CN107410356A - 具有高效抗菌性的防霉剂制备方法 - Google Patents
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Abstract
本发明公开了具有高效抗菌性的防霉剂制备方法,1)将水杨酰苯胺、酸性的硅藻土、新洁尔灭、冰醋酸、硬脂酸钠、煅烧高岭土、纳米氢氧化铝混合均匀;2)加入聚乙二醇、山梨酸钾、苯甲酸钠,然后转入反应釜中进行搅拌反应;3)物料冷却至40℃后加入纳米二氧化钛和纳米银抗菌剂;4)将薄荷脑粉碎成50‑100目,与吸附剂加入到步骤3)中进行均匀搅拌;本发明的抗菌防霉剂的制备方法,制得的抗菌防霉剂能够有效的抑制足部致病真菌毛癣菌和念珠菌,而且体外抗真菌活性大,对人体无害,使得鞋用抗菌剂具有很强的抗真菌性和安全性,除臭速度快、保持鞋袜清爽,并且防霉效果明显,对多种异味都有效果,可生物降解,对人体无害,生产工艺绿色安全环保。
Description
技术领域
本发明涉及一种制鞋用胶水,具体涉及具有高效抗菌性的防霉剂制备方法。
背景技术
鞋子有着悠久的发展史。大约在5000多年前的仰韶文化时期,就出现了兽皮缝制的最原始的鞋。鞋子是人们生活中不可缺少的生活用品,鞋子生产是我国针织工业的一个重要组成部分。鞋子属于纬编针织物的成形产品。由于要求穿着舒服,其形状要符合脚形,不致脱落或翻转,而且要求延伸性好,透气性好,此外,也要有良好的吸湿性和耐磨性。鞋子的种类很多,可以根据原料、组织结构、袜统长短以及袜口结构、鞋子规格来分类。脚病的产生大多数都与鞋子有关,由于人体的新陈代谢,每天都在排出大量的老化皮肤碎片,人脚和鞋的小空间温湿度适宜,成为病菌繁殖的温床,在适宜的温度下,细菌、真菌、螨虫等微生物以老化皮肤碎片为营养而迅速繁殖,使脚部受感染,同时,在鞋子上很容易滋生和繁殖细菌、微生物,尤其是在梅雨季节或高温高湿条件下,会造成鞋子发生霉变的情况。
发明内容
本发明所要解决的技术问题是人脚和鞋的小空间温湿度适宜,成为病菌繁殖的温床,在适宜的温度下,细菌、真菌、螨虫等微生物以老化皮肤碎片为营养而迅速繁殖,使脚部受感染,同时,在鞋子上很容易滋生和繁殖细菌、微生物,尤其是在梅雨季节或高温高湿条件下,会造成鞋子发生霉变的情况,目的在于提供具有高效抗菌性的防霉剂制备方法,能够有效的抑制足部致病真菌毛癣菌和念珠菌,而且体外抗真菌活性大,对人体无害,使得鞋用抗菌剂具有很强的抗真菌性和安全性,除臭速度快、保持鞋袜清爽,并且防霉效果明显,对多种异味都有效果,可生物降解,对人体无害,生产工艺绿色安全环保。
本发明通过下述技术方案实现:
具有高效抗菌性的防霉剂制备方法,包括如下步骤:
1)将水杨酰苯胺、酸性的硅藻土、新洁尔灭、冰醋酸、硬脂酸钠、煅烧高岭土、纳米氢氧化铝搅拌混合均匀;
2)在步骤1)中加入聚乙二醇、山梨酸钾、苯甲酸钠,然后转入反应釜中进行搅拌反应,反应温度为55-60℃,时间为30-60min;
3)将步骤2)中物料冷却至40℃后加入纳米二氧化钛和纳米银抗菌剂搅拌均匀;
4)将薄荷脑粉碎成50-100目后,与吸附剂一同加入到步骤3)中进行均匀搅拌;
