CN110915583B - 一种稻鱼共生种养系统 - Google Patents

一种稻鱼共生种养系统 Download PDF

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CN110915583B
CN110915583B CN201911295928.6A CN201911295928A CN110915583B CN 110915583 B CN110915583 B CN 110915583B CN 201911295928 A CN201911295928 A CN 201911295928A CN 110915583 B CN110915583 B CN 110915583B
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杨品红
杨祺福
徐文思
谢中国
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Hefei Keyiguo Information Technology Co ltd
Qi Qinwei
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Abstract

本发明公开了一种稻鱼共生种养系统,以一块田为一个单元,在每个单元的中心留有中心集鱼区,由中心集鱼区沿其径向方向向外放射有若干条鱼活动区,除中心集鱼区、所有的鱼活动区外的部分按常规方式种植水稻以构成水稻种植区,且在每条鱼活动区与水稻种植区之间有拦网隔开,同样,在中心集鱼区与水稻种植区之间也有拦网隔开;拦网上且位于水稻种植区侧固定有诱虫灯、雾化喷头,所有的雾化喷头最终通过管道与药液泵、药液箱连接且连通。本发明有效起到了害虫防治效果,且此种方式对鱼类养殖无害。

Description

一种稻鱼共生种养系统
技术领域
本发明涉及稻鱼共生技术领域,具体涉及一种稻鱼共生种养系统。
背景技术
稻鱼共生是一种复合农业生态系统,水稻为鱼类提供庇荫和有机食物,而鱼则发挥耕田除草、松土增肥、提供氧气、吞食害虫等功能,这种生态循环通过鱼吃昆虫和杂草、鱼粪肥田的方式,维持自身的生态平衡,即增加了经济效益,又解决了病虫害防治的问题。在稻鱼共生系统中,由于水稻很容易感染病虫害等情况,这样就会使得水稻出现大量枯死等情况,而且也会有其他的害虫对水稻的生长造成破坏和影响在防治的过程中如果采用农药防治的方式,又很容易造成田鱼的生长发育受到影响,最终造成整个生态系统发生崩坏,所以必须要加强对稻鱼共生系统的病虫害进行科学有效的防治。此外,现有稻田养鱼,其鱼不好捕捞干净。
发明内容
针对上述现有技术存在的不足,本发明的目的是提供一种设计合理的稻鱼共生种养系统。
为实现上述目的,本发明采用的技术方案是:一种稻鱼共生种养系统,其特征在于,以一块田为一个单元,在每个单元的中心留有中心集鱼区,由中心集鱼区沿其径向方向向外放射有若干条鱼活动区,除中心集鱼区、所有的鱼活动区外的部分按常规方式种植水稻以构成水稻种植区,且在每条鱼活动区与水稻种植区之间有拦网隔开,同样,在中心集鱼区与水稻种植区之间也有拦网隔开,通过拦网的设置以限制鱼类在中心集鱼区和鱼活动区内活动;在中心集鱼区上部搭建圆环状的平台,在每条鱼活动区域上方搭建行走桥,行走桥底部固定有两条相对的滑轨,其中一条滑轨在中心开有槽孔、两端封闭,两条滑轨上配合有同一个滑块,滑块底部竖直向下固定有一支撑杆,支撑杆上固定有赶鱼网,滑块一侧固定有穿过对应的滑轨的槽孔的L型操作杆,赶鱼网底部与鱼活动区内底部相适应配合,在中心集鱼区内有投料捕鱼装置;拦网上且位于水稻种植区侧固定有诱虫灯、雾化喷头,所有的雾化喷头最终通过管道与药液泵、药液箱连接且连通。
进一步,所述水稻种植区在种植水稻之前铺设有可生物降解网,其网孔大小以保证至少一兜水稻从其中钻出而不阻碍水稻向上生长,且可生物降解网是由现有技术中的可生物降解纤维编织的网,再将网浸泡在缓释杀虫液中、再经烘干获得的,其中缓释杀虫液是由纤维粘合剂、微胶囊按照1-3:3-4的重量比均匀混合配制而成的,所述微胶囊内包裹有杀虫液。可生物降解网的设置,一方面可抑制部分杂草生长,另一方面可驱赶水稻基部的稻飞虱成虫,抑制并杀死基部叶鞘内稻飞虱卵的孵化。
进一步,所述诱虫灯包括外壳、灯体、步甲栖息区,所述透明外壳一侧开有进出口,外壳顶壁上固定有灯体,外壳内有至少一半区域铺设有泥土,泥土中放有蚯蚓,外壳内放置有公母步甲成虫,进出口处固定有防止公母步甲成虫进出、但害虫能够正常进出的网。
本发明通过雾化喷头喷出的药液和微胶囊包裹的杀虫液成分是相同的,均是由辣椒汁、茶籽浸提液、橘子皮熬煮的汁液按照3-5:8-10: 2-4配制而成的,以重量计,其中橘子皮熬煮的汁液是用新鲜橘子皮没过其表面的水,先大火烧开、再熬煮1-3h所得。
与现有技术相比,本发明具备的有益效果:
1、通过拦网将放养的鱼类限制在一定区域内,防止鱼类在养殖过程中走失,同时也避免秧苗期鱼类对水稻秧苗的伤害,在全年都可放养鱼类而不受水稻是否收割的干扰;
2、通过赶鱼网等设置,人可在行走桥来回走动的时候拉动赶鱼网,辅助将鱼赶至中心集鱼区,便于捕捞;平时,也可往中心集鱼区进行喂料;
3、通过放置有步甲的诱虫灯、雾化喷头等,有效起到了害虫防治效果,且此种方式对鱼类养殖无害,相比水稻种植与鱼类养殖水质完全隔开而言,两者共生的效果更好;
4、通过本发明特制的杀虫液,对稻纵卷叶螟、稻飞虱的杀灭效果好(达89.5%以上)。
