CN107523999A - 一种织物抗菌剂的制备方法 - Google Patents

一种织物抗菌剂的制备方法 Download PDF

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CN107523999A
CN107523999A CN201710627465.3A CN201710627465A CN107523999A CN 107523999 A CN107523999 A CN 107523999A CN 201710627465 A CN201710627465 A CN 201710627465A CN 107523999 A CN107523999 A CN 107523999A
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储平
徐有琦
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Abstract

本发明公开了一种织物抗菌剂的制备及其应用,所述抗菌剂所含原料及各原料的重量份数为:纳米银复合颗粒5‑15份、丁烷基壳聚糖10‑30份、四羟甲基硫酸磷1‑2份、六偏磷酸钠1‑2、三乙醇胺1‑5份、月桂酸钠1‑4份、凡士林1‑5份、硅烷偶联剂1‑5份、去离子水80‑100份。本发明的织物抗菌剂抗菌效果好,持续时间长,且不含重金属和有机卤素,对环境无不良影响。此外,本发明的织物抗菌剂制备工艺简单,易工业化推广。

Description

一种织物抗菌剂的制备方法
技术领域
本发明涉及纺织材料领域的一种抗菌剂,更具体的本发明涉及一种抗菌效果好,持续时间长,且不含重金属和有机卤素,对环境无不良影响的抗菌剂。
背景技术
随着人民生活水平的不断提高,对抗菌材料、抗菌服装的需求将会不断增加,尤其是作为医务服装,是有效保护医护人员和患者的理想用品,而带有抗菌功能的日常服装市场则更为广阔。随着抗菌材料应用领域的日益广泛,织物抗菌剂的研发存在广大的内在潜力和发展前景。
目前市场上的抗菌织物一般是通过添加抗菌剂至整理剂中,以实现织物的抗菌效果,但直接添加纳米氧化锌或纳米银抗菌剂极易容易出现难分散、易团聚等现象,影响抗菌效果。因此寻找一种抗菌效果好,持续时间长,且不含重金属和有机卤素,对环境无不良影响的抗菌剂是急需解决的问题。
发明内容
为克服目前市场上抗菌织物存在的问题,本发明提供了一种织物抗菌剂。
本发明的抗菌剂抗菌效果好,持续时间长,且不含重金属和有机卤素,对环境无不良影响。此外,本发明的织物抗菌剂制备工艺简单,易工业化推广。
为实现上述目的,本发明提供了一种织物抗菌剂,所述抗菌剂的成分包括(按照重量份数计算):纳米银复合颗粒5-15份、丁烷基壳聚糖10-30份、四羟甲基硫酸磷1-2份、六偏磷酸钠1-2、三乙醇胺1-5份、月桂酸钠1-4份、凡士林1-5份、硅烷偶联剂1-5份、去离子水80-100份。
优选的,所述纳米银复合颗粒为纳米银上负载碳化硅颗粒。
优选的,所述的凡士林为工业级,有效成分80%以上。
优选的,所述硅烷偶联剂包括水性氨基硅烷偶联剂KH-550、硅烷偶联剂KBM503、水性氨基硅烷偶联剂KH-560中的任意一种或两种以上的组合。
优选的,所述纳米银复合颗粒的制备方法为先将纳米碳化硅分散于乙醇水溶液中,形成纳米碳化硅分散液,避光条件下,将纳米碳化硅分散液添加到硝酸银溶液中,调整溶液pH值为6-10左右,反应时间2-8h,用离心机进行分离,分离之后用去离子水清洗干净,进行干燥,即制得纳米银复合颗粒。
优选的,所述的纳米碳化硅与乙醇溶液的质量比为0.2-1:10-20,硝酸银溶液的浓度为0.2-0.6g/ml。
优选地,所述的织物抗菌剂的制备方法,包括以下步骤:
(1)先将纳米碳化硅分散于乙醇水溶液中,形成纳米碳化硅分散液,避光条件下,将纳米碳化硅分散液添加到硝酸银溶液中,调整溶液pH值为6-10左右,反应时间2-8h,用离心机进行分离,分离之后用去离子水清洗干净,进行干燥,即制得纳米银复合颗粒;
(2)在清洁的搅拌釜中入去离子水80-100份,开搅拌;
(3)加入纳米银复合颗粒5-15份和硅烷偶联剂1-5份,500-1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(4)加入丁烷基壳聚糖10-30份和三乙醇胺1-5份,500-1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(5)检测溶液pH,用pH调节剂0.1-1份(稀释好的醋酸溶液和NaOH溶液),调节溶液的pH至适宜的pH;
(6)调整溶液温度至40-50℃,加入四羟甲基硫酸磷1-2份、六偏磷酸钠1-2、月桂酸钠1-4份、凡士林1-5份,500-1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(7)关停搅拌,得到配制好的织物抗菌剂。
与现有技术相比,本发明的有益效果是:
1.本发明的抗菌剂里面加入的纳米银复合颗粒是纳米银上负载碳化硅颗粒,有利于纳米银离子的抗菌时间延长。
2.本发明的抗菌剂抗菌效果好,持续时间长,且不含重金属和有机卤素,对环境无不良影响。
3.凡士林的加入,提高了织物的抗菌性能。
4.简化工艺,操作安全简单,易于工业化生产。
