CN106977172A - 一种去除海水生物缸污染物的细菌培养砖配方及制备工艺 - Google Patents

一种去除海水生物缸污染物的细菌培养砖配方及制备工艺 Download PDF

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CN106977172A
CN106977172A CN201710176391.6A CN201710176391A CN106977172A CN 106977172 A CN106977172 A CN 106977172A CN 201710176391 A CN201710176391 A CN 201710176391A CN 106977172 A CN106977172 A CN 106977172A
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秦骥
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Abstract

本发明公开了一种去除海水生物缸污染物的细菌培养砖配方及制备工艺,采用电气石、硅藻土、镁制粘土、钠长石粉、石英粉、有机发泡颗粒等材料并辅以升温降温工艺制得培养砖,在透水砖内部形成厌氧区,反硝化细菌发生反硝化反应,硝酸盐还原为氮气,大大降低三氧化氮含量,不影响水族生长及生态平衡,使用成本低,也不会产生二次污染及毒物。

Description

一种去除海水生物缸污染物的细菌培养砖配方及制备工艺
技术领域
本发明属于水族养殖领域,特别涉及一种去除海水生物缸污染物的细菌培养砖配方及制备工艺。
背景技术
观赏水族在饲养过程中会产生大量的废弃物,这些废弃物中含有三氧化氮,三氧化氮对水族的正常生长及养殖生物缸的生态平衡带来极大影响,更有甚者导致水族死亡,大大影响了观赏的趣味,为了有效降低三氧化氮的含量,目前来说是采用大量换水、反硝化器、气泡撇除器、净水剂等方式,这些方式可以在一定程度上降低三氧化氮的含量,但是治标不治本且效果不佳,同时也会带来其他影响和不便,有的是设备成本高增加使用成本,有的是会产生二次污染,三氧化氮降低了而又产生其他毒物,也会影响水族生长和生态平衡,如果有一种东西既可以降低三氧化氮含量而又不会带来附加影响,不增加使用成本不产生二次污染,更不会影响水族生长和生态平衡,上述问题便可迎刃而解。
本发明要解决的技术问题是提供一种大大降低三氧化氮含量、不影响水族生长及生态平衡、使用成本低、不会产生二次污染的细菌培养砖及制备工艺。
发明内容
为解决上述现有技术三氧化氮降低不理想、使用成本高、影响水族生长及生态平衡、会产生二次污染及毒物等问题,本发明采用如下技术方案:
本发明提供一种去除海水生物缸污染物的细菌培养砖配方,配方中主要成分包括电气石20份,硅藻土8份,镁制粘土40份,钠长石粉15份,石英粉5份,有机发泡颗粒12份。
作为对本发明的改进,所述有机发泡颗粒为聚丙烯颗粒。
作为对本发明的进一步改进,所述电气石为镁电气石或黑电气石。
作为对本发明的进一步改进,所述镁制粘土的成分按重量百分比包括SiO2 55.64%,Al2O 36. 82%,Fe2O3 0.05%,CaO 4. 71%,MgO2 0. 35%,TiO2 0. 42%, K2O 0.10%,Na2O 0. 35%,I2 9. 56%。
一种去除海水生物缸污染物的细菌培养砖的制备工艺,制备工艺包括以下步骤,1)混料 按配方配比混合配料,压制成型,干燥;2)一次加热 从室温均匀升温到1180°C,均匀升温时间为8小时;3)一次保温 在1180°C时保温1小时;4)一次降温 再均匀降温至1160°C,均匀降温时间为0.5小时;5)二次保温 在1160°C时保温1小时;6)二次加热 再从1160°C均匀升温到1220°C,均匀升温时间为1小时;7)三次保温 在1220°C时保温2小时;8)二次降温制得成品 再均匀降温至室温,均匀降温时间为6小时,得到成品。
本发明的有益效果在于:采用电气石、硅藻土、镁制粘土、钠长石粉、石英粉、有机发泡颗粒等材料并辅以升温降温工艺制得培养砖,在透水砖内部形成厌氧区,反硝化细菌发生反硝化反应,硝酸盐还原为氮气,大大降低三氧化氮含量,不影响水族生长及生态平衡,使用成本低,也不会产生二次污染及毒物。
具体实施方式
下面结合具体的实施例对本发明技术方案作进一步的详细描述,以使本领域的技术人员可以更好的理解本发明并能予以实施,但所举实施例不作为对本发明的限定:
一种去除海水生物缸污染物的细菌培养砖配方,配方中主要成分包括电气石20份,硅藻土8份,镁制粘土40份,钠长石粉15份,石英粉5份,有机发泡颗粒12份。
其中,所述有机发泡颗粒为聚丙烯颗粒,有机发泡颗粒也可用锯末来代替,效果是一样的,锯末大小为2mm。
另外,所述电气石为镁电气石或黑电气石,再有所述镁制粘土的成分按重量百分比包括SiO2 55. 64%,Al2O 36. 82%,Fe2O3 0.05%,CaO 4. 71%,MgO2 0. 35%,TiO2 0.42%, K2O 0.10%,Na2O 0. 35%,I2 9. 56%。
一种去除海水生物缸污染物的细菌培养砖的制备工艺,制备工艺包括以下步骤,1)混料 按配方配比混合配料,压制成型,干燥;2)一次加热 从室温均匀升温到1180°C,均匀升温时间为8小时;3)一次保温 在1180°C时保温1小时;4)一次降温 再均匀降温至1160°C,均匀降温时间为0.5小时;5)二次保温 在1160°C时保温1小时;6)二次加热 再从1160°C均匀升温到1220°C,均匀升温时间为1小时;7)三次保温 在1220°C时保温2小时;8)二次降温制得成品 再均匀降温至室温,均匀降温时间为6小时,得到成品。
通过我们的反复试验,采用这种培养砖应用于水族箱的过滤系统中,因不完全透水,因此在其内部形成厌氧区,反硝化细菌在此进行反硝化生化过程,将三氧化氮转化为氮气,降低了污染提升了水质,为水族生长提供了健康的生存环境。
而培养砖的制备工艺,是通过多次升温降温及保温等来保证超大过滤砖的完整而不开裂,选用电气石和高质量过滤材料的硅藻土、镁质粘土、有机发泡颗粒、长石粉、石英粉混合高温烧制具有规则的长方体和正方形立体形状,其制品孔径在0.01-5mm之间,吸水率在30-60%之间,其颜色是白色、黄色和灰色,每个制品的重量为500-5000克。较一般培菌过滤材料只能去除氨氮和亚硝酸盐污染的功能基础上,创新性的加入了去除硝酸盐污染的功能,在透水砖内部形成厌氧区,反硝化细菌发生反硝化反应,硝酸盐还原为氮气,大大降低三氧化氮含量,不影响水族生长及生态平衡,使用成本低,也不会产生二次污染及毒物。
上述实施例并非限定本发明的产品形态和式样,任何所属技术领域的普通技术人员对其所做的适当变化或修饰,皆应视为不脱离本发明的专利范畴。

