CN110935426A - 一种净水用活性炭滤芯及其制备方法 - Google Patents
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- DGNIJJSSARBJSH-NLJAFYFLSA-L magnesium (E)-3-[(3R)-16-ethenyl-11-ethyl-3-methoxycarbonyl-12,17,21,26-tetramethyl-4-oxo-7,24-diaza-23,25-diazanidahexacyclo[18.2.1.15,8.110,13.115,18.02,6]hexacosa-1(22),2(6),5(26),7,9,11,13,15(24),16,18,20-undecaen-22-yl]prop-2-enoic acid Chemical compound [Mg++].CCc1c(C)c2cc3nc(cc4[n-]c(c(\C=C\C(O)=O)c4C)c4[C@@H](C(=O)OC)C(=O)c5c(C)c(cc1[n-]2)nc45)c(C)c3C=C DGNIJJSSARBJSH-NLJAFYFLSA-L 0.000 claims description 3
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Abstract
本发明公开了一种净水用活性炭滤芯,其特征在于,由以下重量份的原料组成:活性炭120‑200份,聚乙烯1‑3份,亚硒酸钠10‑15份,粘土8‑10份,镁10‑12份,麦饭石5‑10份,防臭剂5‑10份,凹凸棒石20‑30份,纳米氧化钛5‑8份,托玛琳粉2‑6份。该活性炭滤芯吸附性强,净水化效果好。其制备方法为:步骤1,按照上述配比称取各原料;步骤2,将步骤1称取的各原料混合后,研磨粉碎;步骤3,将步骤2所得混合料置入模具中然后施压,然后将压制成型的物料入炉进行烧结热处理,在温度300‑320℃的炉内保温50‑80分钟,烧制成型并出炉,冷却到20‑30℃脱模,即得所述活性炭滤芯。
Description
技术领域
本发明属于水净化技术领域,具体涉及一种净水用活性炭滤芯,还涉及上述一种净水用活性炭滤芯的制备方法。
背景技术
城市管道污染以及各大湖泊的污染加速了净水器的发展,净水器的核心,当热是它的“芯”。
就目前的水污染环境而言,选择和运用活性炭是处理和净化水的核心技术问题;传统的活性炭棒滤芯对饮用水中含有的污染物净化效果有限,对水源来自水库的饮用水,其活性不强,生产工艺滞后。
发明内容
本发明的目的是提供一种净水用活性炭滤芯,该活性炭滤芯吸附性强,净水化效果好。
本发明的目的是提供一种净水用活性炭滤芯的制备方法,该方法简单易操作。
本发明所采用的技术方案是,一种净水用活性炭滤芯,由以下重量份的原料组成:活性炭120-200份,聚乙烯1-3份,亚硒酸钠10-15份,粘土8-10份,镁10-12份,麦饭石5-10份,防臭剂5-10份,凹凸棒石20-30份,纳米氧化钛5-8份,托玛琳粉2-6份。
本发明的特点还在于,
防臭剂为镁卟啉化合物。
镁卟啉化合物为叶绿素a、叶绿素b、叶绿素c、叶绿素d、叶绿素f、原叶绿素中的一种或几种。
本发明所采用另一种的技术方案是,一种净水用活性炭滤芯的制备方法,具体按照以下步骤实施:
步骤1,按照以下重量份称取各原料:活性炭120-200份,聚乙烯1-3份,亚硒酸钠10-15份,粘土8-10份,镁10-12份,麦饭石5-10份,防臭剂5-10份,凹凸棒石20-30份,纳米氧化钛5-8份,托玛琳粉2-6份;
步骤2,将步骤1称取的各原料混合后,研磨粉碎;
步骤3,将步骤2所得混合料置入模具中然后施压,然后将压制成型的物料入炉进行烧结热处理,在温度300-320℃的炉内保温50-80分钟,烧制成型并出炉,冷却到20-30℃脱模,即得所述活性炭滤芯。
本发明的特点还在于,
步骤1中,研磨粉碎后混合粉的粒径大小不大于200目。
步骤2中,施压压力为15-20MPa。
本发明的有益效果为:本发明的滤芯使用寿命长、过滤性强,通水性好,吸附性强,净化彻底,更有益饮用者健康。该制备方法简单易操作。
具体实施方式
下面结合具体实施方式对本发明进行详细说明。
本发明提供了一种净水用活性炭滤芯,由以下重量份的原料组成:活性炭120-200份,聚乙烯1-3份,亚硒酸钠10-15份,粘土8-10份,镁10-12份,麦饭石5-10份,防臭剂5-10份,凹凸棒石20-30份,纳米氧化钛5-8份,托玛琳粉2-6份。