附图说明
图1为本发明结构示意图
图2为本发明所述行走桥局部仰视图
图3为本发明所述可生物降解网铺设在水稻种植区的状态图
图4为本发明所述诱虫灯结构示意图。
具体实施方式
现结合附图及具体实施例,来对本发明作进一步阐述。下文未详述部分,均应按照本领域现有技术进行。且以下仅为本发明的优选实施方式,并非用于限制本发明的保护范围。任何在不脱离本发明构思前提下的相似或等同替换,均应落在本发明的保护范围内。
实施例一
如图1-4所示,本实施例的稻鱼共生种养系统,以一块田为一个单元,在每个单元的中心留有中心集鱼区1,由中心集鱼区1沿其径向方向向外放射有若干条鱼活动区2,除中心集鱼区1、所有的鱼活动区2外的部分按常规方式种植水稻以构成水稻种植区3(占整块田面积的80%),且在每条鱼活动区2与水稻种植区3之间有拦网4隔开,同样,在中心集鱼区1与水稻种植区3之间也有拦网4隔开,通过拦网4的设置以限制鱼类在中心集鱼区1和鱼活动区2内活动;在每条鱼活动区2域上方搭建行走桥5、在中心集鱼区1上部搭建圆环状的平台6,行走桥5底部固定有两条相对的滑轨5.1,其中一条滑轨5.1在中心开有槽孔、两端封闭,两条滑轨5.1上配合有同一个滑块7,滑块7底部竖直向下固定有一支撑杆8,支撑杆8上固定有赶鱼网10,滑块7一侧固定有穿过对应的滑轨的槽孔的L型操作杆11,赶鱼网10底部与鱼活动区2内底部相适应配合、赶鱼网10的宽度与鱼活动区2的宽度相适应,在中心集鱼区1进行常规投料、捕鱼操作;拦网4上且位于水稻种植区侧固定有诱虫灯12、雾化喷头13,诱虫灯12与雾化喷头13不在水稻种植区3的同一侧,所有的雾化喷头13最终通过管道与药液泵、药液箱连接且连通。
本发明在水稻种植区在种植水稻之前铺设有可生物降解网14,其网孔大小以保证至少一兜水稻从其中钻出而不阻碍水稻向上生长,且可生物降解网14是由现有技术中的可生物降解纤维编织的网,再将网浸泡在缓释杀虫液中、再经烘干获得的,其中缓释杀虫液是由纤维粘合剂、微胶囊按照2: 4的重量比均匀混合配制而成的,所述微胶囊内包裹有杀虫液,微胶囊制备按常规方法进行。可生物降解网的设置,一方面可抑制部分杂草生长,另一方面可驱赶水稻基部的稻飞虱成虫,抑制并杀死基部叶鞘内稻飞虱卵的孵化。
本发明的诱虫灯12包括外壳12.1、灯体12.2、步甲栖息区12.3,所述透明外壳12.1一侧开有进出口,外壳12.1顶壁上固定有灯体12.2,外壳12.1内有至少一半区域铺设有泥土、泥土中放有蚯蚓以构成步甲栖息区12.3,外壳12.1内放置有公母步甲成虫,进出口处固定有防止公母步甲成虫进出、但害虫能够正常进出的网12.4,外壳12.1顶部用螺栓固定有挂环12.5。
本发明通过雾化喷头喷出的药液和微胶囊包裹的杀虫液成分是相同的,均是由辣椒汁、茶籽浸提液、橘子皮熬煮的汁液按照5:10:2配制而成的,以重量计,其中橘子皮熬煮的汁液是用新鲜橘子皮没过其表面的水,先大火烧开、再熬煮1-3h所得。
实施例二
如图1-4所示,本实施例的稻鱼共生种养系统,以一块田为一个单元,在每个单元外围围有拦网以防止其他单元的害虫进入。在每个单元的中心留有中心集鱼区1,由中心集鱼区1沿其径向方向向外放射有若干条鱼活动区2,除中心集鱼区1、所有的鱼活动区2外的部分按常规方式种植水稻以构成水稻种植区3(占整块田面积的90%),且在每条鱼活动区2与水稻种植区3之间有拦网4隔开,同样,在中心集鱼区1与水稻种植区3之间也有拦网4隔开,通过拦网4的设置以限制鱼类在中心集鱼区1和鱼活动区2内活动;在每条鱼活动区2域上方搭建行走桥5、在中心集鱼区1上部搭建圆环状的平台6,行走桥5底部固定有两条相对的滑轨5.1,其中一条滑轨5.1在中心开有槽孔、两端封闭,两条滑轨5.1上配合有同一个滑块7,滑块7底部竖直向下固定有一支撑杆8,支撑杆8上固定有赶鱼网10,滑块7一侧固定有穿过对应的滑轨的槽孔的L型操作杆11,赶鱼网10底部与鱼活动区2内底部相适应配合、赶鱼网10的宽度与鱼活动区2的宽度相适应,在中心集鱼区1进行常规投料、捕鱼操作;拦网4上且位于水稻种植区侧固定有诱虫灯12、雾化喷头13,诱虫灯12与雾化喷头13不在水稻种植区3的同一侧,所有的雾化喷头13最终通过管道与药液泵、药液箱连接且连通。
本发明在水稻种植区在种植水稻之前铺设有可生物降解网14,其网孔大小以保证至少一兜水稻从其中钻出而不阻碍水稻向上生长,且可生物降解网14是由现有技术中的可生物降解纤维编织的网,再将网浸泡在缓释杀虫液中、再经烘干获得的,其中缓释杀虫液是由纤维粘合剂、微胶囊按照1-3:3-4的重量比均匀混合配制而成的,所述微胶囊内包裹有杀虫液,微胶囊制备按常规方法进行。可生物降解网的设置,一方面可抑制部分杂草生长,另一方面可驱赶水稻基部的稻飞虱成虫,抑制并杀死基部叶鞘内稻飞虱卵的孵化。
本发明的诱虫灯12包括外壳12.1、灯体12.2、步甲栖息区12.3,所述透明外壳12.1一侧开有进出口,外壳12.1顶壁上固定有灯体12.2,外壳12.1内有至少一半区域铺设有泥土、泥土中放有蚯蚓以构成步甲栖息区12.3,外壳12.1内放置有公母步甲成虫,进出口处固定有防止公母步甲成虫进出、但害虫能够正常进出的网12.4,外壳12.1顶部用螺栓固定有挂环12.5。
本发明通过雾化喷头喷出的药液和微胶囊包裹的杀虫液成分是相同的,均是由辣椒汁、茶籽浸提液、橘子皮熬煮的汁液按照3:8: 4配制而成的,其中橘子皮熬煮的汁液是用新鲜橘子皮没过其表面的水,先大火烧开、再熬煮1-3h所得。