5.本发明的抗菌剂施工简单,可以通过浸渍、喷涂、辊涂等进行施加,生产效率提高。
6.本发明的织物抗菌剂与当今全球对绿色加工和可持续发展的需求相一致。
7.本发明的使用可收到良好的经济效益。
具体实施方式
本发明提供了一种织物抗菌剂的制备方法,具体步骤如下:
(1)先将纳米碳化硅分散于乙醇水溶液中,形成纳米碳化硅分散液,避光条件下,将纳米碳化硅分散液添加到硝酸银溶液中,调整溶液pH值为6-10左右,反应时间2-8h,用离心机进行分离,分离之后用去离子水清洗干净,进行干燥,即制得纳米银复合颗粒;
(2)在清洁的搅拌釜中入去离子水80-100份,开搅拌;
(3)加入纳米银复合颗粒5-15份和硅烷偶联剂1-5份,500-1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(4)加入丁烷基壳聚糖10-30份和三乙醇胺1-5份,500-1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(5)检测溶液pH,用pH调节剂0.1-1份(稀释好的醋酸溶液和NaOH溶液),调节溶液的pH至适宜的pH;
(6)调整溶液温度至40-50℃,加入四羟甲基硫酸磷1-2份、六偏磷酸钠1-2、月桂酸钠1-4份、凡士林1-5份,500-1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(7)关停搅拌,得到配制好的织物抗菌剂。
实施例1
本发明提供了一种织物抗菌剂的制备方法,具体步骤如下:
(1)先将5g纳米碳化硅分散于100g乙醇水溶液中,形成纳米碳化硅分散液,避光条件下,将纳米碳化硅分散液添加到0.6g/ml硝酸银溶液中,调整溶液pH值为8左右,反应时间8h,用离心机进行分离,分离之后用去离子水清洗干净,进行干燥,即制得纳米银复合颗粒;
(2)在清洁的搅拌釜中入去离子水100份,开搅拌;
(3)加入纳米银复合颗粒15份和硅烷偶联剂5份,1000转/分钟的转速下,搅拌30分钟至完全混合均匀;
(4)加入丁烷基壳聚糖30份和三乙醇胺5份,1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(5)检测溶液pH,用pH调节剂1份(稀释好的醋酸溶液和NaOH溶液),调节溶液的pH至适宜的pH;
(6)调整溶液温度至50℃,加入四羟甲基硫酸磷2份、六偏磷酸钠2、月桂酸钠4份、凡士林5份,1000转/分钟的转速下,搅拌30分钟至完全混合均匀;
(7)关停搅拌,得到配制好的织物抗菌剂。
实施例2
本发明提供了一种织物抗菌剂的制备方法,具体步骤如下:
(1)先将5g纳米碳化硅分散于80g乙醇水溶液中,形成纳米碳化硅分散液,避光条件下,将纳米碳化硅分散液添加到0.3g/ml硝酸银溶液中,调整溶液pH值为7左右,反应时间5h,用离心机进行分离,分离之后用去离子水清洗干净,进行干燥,即制得纳米银复合颗粒;
(2)在清洁的搅拌釜中入去离子水90份,开搅拌;
(3)加入纳米银复合颗粒10份和硅烷偶联剂3份,700转/分钟的转速下,搅拌25分钟至完全混合均匀;
(4)加入丁烷基壳聚糖15份和三乙醇胺3份,600转/分钟的转速下,搅拌20分钟至完全混合均匀;
(5)检测溶液pH,用pH调节剂0.3份(稀释好的醋酸溶液和NaOH溶液),调节溶液的pH至适宜的pH;
(6)调整溶液温度至40℃,加入四羟甲基硫酸磷1份、六偏磷酸钠1、月桂酸钠1份、凡士林4份,500转/分钟的转速下,搅拌30分钟至完全混合均匀;
(7)关停搅拌,得到配制好的织物抗菌剂。
实施例3
本发明提供了一种织物抗菌剂的制备方法,具体步骤如下:
(1)先将3g纳米碳化硅分散于100g乙醇水溶液中,形成纳米碳化硅分散液,避光条件下,将纳米碳化硅分散液添加到0.4g/ml硝酸银溶液中,调整溶液pH值为8左右,反应时间6h,用离心机进行分离,分离之后用去离子水清洗干净,进行干燥,即制得纳米银复合颗粒;
(2)在清洁的搅拌釜中入去离子水90份,开搅拌;
(3)加入纳米银复合颗粒12份和硅烷偶联剂3份,800转/分钟的转速下,搅拌25分钟至完全混合均匀;
(4)加入丁烷基壳聚糖15份和三乙醇胺5份,700转/分钟的转速下,搅拌30分钟至完全混合均匀;
(5)检测溶液pH,用pH调节剂0.7份(稀释好的醋酸溶液和NaOH溶液),调节溶液的pH至适宜的pH;
(6)调整溶液温度至45℃,加入四羟甲基硫酸磷1.4份、六偏磷酸钠1.2、月桂酸钠1.3份、凡士林2份,800转/分钟的转速下,搅拌30分钟至完全混合均匀;
(7)关停搅拌,得到配制好的织物抗菌剂。
测试例:
本发明的织物抗菌剂,施加方便,如:将一块纯棉织物、涤棉混纺织物、腈纶织物放入实施例1的溶液中,烘干之后织物的抗菌性能比原织物提高了90%、85%、90%以上。
本发明的织物抗菌剂,施加方便,如:将一块涤棉混纺织物放入实施例2的溶液中,烘干之后织物的抗菌性能比原织物提高了90%以上。
本发明的织物抗菌剂,施加方便,如:将一块纯棉织物放入实施例3的溶液中,烘干之后织物的抗菌性能比原织物提高了90%以上。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明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,本发明的范围由所附权利要求及其等同物限定。

