CN214457141U - 一种基于rabf技术的卧式污水处理装置 - Google Patents
一种基于rabf技术的卧式污水处理装置 Download PDFInfo
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- CN214457141U CN214457141U CN202022816833.9U CN202022816833U CN214457141U CN 214457141 U CN214457141 U CN 214457141U CN 202022816833 U CN202022816833 U CN 202022816833U CN 214457141 U CN214457141 U CN 214457141U
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- sewage treatment
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- horizontal sewage
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- 239000010865 sewage Substances 0.000 title claims abstract description 54
- 238000000034 method Methods 0.000 title claims abstract description 15
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- 229910052757 nitrogen Inorganic materials 0.000 description 2
- OAICVXFJPJFONN-UHFFFAOYSA-N phosphorus Chemical compound 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Abstract
本实用新型公开了一种基于RABF技术的卧式污水处理装置,包括厌氧池和调节板,所述厌氧池的左端上方设置有进水口,所述管道的上端安装有输出口,所述厌氧池的右端设置有好氧池,所述支撑座的内部下端开设有通孔,所述好氧池的右端下方设置有支架,所述鼓风机的前端下方设置有输气管,所述好氧池的右端设置有RABF池,所述调节板位于集水槽的内部上端,所述RABF池的右端上方设置有出水口。该基于RABF技术的卧式污水处理装置,与现有的普通卧式污水处理装置相比,增加结构的同时大大提高了整个卧式污水处理装置的使用性能,改良后的卧式污水处理装置内部拥有去除废水中有机物机构,并且拥有可调节的集水结构,有效满足了人们的使用需求。
Description
技术领域
本实用新型涉及卧式污水处理装置技术领域,具体为一种基于RABF技术的卧式污水处理装置。
背景技术
污水是指受一定污染的来自生活和生产的排出水,丧失了原来使用功能的水简称为污水,污水处理为使污水达到排入某一水体或再次使用的水质要求对其进行净化的过程。
现有的卧式污水处理装置内外部结构均较为简单,仅采用单一好氧生化处理工艺,脱氮除磷不理想,不能较好的对污水进行处理,集水槽不能较好对污水进行可调节集水,不能很好的满足人们的使用需求,针对上述情况,在现有的卧式污水处理装置基础上进行技术创新。
实用新型内容
本实用新型的目的在于提供一种基于RABF技术的卧式污水处理装置,以解决上述背景技术中提出一般的卧式污水处理装置内外部结构均较为简单,仅采用单一好氧生化处理工艺,脱氮除磷不理想,不能较好的对污水进行处理,集水槽不能较好对污水进行可调节集水,不能很好的满足人们的使用需求问题。
为实现上述目的,本实用新型提供如下技术方案:一种基于RABF技术的卧式污水处理装置,包括厌氧池和调节板,所述厌氧池的左端上方设置有进水口,且厌氧池的内部下端设置有管道,所述管道的上端安装有输出口,所述厌氧池的右端设置有好氧池,且好氧池的内部上端安装有支撑座,所述支撑座的内部下端开设有通孔,且支撑座的的内部上端开设有生物填料,所述好氧池的右端下方设置有支架,且支架的上端设置有鼓风机,所述鼓风机的前端下方设置有输气管,所述好氧池的右端设置有RABF池,且RABF池的内部上端安装有集水槽,所述调节板位于集水槽的内部上端,且调节板的内部从左到右依次开设有大流口、小流口,所述RABF池的右端上方设置有出水口。
优选的,所述管道贯穿于厌氧池的内部,且输出口与管道之间为固定连接。
优选的,所述生物填料贯穿于支撑座的内部,且通孔关于支撑座的中心位置呈对称分布。
优选的,所述鼓风机与支架之间为固定连接,且输气管的对称中心与支架的对称中心之间相重合。
优选的,所述集水槽与RABF池之间为固定连接,且调节板贯穿于集水槽的内部。
优选的,所述调节板与集水槽之间为活动连接,且大流口贯穿于调节板的内部。
与现有技术相比,本实用新型的有益效果如下:
1.本实用新型通过厌氧池、进水口、管道、输出口的设置,操作人员可将污水通过进水口、管道及输出口输入到装置的内部,通过厌氧池可使污水中有机物发生水解、酸化和甲烷化,去除废水中的有机物,并提高污水的可生化性,有利于后续的好氧处理;
2.本实用新型通过好氧池、支撑座、通孔和生物填料的设置,通过好氧池可将污水中的有机物分解成无机物,去除污染物的功能,通过支撑座可对生物填料进行存放,污水可经过通孔进行流通,生物填料可为菌种增殖提供载体,产生反硝化可以脱氮,可去除有机物;
3.本实用新型通过鼓风机、输气管、RABF池、集水槽和调节板的设置,通过鼓风机可将气体通过输气管分别输送到好氧池及RABF池的内部,可进行曝气,通过RABF池可使污水进行环流好氧、固液分离反应,处理后的污水可进入集水槽的内部,操作人员根据需求可手动将调节板进行移动,从而可调节调节板内部的大流口及小流口,可控制集水槽的集水速度,集水槽内部的水源可通过出水口进行输出。
附图说明
图1为本实用新型正视结构示意图;
图2为本实用新型RABF池正视结构示意图;