其中原料各组分的质量份数为:聚乙二醇40-45份、山梨酸钾15-20份,苯甲酸钠10-13份、水杨酰苯胺6-8份、酸性的硅藻土15-25份、新洁尔灭1-4份、冰醋酸2-8份、硬脂酸钠3-5份、煅烧高岭土10-14份、纳米二氧化钛1-2.5份、纳米银抗菌剂1-2份、氢氧化铝6-8份、吸附剂1-3份、薄荷脑0.5-1份。
各组分的质量份数为:聚乙二醇42-45份、山梨酸钾15-18份,苯甲酸钠11-13份、水杨酰苯胺6-8份、酸性的硅藻土17-23份、新洁尔灭1-3份、冰醋酸3-7份、硬脂酸钠4-5份、煅烧高岭土11-13份、纳米二氧化钛1.5-2.5份、纳米银抗菌剂1-2份、氢氧化铝7-8份、吸附剂1-2份、薄荷脑0.7-1份。
各组分的质量份数为:聚乙二醇43份、山梨酸钾17份,苯甲酸钠12份、水杨酰苯胺7份、酸性的硅藻土20份、新洁尔灭3份、冰醋酸5份、硬脂酸钠4份、煅烧高岭土12份、纳米二氧化钛1.7份、纳米银抗菌剂1.5份、氢氧化铝7份、吸附剂2份、薄荷脑0.8份。
本发明的抗菌防霉剂的制备方法,制得的抗菌防霉剂能够有效的抑制足部致病真菌毛癣菌和念珠菌,而且体外抗真菌活性大,使得鞋用抗菌剂具有很强的抗真菌性和安全性,除臭速度快、保持鞋袜清爽,并且防霉效果明显,对多种异味都有效果,可生物降解,对人体无害,生产工艺绿色安全环保。
所述纳米二氧化钛的尺寸为50-60nm。
所述抗菌防霉剂中还含有香精1-2份。
本发明与现有技术相比,具有如下的优点和有益效果:
1、本发明具有高效抗菌性的防霉剂制备方法,制得的抗菌防霉剂能够有效的抑制足部致病真菌毛癣菌和念珠菌,而且体外抗真菌活性大,使得鞋用抗菌剂具有很强的抗真菌性和安全性;
2、本发明具有高效抗菌性的防霉剂制备方法,制得的抗菌防霉剂除臭速度快、保持鞋袜清爽,并且防霉效果明显,对多种异味都有效果,可生物降解,对人体无害,生产工艺绿色安全环保。
具体实施方式
为使本发明的目的、技术方案和优点更加清楚明白,下面结合实施例,对本发明作进一步的详细说明,本发明的示意性实施方式及其说明仅用于解释本发明,并不作为对本发明的限定。
实施例1
本发明提供具有高效抗菌性的防霉剂制备方法,包括如下步骤:
1)将水杨酰苯胺、酸性的硅藻土、新洁尔灭、冰醋酸、硬脂酸钠、煅烧高岭土、纳米氢氧化铝搅拌混合均匀;
2)在步骤1)中加入聚乙二醇、山梨酸钾、苯甲酸钠,然后转入反应釜中进行搅拌反应,反应温度为55-60℃,时间为30-60min;
3)将步骤2)中物料冷却至40℃后加入纳米二氧化钛和纳米银抗菌剂搅拌均匀;
4)将薄荷脑粉碎成50-100目后,与吸附剂、香精一同加入到步骤3)中进行均匀搅拌;
其中原料各组分的质量份数为:聚乙二醇40份、山梨酸钾15份,苯甲酸钠10份、水杨酰苯胺6份、酸性的硅藻土15份、新洁尔灭1份、冰醋酸2份、硬脂酸钠3份、煅烧高岭土10份、纳米二氧化钛1份、纳米银抗菌剂1份、氢氧化铝6份、吸附剂1份、薄荷脑0.5份,香精1份。
本实施例的抗菌防霉剂,对大肠杆菌、金黄色葡萄球菌、真菌毛癣菌和念珠菌白色念珠菌等细菌、真菌均具有很好的抗菌效果。经实验室测定,达到杀灭率80%以上,防霉与除异味效果明显。
实施例2
本发明提供具有高效抗菌性的防霉剂制备方法,包括如下步骤:
1)将水杨酰苯胺、酸性的硅藻土、新洁尔灭、冰醋酸、硬脂酸钠、煅烧高岭土、纳米氢氧化铝搅拌混合均匀;