Claims (7)

1.一种织物抗菌剂,其特征在于:所述抗菌剂的成分按照重量份数计算,包括:纳米银复合颗粒5-15份、丁烷基壳聚糖10-30份、四羟甲基硫酸磷1-2份、六偏磷酸钠1-2、三乙醇胺1-5份、月桂酸钠1-4份、凡士林1-5份、硅烷偶联剂1-5份、去离子水80-100份。
2.根据权利要求1所述的织物抗菌剂,其特征在于:所述纳米银复合颗粒为纳米银上负载碳化硅颗粒。
3.根据权利要求1所述的织物抗菌剂,其特征在于:凡士林为工业级,有效成分80%以上。
4.根据权利要求1所述的织物抗菌剂,其特征在于:所述硅烷偶联剂包括水性氨基硅烷偶联剂KH-550、硅烷偶联剂KBM503、水性氨基硅烷偶联剂KH-560中的任意一种或两种以上的组合。
5.一种根据权利要求1所述的织物抗菌剂中纳米银复合颗粒的制备方法,其特征在于:所述纳米银复合颗粒的制备方法为先将纳米碳化硅分散于乙醇水溶液中,形成纳米碳化硅分散液,避光条件下,将纳米碳化硅分散液添加到硝酸银溶液中,调整溶液pH值为6-10左右,反应时间2-8h,用离心机进行分离,分离之后用去离子水清洗干净,进行干燥,即制得纳米银复合颗粒。
6.根据权利要求5所述的织物抗菌剂中纳米银复合颗粒的制备方法,其特征在于:所述的纳米碳化硅与乙醇溶液的质量比为0.2-1:10-20,硝酸银溶液的浓度为0.2-0.6g/ml。
7.一种采用权利要求1-4中任一所述的织物抗菌剂的制备方法,其特征在于:包括以下步骤:
(1)先将纳米碳化硅分散于乙醇水溶液中,形成纳米碳化硅分散液,避光条件下,将纳米碳化硅分散液添加到硝酸银溶液中,调整溶液pH值为6-10左右,反应时间2-8h,用离心机进行分离,分离之后用去离子水清洗干净,进行干燥,即制得纳米银复合颗粒;
(2)在清洁的搅拌釜中入去离子水80-100份,开搅拌;
(3)加入纳米银复合颗粒5-15份和硅烷偶联剂1-5份,500-1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(4)加入丁烷基壳聚糖10-30份和三乙醇胺1-5份,500-1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(5)检测溶液pH,用pH调节剂0.1-1份(稀释好的醋酸溶液和NaOH溶液),调节溶液的pH至适宜的pH;
(6)调整溶液温度至40-50℃,加入四羟甲基硫酸磷1-2份、六偏磷酸钠1-2、月桂酸钠1-4份、凡士林1-5份,500-1000转/分钟的转速下,搅拌20-30分钟至完全混合均匀;
(7)关停搅拌,得到配制好的织物抗菌剂。
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