CN105755809A - 一种织物抗菌整理剂及其制备方法 - Google Patents
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Abstract
本发明涉及一种织物抗菌整理剂,按照重量份数,所述织物抗菌整理剂包括如下组分:烷基葡萄糖苷5~8份、甲壳素8~12份、镧盐2~3份、香茅精油3~5份、聚乙二醇3~6份、水50~70份。本发明通过选择合适的稀土元素——镧,配合特定的杀菌剂,得到了用于织物整理的具有广谱抗菌活性的整理剂;采用本发明所述的织物抗菌整理剂整理织物,整理后的织物对金黄色葡萄球菌和大肠杆菌的抗菌性在95%以上,且经过50次洗涤,其抗菌性仍然在90%以上。
Description
技术领域
本发明属于纺织助剂技术领域,具体涉及一种织物抗菌整理剂及其制备方法。
背景技术
随着生活水平的提高,人们越来越重视生活的质量,希望能获得有舒适感的衣着以及卫生健康的居住环境,所以人们对于各种各样的纺织品要求越来越高,特别是安全、安心、舒适、健康、卫生、清洁等“绿色”观念的形成,使纺织品的抗菌、防霉、防臭后整理加工更加受到人们的重视。
在生活中,人们不可避免的接触到各种各样的细菌、真菌等微生物,这些微生物在合适的外界条件下,会迅速繁殖,并通过接触等方式传播疾病,影响人们的身体健康和正常的工作、学习和生活。纤维属于多孔性材料,叠加编织后又会形成无数空隙的多层体,因此织物较容易吸附菌类。抗菌整理就是使织物具有抑制菌类生长的功能,维持卫生的衣着生活环境,保证人体健康。
稀土元素具有比较好的抗菌、抗肿瘤、抗艾滋病等生物活性。由于稀土粒子具有较高的电荷数(+3)和较大的离子半径(85~106pm),因而在织物的抗菌整理过程中稀土离子可能与织物中氧、氮等配位原子形成螯合物,同时又与抑菌剂形成配合物或螯合物,使抑菌剂牢固地与织物结合;与此同时,不同抑菌剂之间,以稀土离子为联结点,产生协同抑菌作用,致使织物又具有光谱的抑菌效果。
本领域需要开发一种织物抗菌整理剂,其能够发挥稀土离子的作用,提高织物的抗菌活性。
发明内容
本发明的目的在于提供一种织物抗菌整理剂,按照重量份数,所述织物抗菌整理剂包括如下组分:
烷基葡萄糖苷5~8份
甲壳素8~12份
镧盐2~3份
香茅精油3~5份
聚乙二醇3~6份
水50~70份。
优选地,所述烷基葡萄糖苷的HLB值为13~14。
优选地,所述烷基葡萄糖苷的平均聚合度为1.3~1.6。
优选地,所述烷基葡萄糖苷选自十二烷基葡萄糖苷。
优选地,所述甲壳素的脱乙酰度为60~80%以上,优选70%。
优选地,所述镧盐选自氯化镧、硝酸镧或氧化镧,优选氯化镧。
优选地,所述香茅精油含有30wt%以上的香茅醛、10~30wt%的香茅醇、10~30wt%的香叶醇。
优选地,所述聚乙二醇选自聚乙二醇200、聚乙二醇400、聚乙二醇2000或聚乙二醇6000中的任意1种或至少2种的组合。
优选地,所述织物抗菌整理剂包括如下组分:
烷基葡萄糖苷6份
甲壳素10份
镧盐2.5份
香茅精油4份
聚乙二醇5份
水60份。
本发明目的之二是提供一种如目的之一所述的织物抗菌整理剂的制备方法,所述方法为将配方量的烷基葡萄糖苷、镧盐和聚乙二醇一起加入配方量的水中,高速搅拌至混合均匀,然后再加入香茅精油,低速搅拌至混合均匀,即得所述织物抗菌整理剂。
优选地,所述高速搅拌的搅拌速度为1700~2000r/min。
优选地,所述低速搅拌的搅拌速度为60~80r/min。
与现有技术相比,本发明具有以下有益效果:
本发明通过选择合适的稀土元素——镧,配合特定的杀菌剂,得到了用于织物整理的具有广谱抗菌活性的整理剂;采用本发明所述的织物抗菌整理剂整理织物,整理后的织物对金黄色葡萄球菌和大肠杆菌的抗菌性在95%以上,且经过50次洗涤,其抗菌性仍然在90%以上。
具体实施方式
下面通过具体实施方式来进一步说明本发明的技术方案。
本领域技术人员应该明了,所述实施例仅仅是帮助理解本发明,不应视为对本发明的具体限制。
实施例1
一种织物抗菌整理剂,按重量份数包括如下组分:
烷基葡萄糖苷6份
甲壳素10份
镧盐2.5份
香茅精油4份
聚乙二醇5份
水60份;
所述香茅精油含有35wt%的香茅醛、20wt%的香茅醇、15wt%的香叶醇。
制备方法为:所述方法为将配方量的烷基葡萄糖苷、甲壳素、镧盐和聚乙二醇一起加入配方量的水中,1800r/min高速搅拌至混合均匀,然后再加入香茅精油,70r/min低速搅拌至混合均匀,即得所述织物抗菌整理剂。
实施例2
一种织物抗菌整理剂,按重量份数包括如下组分:
烷基葡萄糖苷5份
