CN110359278A - 一种减缓纯棉织物掉色的处理剂及其使用方法 - Google Patents
一种减缓纯棉织物掉色的处理剂及其使用方法 Download PDFInfo
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Abstract
本发明公开了一种减缓纯棉织物掉色的处理剂,包括湿摩擦牢度提升乳液和抗菌整理剂;该处理剂的使用方法,包括如下步骤:第一步、温水浸泡棉织物;第二步、将温水浸泡后的纯棉织物浸入湿摩擦牢度提升乳液中进行一浸一轧;第三步、再浸入抗菌整理剂进行二浸二轧;第四步、清洗烘干。本发明的处理剂包括湿摩擦牢度提升乳液和抗菌整理剂,先通过湿摩擦牢度提升乳液的浸轧处理,在织物表面形成一层立体网状保护薄膜,降低摩擦阻力,提高织物的耐摩擦色牢度;再通过抗菌整理剂进行再次整理,显著提高棉织物的抗紫外线性能,并且赋予棉织物抑菌性能,减缓棉织物的细菌腐蚀;处理剂的使用方式简单、易于实现。
Description
技术领域
本发明属于面料处理剂技术领域,具体地,涉及一种减缓纯棉织物掉色的处理剂及其使用方法。
背景技术
纯棉织物由纯棉纱线织成,织物品种繁多,花色各异。没有经过漂白、印染加工处理而具有天然棉纤维的色泽的棉布称为原色棉布,具有布身厚实、布面平整、结实耐用、缩水率较大等特点,可用做被单布、坯辅料或衬衫衣料。与化学纤维比较,保暖性佳、吸湿性强、柔软性好并且棉花纤维不存在静电作用等不良反应。纯棉面料在制备过程中绘制成各种颜色和各种款式的棉布,但是在印染后,棉布经过清洗后大多会出现掉色现象,针对这种问题。同时,因为棉、麻纤维弹性弱、抗皱性差,服装在穿戴和洗刷过程中容易起皱、不挺括,给消费者在平常的衣物打理中带来许多不方便。
专利号为CN201810299813.3的中国专利公开了一种防止纯棉衣服掉色的处理工艺,包括如下步骤:(1)将制备好的纯棉纺织品先预湿加热至50-60℃,湿度保持在45-65%;(2)选用制备好的处理剂加水稀释,并将稀释后的稀释处理剂加热至60-80℃;(3)后将纯棉纺织品即可浸入60-80℃的稀释处理剂中,保持温度,纯棉纺织品与处理剂相互作用60-120min;(4)将纯棉纺织品进行进一步处理,舒展平纯棉纺织品表面并使纯棉纺织品进一步固化织品纤维和棉纱。该处理方法能够加固纯棉纺织品颜色,水洗时不会或减缓掉色现象发生。但是该申请中的处理剂成分过于复杂,在与纯棉织物接触时会发生过多副反应,影响纯棉织物处理效果。
发明内容
本发明的目的在于提供一种减缓纯棉织物掉色的处理剂及其使用方法,处理剂包括湿摩擦牢度提升乳液和抗菌整理剂,先通过湿摩擦牢度提升乳液的浸轧处理,在织物表面形成一层立体网状保护薄膜,覆盖和封闭织物上的染料,同时,铜微粒对织物的摩擦表面起到自修复的作用,从而起到降低摩擦阻力的作用,提高织物的耐摩擦色牢度;再通过抗菌整理剂进行再次整理,能够显著提高棉织物的抗紫外线性能,抗紫外线性能的提高能够有效减缓紫外线对织物的老化、褪色作用,减缓棉织物掉色,并且赋予棉织物抑菌性能,减缓棉织物的细菌腐蚀;本发明通过处理剂对纯棉织物进行处理,从生成高分子保护膜、减小摩擦、提高抗紫外线性能以及抑菌等方面提高纯棉织物的色牢度,进而达到减缓纯棉织物掉色的目的,且处理方式简单、易于实现。
