1.0%,放置50℃的搅拌机内搅拌均匀即可。
本发明的有益效果是:该新型一种生物除草剂及其制备方法,除草效果好,一般都能除掉80%-90%,有些能除掉100%,除草也很彻底,能杀死苗圃里常见的一年生和多年生杂草,清除杂草,提高苗木的质量与产量,费用为人工除草的三十分之一或二十分之一,可以减少土壤板结和土壤侵蚀,同时节约了除草剂的经费,为企业生产降低了原料的浪费,复合环保的理念,不仅能充分发挥生物除草剂的防效,而且可以弥补化学除草剂在对付某些抗性杂草上的不足,降低化学除草剂给环境带来的污染。
具体实施方式
下面结合具体实施方式进一步的说明,但是下文中的具体实施方式不应当做被理解为对本体发明的限制。本领域普通技术人员能够在本发明基础上显而易见地作出的各种改变和变化,应该均在发明的范围之内。
实施例1:一种生物除草剂及其制备方法包括以下各原料的重量:硝基苯酚0.6%、氯苯酚0.4%、氨基甲酸0.3%、硫酸和硫酸铜0.4%、波尔多液0.4%、有机化学除草剂0.6%、草甘磷0.2%、除虫菊素0.6%、鱼藤酮0.5%、烟碱0.7%,有机溶液0.4%、有机溶液1.0%,放置50℃的搅拌机内搅拌均匀即可。
实施例2:一种生物除草剂及其制备方法包括以下各原料的重量:矿硝基苯酚0.6%、氯苯酚0.4%、氨基甲酸0.3%、硫酸和硫酸铜0.4%、波尔多液0.4%、有机化学除草剂0.6%、草甘磷0.2%、除虫菊素0.6%、鱼藤酮0.5%、烟碱0.7%,有机溶液0.4%、有机溶液1.0%,放置50℃的搅拌机内搅拌均匀即可。
实施例3:一种生物除草剂及其制备方法包括以下各原料的重量:硝基苯酚0.6%、氯苯酚0.4%、氨基甲酸0.3%、硫酸和硫酸铜0.4%、波尔多液0.4%、有机化学除草剂0.6%、草甘磷0.2%、除虫菊素0.6%、鱼藤酮0.5%、烟碱0.7%,有机溶液0.4%、有机溶液1.0%,放置50℃的搅拌机内搅拌均匀即可。
本发明还提供了上述一种生物除草剂及其制备方法,按上述三种实施例备齐原料后,通过以下步骤制得:
将称取的可的松、柔红霉素、异喹胍、地塞米松、地西泮、洋地黄毒苷、地高辛、地尔硫卓、多西他赛、多潘立酮、灰黄霉素、氢化可的松、伊马替尼同时放入真空搅拌机中进行搅拌,并且通过0.9~0.98MPa(9~10kgf/cm)的蒸汽,维持2小时,随后冷却后得到有机溶液。
将称取的硝基苯酚、氯苯酚、氨基甲酸、硫酸和硫酸铜、波尔多液、有机化学除草剂、草甘磷、除虫菊素、鱼藤酮、烟碱,有机溶液、有机溶液1.0%,放置50℃的搅拌机内搅拌均匀即可。
以上描述仅为本申请的较佳实施例以及对所运用技术原理的说明。本领域技术人员应当理解,本申请中所涉及的发明范围,并不限于上述技术特征的特定组合而成的技术方案,同时也应涵盖在不脱离所述发明构思的情况下,由上述技术特征或其等同特征进行任意组合而形成的其它技术方案。例如上述特征与本申请中公开的(但不限于)具有类似功能的技术特征进行互相替换而形成的技术方案。
Claims (6)
1.一种生物除草剂及其制备方法,其特征在于它由如下重量份数的原料制备得到:硝基苯酚0.5-0.7%、氯苯酚0.3-0.7%、氨基甲酸0.2-0.4%、硫酸和硫酸铜0.1-0.6%、波尔多液0.1-0.5%、有机化学除草剂0.4-0.7%、草甘磷0.3-0.7%、除虫菊素0.2-0.6%、鱼藤酮0.2-0.8%、烟碱0.3-0.7%,有机溶液0.1-0.8%、有机溶液0.4-1.0%。
2.如权利要求1所述的一种生物除草剂及其制备方法,其特征在于有机溶液由如下重量份数的原料制备得到:可的松0.5-0.8%、柔红霉素0.1-0.7%、异喹胍0.1-0.8%、地塞米松0.4-0.8%、地西泮0.4-0.7%、洋地黄毒苷0.2-0.4%、地高辛0.6-0.7%、地尔硫卓0.8-1.1%、多西他赛0.4-1.1%、多潘立酮0.2-1.1%、灰黄霉素0.1-0.5%、氢化可的松0.4-0.7%、伊马替尼1.1-1.3%。
3.如权利要求 1 所述的一种生物除草剂及其制备方法,其特征在于它由如下重量份数的原料制备得到:硝基苯酚0.6%、氯苯酚0.4%、氨基甲酸0.3%、硫酸和硫酸铜0.4%、波尔多液0.4%、有机化学除草剂0.6%、草甘磷0.2%、除虫菊素0.6%、鱼藤酮0.5%、烟碱0.7%,有机溶液0.4%、有机溶液1.0%。
4.如权利要求2所述的一种生物除草剂及其制备方法,其特征在于有机溶液由如下重量份数的原料制备得到:可的松0.6%、柔红霉素0.6%、异喹胍0.4%、地塞米松0.5%、地西泮0.5%、洋地黄毒苷0.3%、地高辛0.5%、地尔硫卓1.0%、多西他赛0.9%、多潘立酮0.9%、灰黄霉素0.2%、氢化可的松0.5%、伊马替尼1.2%。
5.如权利要求1所述的有机溶液,其特征在于将称取的可的松0.6%、柔红霉素0.6%、异喹胍0.4%、地塞米松0.5%、地西泮0.5%、洋地黄毒苷0.3%、地高辛0.5%、地尔硫卓1.0%、多西他赛0.9%、多潘立酮0.9%、灰黄霉素0.2%、氢化可的松0.5%、伊马替尼1.2%同时放入真空搅拌机中进行搅拌,并且通过0.9~0.98MPa(9~10kgf/cm)的蒸汽,维持2小时,随后冷却后得到有机溶液。
6.如权利要求2所述的一种生物除草剂及其制备方法,其特征在于将称取的硝基苯酚0.6%、氯苯酚0.4%、氨基甲酸0.3%、硫酸和硫酸铜0.4%、波尔多液0.4%、有机化学除草剂0.6%、草甘磷0.2%、除虫菊素0.6%、鱼藤酮0.5%、烟碱0.7%,有机溶液0.4%、有机溶液1.0%,放置50℃的搅拌机内搅拌均匀即可。
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