Claims (3)

1.一种稻鱼共生种养系统,其特征在于,以一块田为一个单元,在每个单元的中心留有中心集鱼区,由中心集鱼区沿其径向方向向外放射有若干条鱼活动区,除中心集鱼区、所有的鱼活动区外的部分按常规方式种植水稻以构成水稻种植区,所述水稻种植区在种植水稻之前铺设有可生物降解网,其网孔大小以保证至少一兜水稻从其中钻出而不阻碍水稻向上生长,且可生物降解网是由现有技术中的可生物降解纤维编织的网,再将网浸泡在缓释杀虫液中、再经烘干获得的,其中缓释杀虫液是由纤维粘合剂、微胶囊按照1-3:3-4的重量比均匀混合配制而成的,所述微胶囊内包裹有杀虫液;在每条鱼活动区与水稻种植区之间有拦网隔开,同样,在中心集鱼区与水稻种植区之间也有拦网隔开,通过拦网的设置以限制鱼类在中心集鱼区和鱼活动区内活动;在中心集鱼区上部搭建圆环状的平台,在每条鱼活动区域上方搭建行走桥,行走桥底部固定有两条相对的滑轨,其中一条滑轨在中心开有槽孔、两端封闭,两条滑轨上配合有同一个滑块,滑块底部竖直向下固定有一支撑杆,支撑杆上固定有赶鱼网,滑块一侧固定有穿过对应的滑轨的槽孔的L型操作杆,赶鱼网底部与鱼活动区内底部相适应配合,在中心集鱼区内有投料捕鱼装置;拦网上且位于水稻种植区侧固定有诱虫灯、雾化喷头,所有的雾化喷头最终通过管道与药液泵、药液箱连接且连通。
2.根据权利要求1所述的稻鱼共生种养系统,其特征在于,所述诱虫灯包括外壳、灯体、步甲栖息区,所述透明外壳一侧开有进出口,外壳顶壁上固定有灯体,外壳内有至少一半区域铺设有泥土,泥土中放有蚯蚓,外壳内放置有公母步甲成虫,进出口处固定有防止公母步甲成虫进出、但害虫能够正常进出的网。
3.根据权利要求2所述的稻鱼共生种养系统,其特征在于,本发明通过雾化喷头喷出的药液和微胶囊包裹的杀虫液成分是相同的,均是由辣椒汁、茶籽浸提液、橘子皮熬煮的汁液按照3-5:8-10: 2-4配制而成的,以重量计,其中橘子皮熬煮的汁液是用新鲜橘子皮没过其表面的水,先大火烧开、再熬煮1-3h所得。
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