CN102649934A - 一种超大型秸秆沼气池 - Google Patents

一种超大型秸秆沼气池 Download PDF

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CN102649934A
CN102649934A CN2012101316479A CN201210131647A CN102649934A CN 102649934 A CN102649934 A CN 102649934A CN 2012101316479 A CN2012101316479 A CN 2012101316479A CN 201210131647 A CN201210131647 A CN 201210131647A CN 102649934 A CN102649934 A CN 102649934A
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李卫明
李玉英
李晓明
张雪云
孙叶
张岩
王贵成
王爱平
孙全中
潘浩
管珍珍
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NANYANG CITY LVYE CIRCLE AGRICULTURE RESEARCH INSTITUTE
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Abstract

本发明公开了一种超大型秸秆沼气池,包括周围设置水槽的发酵池,所述发酵区的上部设置带小孔的漫灌支撑板,所述漫灌支撑板连接沼液管,所述沼液管通过循环泵与沼液区连通,漫灌支撑板与发酵池的上部设置集气罩,所述集气罩的下面通过集气管与设置在发酵池外的负压集气储气装置连接。通过循环泵将沼液区内的沼液提升到漫灌支撑板上,沼液在漫灌支撑板的双层带孔铺漫,能全面覆盖发酵区的上表面,漫湿更为均匀,提高了沼液与秸杆的接触面,漫灌量也更易控制,更为重要的节省了大量的空间,增加了池容的利用率。

Description

一种超大型秸秆沼气池
技术领域
本发明属于沼气池技术领域,特别涉及一种超大型秸秆沼气池。 
背景技术
当前,随着新农村建设步伐的加快,与三农有关的许多工作都配套到位,其中对于中国大多数农业区来说,沼气池特别是大型沼气池建设也成为中间重要的一块工作,一方面是清洁能源的问题,另一方面是消化秸秆的问题,两方面合理可靠解决的途径很多,但是在实践中产业化应该并取得一定效果的沼气池技术一直是大家关注的,而且随着国家十二五规划的深入,农村沼气池将会迎来一个大的发展机遇。当前沼气池存在的问题是,一方面沼气池的产气量不足,吞吐物料量小,产业化程度不高,另一方面,无论是小型沼气池还是大型池,其运行及管理还比较麻烦,不利于节约人力物力。 
国内发明专利公开号为101372658的专利,公开了一种在沼气池内直接降解秸杆原料的设备及方法,所述设备包括一个透水隔层,所述透水隔层的上部设置有多个出气口的通气管道,通气管道的上面放秸杆原料和发酵菌剂,所述透水隔层的下部为发酵液,所述发酵液连接一个循环泵,在所述循环泵上连接一个带喷头的喷管,所述喷管位于秸杆原料的上方。通过秸杆原料入池,加发酵菌剂,调节发酵液碳氮比及浓度,向秸杆原料喷淋发酵液,对湿润的秸杆均匀通气,发酵结束后投入菌种,开始沼气生产。使用该设备及其方法可以省去人工拌料、有氧堆沤的发酵环节,加快了秸杆原料发酵的速度。由于沼液的循环流动,提高了沼液与秸杆的接触面,同时相比于当前推广使用的秸杆沼气池,本装置提高了沼气池发酵原料的干物质浓度,增加了池容的利用率,提高了秸杆沼气池的产气率。但是其存在几个问题,一方面喷管的喷淋效果不够好,不能均匀的在整个秸秆堆料上渗透,另外喷淋形式需要有较大的空间,这必然影响物料的加入量;另外,原来的沼气收集输送形式使得气体在软体罩压力下有一定的压强,容易漏气,并且具有一定的安全隐患,软体罩的外部盖设有固定罩,进出物料都很是不便。 
发明内容
本发明提供一种能够连续供气、物料进出方便、产气率效果更好、供气稳定、操作方便的超大型秸秆沼气池。 
 一种超大型秸秆沼气池,包括周围设置水槽的发酵池,所述发酵池内包括由透水隔层分开位于发酵池底部的沼液区和中上部的发酵区,所述发酵区的上部设置带小孔的漫灌支撑板,所述漫灌支撑板连接沼液管,所述沼液管通过循环泵与沼液区连通,漫灌支撑板与发酵池的上部设置集气罩,所述集气罩的四周与发酵池四周水槽连接,所述集气罩的下面通过集气管与设置在发酵池外的负压集气储气装置连接。 
所述发酵池包括多个独立的分发酵池,分发酵池间的可以相互连通或断开。 
所述漫灌支撑板为双层带孔结构。 
所述沼气池还包括进出料装置,所述进出料装置包括一个设置在沼气池开口上方的导轨,所述导轨上设置进出料行车,所述行车上设置与钢丝绳连接并能伸进发酵池内的抓料爪和控制器,所述控制器控制行车移动与所述抓料爪升降开合。 
所述集气罩为双层集气罩。 
所述导轨上设置集气罩卷辊。 
由于本发明包括多个独立的发酵室,可以保证在对其中一个或几个发酵室进行发酵原料更新时,其他发酵室仍然能够正常工作,保证对连续供气。所述发酵区的上部设置带小孔的漫灌支撑板,所述漫灌支撑板连接沼液管,所述沼液管通过循环泵与沼液区连通,通过循环泵将沼液区内的沼液提升到漫灌支撑板上,沼液在漫灌支撑板的双层带孔铺漫,能全面覆盖发酵区的上表面,漫湿更为均匀,提高了沼液与秸杆的接触面,漫灌量也更易控制,更为重要的节省了大量的空间,使单池进料量增加,增加了池容的利用率,有利于产气量增加。所述集气罩的下面通过集气管与设置在发酵池外的负压集气储气装置连接,使得产生的沼气都被及时收集贮存,不再存在沼气池里,安全性提高,负压使得集气罩平落在漫灌支撑板上,漫灌支撑板起到很好的支撑作用,另外集气罩平落状态再结合沼气池上的导轨与集气罩卷辊,也利于集气罩开启和封闭,便于进料和出料。双层集气罩的存在使得沼气池的保温效果更好。进出料行车和集气罩卷辊都设置在导轨上,能自由移动,可以方便地在发酵池上方移动,便于大型沼气池内的开罩进料闭罩操作和开罩出料闭罩;机械抓料爪抓取和秸杆量大,并且能够自动开合,能够加快进出料的速度,节省人工,结构简单,造价低,提高进出料的效率。 
附图说明
下面结合附图对本发明做进一步的说明: 
图1是本发明的结构示意图;
图2是本发明进出料装置和集气罩卷辊的结构示意图。
具体实施方式
如图1、图2所示,一种超大型秸秆沼气池,包括周围设置水槽5的发酵池2,所述发酵池2内包括由透水隔层14分开位于发酵池2底部的沼液区3和中上部的发酵区1,所述发酵区1的上部设置带小孔6的漫灌支撑板9,所述漫灌支撑板9连接沼液管7,所述沼液管7通过循环泵8与沼液区3连通,漫灌支撑板9与发酵池2的上部设置集气罩4,所述集气罩4的四周与发酵池2四周水槽5连接,所述集气罩4的下面通过集气管与设置在发酵池2外的负压集气储气装置15连接。通过循环泵将沼液区内的沼液提升到漫灌支撑板上,沼液在漫灌支撑板的双层带孔铺漫,能全面覆盖发酵区的上表面,漫湿更为均匀,提高了沼液与秸杆的接触面,漫灌量也更易控制,更为重要的节省了大量的空间,使单池进料量增加,增加了池容的利用率,有利于产气量增加。所述集气罩的下面通过集气管与设置在发酵池外的负压集气储气装置连接,使得产生的沼气都被及时收集贮存,不再存在沼气池里,安全性提高,负压使得集气罩平落在漫灌支撑板上,漫灌支撑板起到很好的支撑作用。 
所述发酵池包括多个独立的分发酵池,分发酵池间的可以相互连通或断开。可以保证在对其中一个或几个发酵室进行发酵原料更新时,其他发酵室仍然能够正常工作,保证对连续供气。 
所述漫灌支撑板9为双层带孔结构。 
所述沼气池还包括进出料装置,所述进出料装置包括一个设置在沼气池2开口上方的导轨10,所述导轨10上设置进出料行车12,所述行车12上设置与钢丝绳连接并能伸进发酵池内的抓料爪13和控制器,所述控制器控制行车12移动与所述抓料爪13升降开合。 
所述集气罩4为双层集气罩,使得沼气池的保温效果更好。。 
所述导轨12上设置集气罩卷辊11。集气罩4平落状态再结合沼气池上的导轨与集气罩卷辊11,也利于集气罩1开启和封闭,便于进料和出料。