2)在步骤1)中加入聚乙二醇、山梨酸钾、苯甲酸钠,然后转入反应釜中进行搅拌反应,反应温度为55-60℃,时间为30-60min;
3)将步骤2)中物料冷却至40℃后加入纳米二氧化钛和纳米银抗菌剂搅拌均匀;
4)将薄荷脑粉碎成50-100目后,与吸附剂、香精一同加入到步骤3)中进行均匀搅拌;
其中原料各组分的质量份数为:聚乙二醇45份、山梨酸钾20份,苯甲酸钠13份、水杨酰苯胺8份、酸性的硅藻土25份、新洁尔灭4份、冰醋酸8份、硬脂酸钠5份、煅烧高岭土14份、纳米二氧化钛2.5份、纳米银抗菌剂2份、氢氧化铝8份、吸附剂3份、薄荷脑1份,香精2份。
本实施例的抗菌防霉剂,对大肠杆菌、金黄色葡萄球菌、真菌毛癣菌和念珠菌白色念珠菌等细菌、真菌均具有很好的抗菌效果。经实验室测定,达到杀灭率80%以上,防霉和除异味效果明显。
实施例3
本发明提供具有高效抗菌性的防霉剂制备方法,包括如下步骤:
1)将水杨酰苯胺、酸性的硅藻土、新洁尔灭、冰醋酸、硬脂酸钠、煅烧高岭土、纳米氢氧化铝搅拌混合均匀;
2)在步骤1)中加入聚乙二醇、山梨酸钾、苯甲酸钠,然后转入反应釜中进行搅拌反应,反应温度为55-60℃,时间为30-60min;
3)将步骤2)中物料冷却至40℃后加入纳米二氧化钛和纳米银抗菌剂搅拌均匀;
4)将薄荷脑粉碎成50-100目后,与吸附剂、香精一同加入到步骤3)中进行均匀搅拌;
其中原料各组分的质量份数为:聚乙二醇43份、山梨酸钾17份,苯甲酸钠12份、水杨酰苯胺7份、酸性的硅藻土20份、新洁尔灭3份、冰醋酸5份、硬脂酸钠4份、煅烧高岭土12份、纳米二氧化钛1.7份、纳米银抗菌剂1.5份、氢氧化铝7份、吸附剂2份、薄荷脑0.8份,香精1份。
本实施例的抗菌防霉剂,对大肠杆菌、金黄色葡萄球菌、真菌毛癣菌和念珠菌白色念珠菌等细菌、真菌均具有很好的抗菌效果。经实验室测定,达到杀灭率80%以上,防霉和除异味效果明显。
实施例4
本发明提供具有高效抗菌性的防霉剂制备方法,包括如下步骤:
1)将水杨酰苯胺、酸性的硅藻土、新洁尔灭、冰醋酸、硬脂酸钠、煅烧高岭土、纳米氢氧化铝搅拌混合均匀;
2)在步骤1)中加入聚乙二醇、山梨酸钾、苯甲酸钠,然后转入反应釜中进行搅拌反应,反应温度为55-60℃,时间为30-60min;
3)将薄荷脑粉碎成50-100目后,与吸附剂、香精一同加入到步骤2)中进行均匀搅拌;
其中原料各组分的质量份数为:聚乙二醇43份、山梨酸钾17份,苯甲酸钠12份、水杨酰苯胺7份、酸性的硅藻土20份、新洁尔灭3份、冰醋酸5份、硬脂酸钠4份、煅烧高岭土12份、氢氧化铝7份、吸附剂2份、薄荷脑0.8份,香精1份。
本实施例的抗菌防霉剂,防霉和除异味效果明显,但是抑菌抗菌的作用较低,细菌的杀灭率只能达到30%左右。
实施例5
本发明提供具有高效抗菌性的防霉剂制备方法,包括如下步骤:
1)将水杨酰苯胺、酸性的硅藻土、硬脂酸钠、煅烧高岭土、纳米氢氧化铝搅拌混合均匀;
2)在步骤1)中加入聚乙二醇、山梨酸钾、苯甲酸钠,然后转入反应釜中进行搅拌反应,反应温度为55-60℃,时间为30-60min;
3)将步骤2)中物料冷却至40℃后加入纳米二氧化钛和纳米银抗菌剂搅拌均匀;
4)将薄荷脑粉碎成50-100目后,与香精一同加入到步骤3)中进行均匀搅拌;
