CN105670430B - 一种厚壳贻贝贝壳粉生态涂料及其制备方法 - Google Patents

一种厚壳贻贝贝壳粉生态涂料及其制备方法 Download PDF

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CN105670430B
CN105670430B CN201610117169.4A CN201610117169A CN105670430B CN 105670430 B CN105670430 B CN 105670430B CN 201610117169 A CN201610117169 A CN 201610117169A CN 105670430 B CN105670430 B CN 105670430B
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章飞军
叶慧明
应岳
蒋红
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Abstract

本发明涉及涂料技术领域,具体涉及一种厚壳贻贝贝壳粉生态涂料及其制备方法。按重量份数计,包括以下组分:改性厚壳贻贝贝壳粉40‑50份,羧甲基纤维素钠10‑20份,煅烧高岭土10‑15份,滑石粉3‑5份,纳米二氧化钛5‑10份,孔石莼粉3‑5份,聚乙二醇3‑5份,丙烯酸乳液12‑18份,乙二醇5‑8份,卡拉胶2‑4份,水50‑100份,辅料3‑8份。本发明的涂料具有环保、防潮、耐老化、防静电的优点。

Description

一种厚壳贻贝贝壳粉生态涂料及其制备方法
技术领域
本发明涉及涂料技术领域,具体涉及一种厚壳贻贝贝壳粉生态涂料及其制备方法。
背景技术
内墙涂料是庞大涂料市场中的一部分,但却和每个人的生活休戚相关。内墙涂料对建筑物起装饰和保护作用,且质轻、安全、施工简便、工效高、工期短、维修更新方便、造价较低、颜色丰富、图案繁多,被建筑界称为“凝固的艺术”,在城乡建筑物中扮演着极其重要的角色。
在初期,受生活水平的局限,墙面的装饰,只是停留在刮大白、仿瓷等纯粹的简单装饰阶段;家装形式也相对简陋。随着人们生活水平的提高和审美层次的改变,人们对家装的要求也有了一定的提升。对墙面的花饰、色彩有了更高的需求。应需而生的内墙装饰产品也如雨后春笋般层出不穷——壁纸、乳胶漆、硅藻泥、液态壁纸等不一而足。“尺有所长,寸有所短”,品种虽丰富,却都在不同程度上表现出了各自的优势与不足。
内墙涂料的市场纷繁,在短时间内满足了消费者的各项需要。然而,随着科学进步,健康、环保、绿色、节能等知识的普及,消费者的心里开始骚动。人们在追求美观、大方、个性装饰同时,对健康、安全、绿色环保等性能有了更高的要求。特别是在媒体不断爆料出装修材料甲醛等遗留物导致白血病、不孕不育、癌症等发病率增高后,惊人的数据更敲响了家装消费者的警钟!甲醛等有害气体存在于建筑材料、板材、油漆、地毯、家具、沙发等装修的居室中。而超标的甲醛、苯等有害物质释放期为3—15年。而相关的卫生部门也披露出:40%的癌症老人患者与室内装修污染密切相关;90%的白血病患儿家里半年内装修过;同时70%以上不孕症患者家中1—2年内也进行了装修。瞬间,消费者警醒,并强烈渴求一种产品,既能满足个性化装饰需求,又能保证自身和家人的健康。
发明内容
本发明的目的是为了解决上述问题,提供一种厚壳贻贝贝壳粉生态涂料,同时,本发明也提供了该涂料的制备方法。
为了达到上述发明目的,本发明采用以下技术方案:
一种厚壳贻贝贝壳粉生态涂料,按重量份数计,包括以下组分:改性厚壳贻贝贝壳粉40-50份,羧甲基纤维素钠10-20份,煅烧高岭土10-15份,滑石粉3-5份,纳米二氧化钛5-10份,孔石莼粉3-5份,聚乙二醇3-5份,丙烯酸乳液12-18份,乙二醇5-8份,卡拉胶2-4份,水50-100份,辅料3-8份。
贝壳粉具有腔体结构,但是未改性前,该腔体结构的作用效果不明显,且对有害气体吸附后容易受热再进行二次释放,这样的结果只是暂时改变了有害气体的浓度,不能够长期降低伤害。经改性后的贝壳粉,能够更好地吸附甲醛等有害气体,由于室内甲醛等有害气体都是在装修的过程中一次性地潜伏,因此,将改性后的贝壳粉用于制备涂料,可以将室内的甲醛等有害气体吸附后,尽可能多的永久封存,不会再次释放,对人体造成伤害。
孔石莼粉不仅可以防污,避免对油烟类气体形成吸附,更重要的是抑制有害气体被涂料吸收后的释放,从而将有害气体稳定地吸附在涂料内层。孔石莼粉一方面与部分有害气体结合,形成稳定络合物,另一方面,能够将部分有害气体封闭在涂料内层,降低被吸附气体的再次释放。
羧甲基纤维素钠促进孔石莼的分散并加强与贝壳粉的结合。
聚乙二醇和卡拉胶不仅助于孔石莼与改性后的贝壳粉的结合,同时降低孔石莼与改性后的贝壳粉形成的络合机制的逆转。
优选的,还包括改性玄武岩2-4份,磷酸镁0.5-0.8份。
改性玄武岩采用质量浓度百分比为10-15%过氧化氢和20-30%聚醋酸乙烯酯的水混合液对玄武岩浸泡3-5h,然后50℃下烘干。
优选的,所述改性厚壳贻贝贝壳粉的制备方法具体为:
(1)首先将厚壳贻贝贝壳清洗干净,然后将其置于1050℃下煅烧并粉碎至300-500目成为厚壳贻贝贝壳粉末;
(2)将枫叶在55-65℃的温度下烘干,然后粉碎至300-500目,采用乙二醇乙醚醋酸酯与乙醇比例为1:5的混合溶剂中60-65℃加热回流1-2h,浓缩后,去除溶剂,将浓缩物加质量浓度为1-2%的柠檬酸水溶液形成混合液;
(3)将粉碎好的厚壳贻贝贝壳粉末置于上述混合液中,于45-50℃下不断搅拌0.5-1h;
(4)将步骤(3)的产物采用45-50℃鼓风干燥箱中烘干,得到改性厚壳贻贝贝壳粉。
优选的,所述孔石莼粉的制备方法为:将孔石莼采用质量浓度为3-5%的碳酸氢钠溶液中,于50℃下处理10-30分钟,然后经过滤后采用45-50℃鼓风干燥箱中烘干,并将其粉碎至800目,待用。
优选的,所述辅料为消泡剂和分散剂。
消泡剂为水性消泡剂。
一种厚壳贻贝贝壳粉生态涂料的其制备方法,包括以下步骤:
(1)将改性厚壳贻贝贝壳粉40-50份加孔石莼粉3-5份和水50-100份进行研磨10-20分钟;
(2)在不断搅拌中,加入聚乙二醇3-5份和卡拉胶2-4份,搅拌均匀;
(3)在不断搅拌中,将羧甲基纤维素钠10-20份,煅烧高岭土10-15份,滑石粉3-5份,纳米二氧化钛5-10份,丙烯酸乳液12-18份,乙二醇5-8份,辅料3-8份,搅拌并研磨;
(4)将得到的混合液在45-50℃搅拌1-3h,得到厚壳贻贝贝壳粉生态涂料。
该制备方法,可以将改性后的贝壳粉与孔石莼深度结合,共同形成稳定机制,促进涂料对有害气体的吸收。
本发明与现有技术相比,有益效果是:
1、环保,能够永久吸附甲醛、苯、氨气等有害气体分子;也可以吸附异味的小分子;
2、防光污染,且耐老化;
3、防静电;
4、防潮,能够自适应吸附释放水分子,不易因室内空气潮湿而变质。
具体实施方式
下面通过具体实施例对本发明的技术方案作进一步描述说明。
如果无特殊说明,本发明的实施例中所采用的原料均为本领域常用的原料,实施例中所采用的方法,均为本领域的常规方法。
实施例1:
首先,按照以下步骤制备改性厚壳贻贝贝壳粉,具体为:
(1)首先将厚壳贻贝贝壳清洗干净,然后将其置于1050℃下煅烧并粉碎至300目成为厚壳贻贝贝壳粉末;
(2)将枫叶在65℃的温度下烘干,然后粉碎至300目,采用乙二醇乙醚醋酸酯与乙醇比例为1:5的混合溶剂中65℃加热回流1h,浓缩后,去除溶剂,将浓缩物加质量浓度为2%的柠檬酸水溶液形成混合液;
(3)将粉碎好的厚壳贻贝贝壳粉末置于上述混合液中,于45℃下不断搅拌1h;
(4)将步骤(3)的产物采用45℃鼓风干燥箱中烘干,得到改性厚壳贻贝贝壳粉。
然后,制备孔石莼粉:
将孔石莼采用质量浓度为3%的碳酸氢钠溶液中,于50℃下处理30分钟,然后经过滤后采用45℃鼓风干燥箱中烘干,并将其粉碎至800目,待用。
以每份1kg,按照以下配比准备一种厚壳贻贝贝壳粉生态涂料的原料:
改性厚壳贻贝贝壳粉50份,羧甲基纤维素钠10份,煅烧高岭土15份,滑石粉3份,纳米二氧化钛10份,孔石莼粉3份,聚乙二醇5份,丙烯酸乳液12份,乙二醇8份,卡拉胶2份,水100份,改性玄武岩2份,磷酸镁0.5份,辅料3份。所述辅料为消泡剂和分散剂
并按照以下方法步骤制备一种厚壳贻贝贝壳粉生态涂料:
(1)将改性厚壳贻贝贝壳粉加孔石莼粉和水进行研磨10分钟;
(2)在不断搅拌中,加入聚乙二醇和卡拉胶,搅拌均匀;
(3)在不断搅拌中,将羧甲基纤维素钠,煅烧高岭土,滑石粉,纳米二氧化钛,丙烯酸乳液,乙二醇,辅料,搅拌并研磨;
(4)将得到的混合液在50℃搅拌1h,得到厚壳贻贝贝壳粉生态涂料。
实施例2:
首先,按照以下步骤制备改性厚壳贻贝贝壳粉,具体为:
(1)首先将厚壳贻贝贝壳清洗干净,然后将其置于1050℃下煅烧并粉碎至500目成为厚壳贻贝贝壳粉末;
(2)将枫叶在55℃的温度下烘干,然后粉碎至500目,采用乙二醇乙醚醋酸酯与乙醇比例为1:5的混合溶剂中60℃加热回流2h,浓缩后,去除溶剂,将浓缩物加质量浓度为1%的柠檬酸水溶液形成混合液;
(3)将粉碎好的厚壳贻贝贝壳粉末置于上述混合液中,于50℃下不断搅拌0.5h;
(4)将步骤(3)的产物采用50℃鼓风干燥箱中烘干,得到改性厚壳贻贝贝壳粉。
然后,制备孔石莼粉:
将孔石莼采用质量浓度为5%的碳酸氢钠溶液中,于50℃下处理10分钟,然后经过滤后采用50℃鼓风干燥箱中烘干,并将其粉碎至800目,待用。
以每份1kg,按照以下配比准备一种厚壳贻贝贝壳粉生态涂料的原料:
改性厚壳贻贝贝壳粉40份,羧甲基纤维素钠20份,煅烧高岭土10份,滑石粉5份,纳米二氧化钛5份,孔石莼粉5份,聚乙二醇3份,丙烯酸乳液18份,乙二醇5份,卡拉胶4份,水50份,改性玄武岩4份,磷酸镁0.8份,辅料8份。所述辅料为消泡剂和分散剂
并按照以下方法步骤制备一种厚壳贻贝贝壳粉生态涂料:
(1)将改性厚壳贻贝贝壳粉加孔石莼粉和水进行研磨20分钟;
(2)在不断搅拌中,加入聚乙二醇和卡拉胶,搅拌均匀;
(3)在不断搅拌中,将羧甲基纤维素钠,煅烧高岭土,滑石粉,纳米二氧化钛,丙烯酸乳液,乙二醇,辅料,搅拌并研磨;
(4)将得到的混合液在45℃搅拌3h,得到厚壳贻贝贝壳粉生态涂料。