Claims (5)

1.一种去除海水生物缸污染物的细菌培养砖配方,其特征在于:配方中主要成分包括电气石20份,硅藻土8份,镁制粘土40份,钠长石粉15份,石英粉5份,有机发泡颗粒12份。
2.根据权利要求1所述的一种去除海水生物缸污染物的细菌培养砖配方,其特征在于:所述有机发泡颗粒为聚丙烯颗粒。
3.根据权利要求1所述的一种去除海水生物缸污染物的细菌培养砖配方,其特征在于:所述电气石为镁电气石或黑电气石。
4.根据权利要求1所述的一种去除海水生物缸污染物的细菌培养砖配方,其特征在于:所述镁制粘土的成分按重量百分比包括SiO2 55. 64%,Al2O 36. 82%,Fe2O3 0.05%,CaO4. 71%,MgO2 0. 35%,TiO2 0. 42%, K2O 0.10%,Na2O 0. 35%,I2 9. 56%。
5.根据权利要求1所述的一种去除海水生物缸污染物的细菌培养砖的制备工艺,其特征在于:制备工艺包括以下步骤,1)混料 按配方配比混合配料,压制成型,干燥;2)一次加热 从室温均匀升温到1180°C,均匀升温时间为8小时;3)一次保温 在1180°C时保温1小时;4)一次降温 再均匀降温至1160°C,均匀降温时间为0.5小时;5)二次保温 在1160°C时保温1小时;6)二次加热 再从1160°C均匀升温到1220°C,均匀升温时间为1小时;7)三次保温 在1220°C时保温2小时;8)二次降温制得成品 再均匀降温至室温,均匀降温时间为6小时,得到成品。
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Publication number Priority date Publication date Assignee Title
CN114345012A (zh) * 2022-01-13 2022-04-15 福州市益通陶瓷科技有限公司 一种水族用过滤材料及其制备方法

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CN103028378A (zh) * 2012-12-11 2013-04-10 刘建明 具有远红外线的高级水族用过滤材料及其制备方法
CN103030213A (zh) * 2012-12-11 2013-04-10 刘建明 具有高孔隙率的水族用过滤材料及其制备方法

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103028378A (zh) * 2012-12-11 2013-04-10 刘建明 具有远红外线的高级水族用过滤材料及其制备方法
CN103030213A (zh) * 2012-12-11 2013-04-10 刘建明 具有高孔隙率的水族用过滤材料及其制备方法

Cited By (1)

* Cited by examiner, † Cited by third party
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CN114345012A (zh) * 2022-01-13 2022-04-15 福州市益通陶瓷科技有限公司 一种水族用过滤材料及其制备方法

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Application publication date: 20170725