其中原料各组分的质量份数为:聚乙二醇30份、山梨酸钾10份,苯甲酸钠20份、水杨酰苯胺1份、酸性的硅藻土5份、硬脂酸钠4份、煅烧高岭土7份、纳米二氧化钛0.3份、纳米银抗菌剂0.1份、氢氧化铝7份、薄荷脑0.8份,香精1份。
本实施例的抗菌防霉剂,对大肠杆菌、金黄色葡萄球菌、真菌毛癣菌和念珠菌白色念珠菌等细菌、真菌均具有一定的抗菌效果。经实验室测定,达到杀灭率50%左右,但是防霉和除异味的效果较差。
以上所述的具体实施方式,对本发明的目的、技术方案和有益效果进行了进一步详细说明,所应理解的是,以上所述仅为本发明的具体实施方式而已,并不用于限定本发明的保护范围,凡在本发明的精神和原则之内,所做的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
Claims (5)
1.具有高效抗菌性的防霉剂制备方法,其特征在于,包括如下步骤:
1)将水杨酰苯胺、酸性的硅藻土、新洁尔灭、冰醋酸、硬脂酸钠、煅烧高岭土、纳米氢氧化铝搅拌混合均匀;
2)在步骤1)中加入聚乙二醇、山梨酸钾、苯甲酸钠,然后转入反应釜中进行搅拌反应,反应温度为55-60℃,时间为30-60min;
3)将步骤2)中物料冷却至40℃后加入纳米二氧化钛和纳米银抗菌剂搅拌均匀;
4)将薄荷脑粉碎成50-100目后,与吸附剂一同加入到步骤3)中进行均匀搅拌;
其中原料各组分的质量份数为:聚乙二醇40-45份、山梨酸钾15-20份,苯甲酸钠10-13份、水杨酰苯胺6-8份、酸性的硅藻土15-25份、新洁尔灭1-4份、冰醋酸2-8份、硬脂酸钠3-5份、煅烧高岭土10-14份、纳米二氧化钛1-2.5份、纳米银抗菌剂1-2份、氢氧化铝6-8份、吸附剂1-3份、薄荷脑0.5-1份。
2.根据权利要求1所述的具有高效抗菌性的防霉剂制备方法,其特征在于,各组分的质量份数为:聚乙二醇42-45份、山梨酸钾15-18份,苯甲酸钠11-13份、水杨酰苯胺6-8份、酸性的硅藻土17-23份、新洁尔灭1-3份、冰醋酸3-7份、硬脂酸钠4-5份、煅烧高岭土11-13份、纳米二氧化钛1.5-2.5份、纳米银抗菌剂1-2份、氢氧化铝7-8份、吸附剂1-2份、薄荷脑0.7-1份。
3.根据权利要求1所述的具有高效抗菌性的防霉剂制备方法,其特征在于,各组分的质量份数为:聚乙二醇43份、山梨酸钾17份,苯甲酸钠12份、水杨酰苯胺7份、酸性的硅藻土20份、新洁尔灭3份、冰醋酸5份、硬脂酸钠4份、煅烧高岭土12份、纳米二氧化钛1.7份、纳米银抗菌剂1.5份、氢氧化铝7份、吸附剂2份、薄荷脑0.8份。
4.根据权利要求1-3任一所述的具有高效抗菌性的防霉剂制备方法,其特征在于,所述纳米二氧化钛的尺寸为50-60nm。
5.根据权利要求1所述的具有高效抗菌性的防霉剂制备方法,其特征在于,所述抗菌防霉剂中还含有香精1-2份。
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CN103828807A (zh) * | 2014-03-18 | 2014-06-04 | 王利芬 | 一种布鞋防霉剂 |
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