Claims (7)

1.一种超大型秸秆沼气池,包括周围设置水槽的发酵池,所述发酵池内包括由透水隔层分开位于发酵池底部的沼液区和中上部的发酵区,其特征在于:所述发酵区的上部设置带小孔的漫灌支撑板,所述漫灌支撑板连接沼液管,所述沼液管通过循环泵与沼液区连通,漫灌支撑板与发酵池的上部设置集气罩,所述集气罩的四周与发酵池四周水槽连接,所述集气罩的下面通过集气管与设置在发酵池外的负压集气储气装置连接。
2.根据权利要求1所述的超大型秸秆沼气池,其特征在于:所述发酵池包括多个独立的分发酵池,分发酵池间的可以相互连通或断开。
3.根据权利要求1所述的超大型秸秆沼气池,其特征在于:所述漫灌支撑板为双层带孔结构。
4.根据权利要求1-3所述的任一项超大型秸秆沼气池,其特征在于:所述沼气池还包括进出料装置,所述进出料装置包括一个设置在沼气池开口上方的导轨,所述导轨上设置进出料行车,所述行车上设置与钢丝绳连接并能伸进发酵池内的抓料爪和控制器,所述控制器控制行车移动与所述抓料爪升降开合。
5.根据权利要求1-3所述的任一项超大型秸秆沼气池,其特征在于:所述集气罩为双层集气罩。
6.根据权利要求4所述的超大型秸秆沼气池,其特征在于:所述导轨上设置集气罩卷辊。
7.根据权利要求5所述的超大型秸秆沼气池,其特征在于:所述导轨上设置集气罩卷辊。
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