本发明的目的可以通过以下技术方案实现:
一种减缓纯棉织物掉色的处理剂,包括湿摩擦牢度提升乳液和抗菌整理剂;
所述湿摩擦牢度提升乳液由如下方法制备:
(1)称取十二烷基磺酸钠于装有蒸馏水的四颈烧瓶中,加入维生素C,搅拌并升温至80℃,再加入五水硫酸铜,于80℃恒温条件下反应2-3h,降温后,过滤、干燥制得改性铜粉;
(2)将改性铜粉研磨过100目筛后烘干至质量恒定,与丙烯酸丁酯、甲基丙烯酸甲酯、正十六烷、十二烷基苯磺酸钠、蒸馏水混合,搅拌均匀后在0-4℃水浴中超声分散3-4min;
(3)将上述混合物在氮气保护下升温至70℃,加入过硫酸钾后反应5h,待降至室温后,加入萘磺酸钠甲醛缩聚物,搅拌均匀,加入4倍蒸馏水进行稀释,再加入醋酸调节体系的pH值至5-6,得到湿摩擦牢度提升乳液;
所述抗菌整理剂由如下方法制备:
1)将碳酸钠溶于去离子水中配置成浓度为0.1mol/L的碳酸钠溶液,将桑蚕丝置于碳酸钠溶液中沸煮70-80min,取出,用去离子水冲洗5-6次,置于50℃烘箱内干燥后精炼、拉松,得到预处理桑蚕丝;
2)将水、无水乙醇、无水氯化钙按照摩尔比9:3:1配置成溶液,按固液比1g:15mL将预处理桑蚕丝置于溶液中溶解70min,过滤,滤液透析3d,得到丝素蛋白液;
3)将30mL浓度为2mmol/L的NaBH4溶液置于冰水浴中,搅拌的同时向溶液中逐滴加入10mL浓度为1mmol/L的AgNO3溶液,反应10-15min后,加入1.2g纳米TiO2,搅拌5min,加入50mg丝素蛋白液,搅拌24h,再加入3倍的乙酸溶液稀释,得到抗菌整理剂。
进一步地,所述湿摩擦牢度提升乳液制备步骤(1)中十二烷基磺酸钠、维生素C、五水硫酸铜、蒸馏水的用量之比为2-3:0.5-0.6:20-25:100。
进一步地,所述湿摩擦牢度提升乳液制备步骤(2)中改性铜粉、丙烯酸丁酯、甲基丙烯酸甲酯、正十六烷、十二烷基苯磺酸钠、蒸馏水的用量之比为1:10-12:12-14:5-6:2-3:3-4。
进一步地,所述湿摩擦牢度提升乳液制备步骤(3)中过硫酸钾的加入量为混合物质量的0.1%;萘磺酸钠甲醛缩聚物的加入量为混合物质量的10%。
一种减缓纯棉织物掉色的处理剂的使用方法,包括如下步骤:
第一步、将退浆后的纯棉织物在30℃的温水中浸泡2h;
第二步、将湿摩擦牢度提升乳液升温至70-75℃,将温水浸泡后的纯棉织物浸入湿摩擦牢度提升乳液中,在70-75℃恒温条件下,进行一浸一轧,带液率80-90%,并在85℃的烘箱中烘干;
第三步、将抗菌整理剂升温至40-45℃,将步骤S2处理过的棉织物浸入抗菌整理剂中,二浸二轧,轧余率70-80%,于80℃的烘箱中预烘5min,后在120℃的条件下焙烘3min;
第四步、将焙烘后的纯棉织物在室温条件下用自来水反复清洗6-8次,并在60℃条件下干燥至恒重。
本发明的有益效果:
本发明的处理剂包括湿摩擦牢度提升乳液,在制备过程中,丙烯酸酯类单体聚合生成聚丙烯酸酯高分子化合物,改性铜粉在十二烷基苯磺酸钠的分散作用下,均匀分散于聚丙烯酸酯高聚物中,使得湿摩擦牢度提升乳液中含有铜粉、聚丙烯酸酯和萘磺酸钠甲醛缩聚物三种有效成分;萘磺酸钠甲醛缩聚物为一种阴离子多功能分散剂,经其处理后,染色织物表面上与纤维结合不牢的染料可进一步得到去除,同时,聚丙烯酸酯中的活性基团(羧基、酯基)以及萘磺酸钠甲醛缩聚物中的磺基、羰基等都具有较高的反应活性,能与染料或纤维上的活性基团(-OH、醛基)交联成膜,在织物表面形成一层立体网状保护薄膜,覆盖和封闭织物上的染料,有效隔断染料与摩擦白布以及水的接触,防止染料溶解和水解而发生转移沾色;再者,铜微粒具有润滑功能,可降低物体表面摩擦因数,对织物的摩擦表面起到自修复的作用,从而起到降低摩擦阻力的作用,提高织物的耐摩擦色牢度;
本发明的处理剂包括抗菌整理剂,抗菌整理剂由丝素蛋白、纳米银和纳米二氧化钛制成,丝素蛋白是具有嵌段结构的高相对分子质量蛋白,等电点为5左右,既具有空间位阻效应,又具有静电作用,并且,丝素蛋白同时包含了与纳米Ag和纳米TiO2表面结合力作用较强的氮原子和较弱的氧原子,通过其蛋白长链的空间位阻作用、原子间的结合力作用以及静电作用,形成丝素蛋白分子包覆纳米Ag和纳米TiO2的微粒结构;经抗菌整理剂整理过的棉织物,由于棉纤维大分子含有一定量的醛基,丝素蛋白中的氨基酸可以与醛基发生反应脱出一分子水,生成了更加稳定的-CNH,提高了织物的抗紫外线性能,同时,丝素蛋白包覆的纳米TiO2是一种优良的紫外线屏蔽剂,其均匀分散在棉纤维上,使得棉织物的抗紫外线性能大幅提高,抗紫外线性能的提高能够有效减缓紫外线对织物的老化、褪色作用,即能减缓棉织物掉色;并且,丝素蛋白包覆的纳米银粒子具有抗菌作用,抑制菌类生长,提高棉织物的抑菌性能,减缓棉织物的细菌腐蚀;
本发明的处理剂包括湿摩擦牢度提升乳液和抗菌整理剂,先通过湿摩擦牢度提升乳液的浸轧处理,在织物表面形成一层立体网状保护薄膜,覆盖和封闭织物上的染料,同时,铜微粒对织物的摩擦表面起到自修复的作用,从而起到降低摩擦阻力的作用,提高织物的耐摩擦色牢度;再通过抗菌整理剂进行再次整理,能够显著提高棉织物的抗紫外线性能,抗紫外线性能的提高能够有效减缓紫外线对织物的老化、褪色作用,减缓棉织物掉色,并且赋予棉织物抑菌性能,减缓棉织物的细菌腐蚀;本发明通过处理剂对纯棉织物进行处理,从生成高分子保护膜、减小摩擦、提高抗紫外线性能以及抑菌等方面提高纯棉织物的色牢度,进而达到减缓纯棉织物掉色的目的,且处理方式简单、易于实现。
具体实施方式
下面将结合实施例对本发明的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其它实施例,都属于本发明保护的范围。
一种减缓纯棉织物掉色的处理剂,包括湿摩擦牢度提升乳液和抗菌整理剂;
所述湿摩擦牢度提升乳液由如下方法制备:
(1)称取十二烷基磺酸钠于装有蒸馏水的四颈烧瓶中,加入维生素C,搅拌并升温至80℃,再加入五水硫酸铜,于80℃恒温条件下反应2-3h,降温后,过滤、干燥制得改性铜粉;
其中,十二烷基磺酸钠、维生素C、五水硫酸铜、蒸馏水的用量之比为2-3:0.5-0.6:20-25:100;
(2)将改性铜粉研磨过100目筛后烘干至质量恒定,与丙烯酸丁酯、甲基丙烯酸甲酯、正十六烷、十二烷基苯磺酸钠、蒸馏水混合,搅拌均匀后在0-4℃水浴中超声分散3-4min;