Claims (5)

1.一种厚壳贻贝贝壳粉生态涂料,其特征在于,按重量份数计,包括以下组分:改性厚壳贻贝贝壳粉40-50份,羧甲基纤维素钠10-20份,煅烧高岭土10-15份,滑石粉3-5份,纳米二氧化钛5-10份,孔石莼粉3-5份,聚乙二醇3-5份,丙烯酸乳液12-18份,乙二醇5-8份,卡拉胶2-4份,水50-100份,辅料3-8份;
所述改性厚壳贻贝贝壳粉的制备方法具体为:
(1)首先将厚壳贻贝贝壳清洗干净,然后将其置于1050℃下煅烧并粉碎至300-500目成为厚壳贻贝贝壳粉末;
(2)将枫叶在55-65℃的温度下烘干,然后粉碎至300-500目,采用乙二醇乙醚醋酸酯与乙醇比例为1:5的混合溶剂中60-65℃加热回流1-2h,浓缩后,去除溶剂,将浓缩物加质量浓度为1-2%的柠檬酸水溶液形成混合液;
(3)将粉碎好的厚壳贻贝贝壳粉末置于上述混合液中,于45-50℃下不断搅拌0.5-1h;
(4)将步骤(3)的产物采用45-50℃鼓风干燥箱中烘干,得到改性厚壳贻贝贝壳粉。
2.根据权利要求1所述的一种厚壳贻贝贝壳粉生态涂料,其特征在于,还包括改性玄武岩2-4份,磷酸镁0.5-0.8份。
3.根据权利要求1所述的一种厚壳贻贝贝壳粉生态涂料,其特征在于,所述孔石莼粉的制备方法为:将孔石莼采用质量浓度为3-5%的碳酸氢钠溶液中,于50℃下处理10-30分钟,然后经过滤后采用45-50℃鼓风干燥箱中烘干,并将其粉碎至800目,待用。
4.根据权利要求1所述的一种厚壳贻贝贝壳粉生态涂料,其特征在于,所述辅料为消泡剂和分散剂。
5.根据权利要求1所述的一种厚壳贻贝贝壳粉生态涂料的其制备方法,其特征在于,包括以下步骤:
(1)将改性厚壳贻贝贝壳粉40-50份加孔石莼粉3-5份和水50-100份进行研磨10-20分钟;
(2)在不断搅拌中,加入聚乙二醇3-5份和卡拉胶2-4份,搅拌均匀;
(3)在不断搅拌中,将羧甲基纤维素钠10-20份,煅烧高岭土10-15份,滑石粉3-5份,纳米二氧化钛5-10份,丙烯酸乳液12-18份,乙二醇5-8份,辅料3-8份,搅拌并研磨;
(4)将得到的混合液在45-50℃搅拌1-3h,得到厚壳贻贝贝壳粉生态涂料。
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