防臭剂为镁卟啉化合物。
镁卟啉化合物为叶绿素a、叶绿素b、叶绿素c、叶绿素d、叶绿素f、原叶绿素中的一种或几种。
本发明还提供了上述一种净水用活性炭滤芯的制备方法,具体按照以下步骤实施:
一种净水用活性炭滤芯的制备方法,具体按照以下步骤实施:
步骤1,按照以下重量份称取各原料:活性炭120-200份,聚乙烯1-3份,亚硒酸钠10-15份,粘土8-10份,镁10-12份,麦饭石5-10份,防臭剂5-10份,凹凸棒石20-30份,纳米氧化钛5-8份,托玛琳粉2-6份;
步骤2,将步骤1称取的各原料混合后,研磨粉碎;
步骤3,将步骤2所得混合料置入模具中然后施压,然后将压制成型的物料入炉进行烧结热处理,在温度300-320℃的炉内保温50-80分钟,烧制成型并出炉,冷却到20-30℃脱模,即得所述活性炭滤芯。
步骤1中,研磨粉碎后混合粉的粒径大小不大于200目。
步骤2中,施压压力为15-20MPa。
实施例1
一种净水用活性炭滤芯的制备方法,具体按照以下步骤实施:
步骤1,按照以下重量份称取各原料:活性炭200份,聚乙烯3份,亚硒酸钠15份,粘土10份,镁12份,麦饭石10份,防臭剂10份,凹凸棒石30份,纳米氧化钛8份,托玛琳粉6份;
步骤2,将步骤1称取的各原料混合后,研磨粉碎;
步骤3,将步骤2所得混合料置入模具中然后施压,然后将压制成型的物料入炉进行烧结热处理,在温度320℃的炉内保温80分钟,烧制成型并出炉,冷却到30℃脱模,即得所述活性炭滤芯。
步骤1中,研磨粉碎后混合粉的粒径大小不大于200目。
步骤2中,施压压力为20MPa。
实施例2
一种净水用活性炭滤芯的制备方法,具体按照以下步骤实施:
步骤1,按照以下重量份称取各原料:活性炭150份,聚乙烯2份,亚硒酸钠11份,粘土9份,镁11份,麦饭石6份,防臭剂6份,凹凸棒石25份,纳米氧化钛6份,托玛琳粉5份;
步骤2,将步骤1称取的各原料混合后,研磨粉碎;
步骤3,将步骤2所得混合料置入模具中然后施压,然后将压制成型的物料入炉进行烧结热处理,在温度310℃的炉内保温60分钟,烧制成型并出炉,冷却到25℃脱模,即得所述活性炭滤芯。
步骤1中,研磨粉碎后混合粉的粒径大小不大于200目。
步骤2中,施压压力为16MPa。
实施例3
步骤1,按照以下重量份称取各原料:活性炭120份,聚乙烯1份,亚硒酸钠10份,粘土8份,镁10份,麦饭石5份,防臭剂5份,凹凸棒石20份,纳米氧化钛5份,托玛琳粉2份;
步骤2,将步骤1称取的各原料混合后,研磨粉碎;
步骤3,将步骤2所得混合料置入模具中然后施压,然后将压制成型的物料入炉进行烧结热处理,在温度300℃的炉内保温50分钟,烧制成型并出炉,冷却到20℃脱模,即得所述活性炭滤芯。
步骤1中,研磨粉碎后混合粉的粒径大小不大于200目。
步骤2中,施压压力为15MPa。
Claims (6)
1.一种净水用活性炭滤芯,其特征在于,由以下重量份的原料组成:活性炭120-200份,聚乙烯1-3份,亚硒酸钠10-15份,粘土8-10份,镁10-12份,麦饭石5-10份,防臭剂5-10份,凹凸棒石20-30份,纳米氧化钛5-8份,托玛琳粉2-6份。
2.根据权利要求1所述的一种净水用活性炭滤芯,其特征在于,所述防臭剂为镁卟啉化合物。
3.根据权利要求1所述的一种净水用活性炭滤芯,其特征在于,所述镁卟啉化合物为叶绿素a、叶绿素b、叶绿素c、叶绿素d、叶绿素f、原叶绿素中的一种或几种。
4.一种净水用活性炭滤芯的制备方法,其特征在于,具体按照以下步骤实施:
步骤1,按照以下重量份称取各原料:活性炭120-200份,聚乙烯1-3份,亚硒酸钠10-15份,粘土8-10份,镁10-12份,麦饭石5-10份,防臭剂5-10份,凹凸棒石20-30份,纳米氧化钛5-8份,托玛琳粉2-6份;
步骤2,将步骤1称取的各原料混合后,研磨粉碎;
步骤3,将步骤2所得混合料置入模具中然后施压,然后将压制成型的物料入炉进行烧结热处理,在温度300-320℃的炉内保温50-80分钟,烧制成型并出炉,冷却到20-30℃脱模,即得所述活性炭滤芯。
5.根据权利要求1所述的一种净水用活性炭滤芯的制备方法,其特征在于,步骤1中,研磨粉碎后混合粉的粒径大小不大于200目。
6.根据权利要求1所述的一种净水用活性炭滤芯的制备方法,其特征在于,步骤2中,施压压力为15-20MPa。
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