甲壳素8份
镧盐3份
香茅精油3份
聚乙二醇6份
水50份;
所述香茅精油含有35wt%的香茅醛、10wt%的香茅醇、30wt%的香叶醇。
制备方法为:所述方法为将配方量的烷基葡萄糖苷、甲壳素、镧盐和聚乙二醇一起加入配方量的水中,1700r/min高速搅拌至混合均匀,然后再加入香茅精油,60r/min低速搅拌至混合均匀,即得所述织物抗菌整理剂。
实施例3
一种织物抗菌整理剂,按重量份数包括如下组分:
烷基葡萄糖苷8份
甲壳素8~12份
镧盐2.5份
香茅精油5份
聚乙二醇3份
水70份;
所述香茅精油含有30wt%的香茅醛、20wt%的香茅醇、10wt%的香叶醇。
制备方法为:所述方法为将配方量的烷基葡萄糖苷、甲壳素、镧盐和聚乙二醇一起加入配方量的水中,2000r/min高速搅拌至混合均匀,然后再加入香茅精油,80r/min低速搅拌至混合均匀,即得所述织物抗菌整理剂。
对比例
一种织物抗菌整理剂,按重量份数包括如下组分:
烷基葡萄糖苷6份
甲壳素10份
香茅精油6份
聚乙二醇5份
水60份;
所述香茅精油含有35wt%的香茅醛、20wt%的香茅醇、15wt%的香叶醇。
制备方法为:所述方法为将配方量的烷基葡萄糖苷、甲壳素和聚乙二醇一起加入配方量的水中,1800r/min高速搅拌至混合均匀,然后再加入香茅精油,70r/min低速搅拌至混合均匀,即得所述织物抗菌整理剂。
性能测试
将羊毛织物浸泡在实施例和对比例提供的织物抗菌整理剂中,调节pH值至3~4,在60~70℃下浸泡1.5h,之后取出羊毛织物,蒸馏水洗涤,得到经过织物抗菌整理剂整理的羊毛织物,进行测试。
抗菌性:将经过织物抗菌整理剂整理的羊毛织物和对照样1(未经过织物抗菌整理剂整理的羊毛织物)置于三角瓶中,用试验菌接种,恒温培养,测定菌落数;对照样1菌落数为100;
耐洗涤性:将经过织物抗菌整理剂整理的羊毛织物和对照样2(未经过织物抗菌整理剂整理的羊毛织物)洗涤50次,然后置于三角瓶中,用试验菌接种,恒温培养,测定菌落数;对照样2菌落数为105;。
性能测试结果:
未洗涤实施例菌落数 | 洗涤50次实施例菌落数 | |
实施例1 | 98 | 96 |
实施例2 | 96 | 93 |
实施例3 | 96 | 93 |
对比例 | 70 | 30 |
申请人声明,本发明通过上述实施例来说明本发明的工艺方法,但本发明并不局限于上述工艺步骤,即不意味着本发明必须依赖上述工艺步骤才能实施。所属技术领域的技术人员应该明了,对本发明的任何改进,对本发明所选用原料的等效替换及辅助成分的添加、具体方式的选择等,均落在本发明的保护范围和公开范围之内。
Claims (10)
1.一种织物抗菌整理剂,其特征在于,按照重量份数,所述织物抗菌整理剂包括如下组分:
烷基葡萄糖苷5~8份
甲壳素8~12份
镧盐2~3份
香茅精油3~5份
聚乙二醇3~6份
水50~70份。
2.如权利要求1所述的织物抗菌整理剂,其特征在于,所述烷基葡萄糖苷的HLB值为13~14;
优选地,所述烷基葡萄糖苷的平均聚合度为1.3~1.6;
优选地,所述烷基葡萄糖苷选自十二烷基葡萄糖苷。
3.如权利要求1或2所述的织物抗菌整理剂,其特征在于,所述甲壳素的脱乙酰度为60~80%以上,优选70%。
4.如权利要求1~3之一所述的织物抗菌整理剂,其特征在于,所述镧盐选自氯化镧、硝酸镧或氧化镧,优选氯化镧。
5.如权利要求1~4之一所述的织物抗菌整理剂,其特征在于,所述香茅精油含有30wt%以上的香茅醛、10~30wt%的香茅醇、10~30wt%的香叶醇。
6.如权利要求1~5之一所述的织物抗菌整理剂,其特征在于,所述聚乙二醇选自聚乙二醇200、聚乙二醇400、聚乙二醇2000或聚乙二醇6000中的任意1种或至少2种的组合。
7.如权利要求1~6之一所述的织物抗菌整理剂,其特征在于,所述织物抗菌整理剂包括如下组分:
烷基葡萄糖苷6份
甲壳素10份
镧盐2.5份
香茅精油4份
聚乙二醇5份
水60份。
8.一种如权利要求1~6之一所述的织物抗菌整理剂的制备方法,其特征在于,所述方法为将配方量的烷基葡萄糖苷、甲壳素、镧盐和聚乙二醇一起加入配方量的水中,高速搅拌至混合均匀,然后再加入香茅精油,低速搅拌至混合均匀,即得所述织物抗菌整理剂。
9.如权利要求8所述的制备方法,其特征在于,所述高速搅拌的搅拌速度为1700~2000r/min。
10.如权利要求8或9所述的制备方法,其特征在于,所述低速搅拌的搅拌速度为60~80r/min。
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