图3为本实用新型调节板正视结构示意图。
图中:1、厌氧池;2、进水口;3、管道;4、输出口;5、好氧池;6、支撑座;7、通孔;8、生物填料;9、支架;10、鼓风机;11、输气管;12、RABF池;13、集水槽;14、调节板;15、大流口;16、小流口;17、出水口。
具体实施方式
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。
请参阅图1-3,本实用新型提供一种技术方案:一种基于RABF技术的卧式污水处理装置,包括厌氧池1和调节板14,厌氧池1的左端上方设置有进水口2,且厌氧池1的内部下端设置有管道3,管道3的上端安装有输出口4,厌氧池1的右端设置有好氧池5,且好氧池5的内部上端安装有支撑座6,管道3贯穿于厌氧池1的内部,且输出口4与管道3之间为固定连接,厌氧池1、进水口2、管道3、输出口4的设置,操作人员可将污水通过进水口2、管道3及输出口4输入到装置的内部,通过厌氧池1可使污水中有机物发生水解、酸化和甲烷化,去除废水中的有机物,并提高污水的可生化性,有利于后续的好氧处理;
支撑座6的内部下端开设有通孔7,且支撑座的6的内部上端开设有生物填料8,生物填料8贯穿于支撑座6的内部,且通孔7关于支撑座6的中心位置呈对称分布,好氧池5、支撑座6、通孔7和生物填料8的设置,通过好氧池5可将污水中的有机物分解成无机物,去除污染物的功能,通过支撑座6可对生物填料8进行存放,污水可经过通孔7进行流通,生物填料8可为菌种增殖提供载体,产生反硝化可以脱氮,可去除有机物;
好氧池5的右端下方设置有支架9,且支架9的上端设置有鼓风机10,鼓风机10与支架9之间为固定连接,且输气管11的对称中心与支架9的对称中心之间相重合,鼓风机10的前端下方设置有输气管11,好氧池5的右端设置有RABF池12,且RABF池12的内部上端安装有集水槽13,集水槽13与RABF池12之间为固定连接,且调节板14贯穿于集水槽13的内部,调节板14位于集水槽13的内部上端,且调节板14的内部从左到右依次开设有大流口15、小流口16,调节板14与集水槽13之间为活动连接,且大流口15贯穿于调节板14的内部,RABF池12的右端上方设置有出水口17,鼓风机10、输气管11、RABF池12、集水槽13和调节板14的设置,通过鼓风机10可将气体通过输气管11分别输送到好氧池5及RABF池12的内部,可进行曝气,通过RABF池12可使污水进行环流好氧、固液分离反应,处理后的污水可进入集水槽13的内部,操作人员根据需求可手动将调节板14进行移动,从而可调节调节板14内部的大流口15及小流口16,可控制集水槽13的集水速度,集水槽13内部的水源可通过出水口17进行输出。
工作原理:在使用该基于RABF技术的卧式污水处理装置,首先操作人员可将污水通过进水口2、管道3及输出口4输入到装置的内部,通过厌氧池1可使污水中有机物发生水解、酸化和甲烷化,去除废水中的有机物,并提高污水的可生化性,有利于后续的好氧处理,通过好氧池5可将污水中的有机物分解成无机物,去除污染物的功能,通过支撑座6可对生物填料8进行存放,污水可经过通孔7进行流通,生物填料8可为菌种增殖提供载体,产生反硝化可以脱氮,可去除有机物,通过鼓风机10可将气体通过输气管11分别输送到好氧池5及RABF池12的内部,可进行曝气,通过RABF池12可使污水进行环流好氧、固液分离反应,处理后的污水可进入集水槽13的内部,操作人员根据需求可手动将调节板14进行移动,从而可调节调节板14内部的大流口15及小流口16,可控制集水槽13的集水速度,集水槽13内部的水源可通过出水口17进行输出,这就是该基于RABF技术的卧式污水处理装置的工作原理。
尽管已经示出和描述了本实用新型的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本实用新型的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本实用新型的范围由所附权利要求及其等同物限定。
Claims (6)
1.一种基于RABF技术的卧式污水处理装置,包括厌氧池(1)和调节板(14),其特征在于:所述厌氧池(1)的左端上方设置有进水口(2),且厌氧池(1)的内部下端设置有管道(3),所述管道(3)的上端安装有输出口(4),所述厌氧池(1)的右端设置有好氧池(5),且好氧池(5)的内部上端安装有支撑座(6),所述支撑座(6)的内部下端开设有通孔(7),且支撑座(6)的内部上端开设有生物填料(8),所述好氧池(5)的右端下方设置有支架(9),且支架(9)的上端设置有鼓风机(10),所述鼓风机(10)的前端下方设置有输气管(11),所述好氧池(5)的右端设置有RABF池(12),且RABF池(12)的内部上端安装有集水槽(13),所述调节板(14)位于集水槽(13)的内部上端,且调节板(14)的内部从左到右依次开设有大流口(15)、小流口(16),所述RABF池(12)的右端上方设置有出水口(17)。
2.根据权利要求1所述的一种基于RABF技术的卧式污水处理装置,其特征在于:所述管道(3)贯穿于厌氧池(1)的内部,且输出口(4)与管道(3)之间为固定连接。
3.根据权利要求1所述的一种基于RABF技术的卧式污水处理装置,其特征在于:所述生物填料(8)贯穿于支撑座(6)的内部,且通孔(7)关于支撑座(6)的中心位置呈对称分布。
4.根据权利要求1所述的一种基于RABF技术的卧式污水处理装置,其特征在于:所述鼓风机(10)与支架(9)之间为固定连接,且输气管(11)的对称中心与支架(9)的对称中心之间相重合。
5.根据权利要求1所述的一种基于RABF技术的卧式污水处理装置,其特征在于:所述集水槽(13)与RABF池(12)之间为固定连接,且调节板(14)贯穿于集水槽(13)的内部。
6.根据权利要求1所述的一种基于RABF技术的卧式污水处理装置,其特征在于:所述调节板(14)与集水槽(13)之间为活动连接,且大流口(15)贯穿于调节板(14)的内部。
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