其中,改性铜粉、丙烯酸丁酯、甲基丙烯酸甲酯、正十六烷、十二烷基苯磺酸钠、蒸馏水的用量之比为1:10-12:12-14:5-6:2-3:3-4;
(3)将上述混合物在氮气保护下升温至70℃,加入引发剂过硫酸钾后反应5h,待降至室温后,加入萘磺酸钠甲醛缩聚物,搅拌均匀,加入4倍蒸馏水进行稀释,再加入醋酸调节体系的pH值至5-6,得到湿摩擦牢度提升乳液;
过硫酸钾的加入量为混合物质量的0.1%;萘磺酸钠甲醛缩聚物的加入量为混合物质量的10%;
丙烯酸酯类单体聚合生成聚丙烯酸酯高分子化合物,改性铜粉在十二烷基苯磺酸钠的分散作用下,均匀分散于聚丙烯酸酯高聚物中,使得湿摩擦牢度提升乳液中含有铜粉、聚丙烯酸酯和萘磺酸钠甲醛缩聚物三种有效成分;萘磺酸钠甲醛缩聚物为一种阴离子多功能分散剂,经其处理后,染色织物表面上与纤维结合不牢的染料可进一步得到去除,同时,聚丙烯酸酯中的活性基团(羧基、酯基)以及萘磺酸钠甲醛缩聚物中的磺基、羰基等都具有较高的反应活性,能与染料或纤维上的活性基团(-OH、醛基)交联成膜,在织物表面形成一层立体网状保护薄膜,覆盖和封闭织物上的染料,有效隔断染料与摩擦白布以及水的接触,防止染料溶解和水解而发生转移沾色;再者,铜微粒具有润滑功能,可降低物体表面摩擦因数,对织物的摩擦表面起到自修复的作用,从而起到降低摩擦阻力的作用,提高织物的耐摩擦色牢度;
棉纤维耐酸不耐碱,在碱性条件下,棉纤维会受到损伤,当受外力摩擦后,其容易断裂脱落;同时,在碱性条件下活性染料会发生水解,导致与棉纤维结合的染料分子会不牢固,在织物表面形成浮色,同时,聚丙烯酸酯中含有的羧基、酯基等基团在酸性条件下易与棉纤维的羟基键合,所以在酸性条件下湿摩整理效果较好,因此,湿摩擦牢度提升乳液的pH值控制为5-6;
所述抗菌整理剂由如下方法制备:
1)将碳酸钠溶于去离子水中配置成浓度为0.1mol/L的碳酸钠溶液,将桑蚕丝置于碳酸钠溶液中沸煮70-80min,取出,用去离子水冲洗5-6次,置于50℃烘箱内干燥后精炼、拉松,得到预处理桑蚕丝;
2)将水、无水乙醇、无水氯化钙按照摩尔比9:3:1配置成溶液,按固液比1g:15mL将预处理桑蚕丝置于溶液中溶解70min,过滤,滤液透析3d,得到丝素蛋白液;
3)将30mL浓度为2mmol/L的NaBH4溶液置于冰水浴中,搅拌的同时向溶液中逐滴加入10mL浓度为1mmol/L的AgNO3溶液,反应10-15min后,加入1.2g纳米TiO2,搅拌5min,加入50mg丝素蛋白液,搅拌24h,再加入3倍的乙酸溶液(质量分数为1%)稀释,得到抗菌整理剂;
丝素蛋白是具有嵌段结构的高相对分子质量蛋白,等电点为5左右,既具有空间位阻效应,又具有静电作用,并且,丝素蛋白同时包含了与纳米Ag和纳米TiO2表面结合力作用较强的氮原子和较弱的氧原子,通过其蛋白长链的空间位阻作用、原子间的结合力作用以及静电作用,形成丝素蛋白分子包覆纳米Ag和纳米TiO2的微粒结构;经抗菌整理剂整理过的棉织物,由于棉纤维大分子含有一定量的醛基,丝素蛋白中的氨基酸可以与醛基发生反应脱出一分子水,生成了更加稳定的-CNH,提高了织物的抗紫外线性能,同时,丝素蛋白包覆的纳米TiO2是一种优良的紫外线屏蔽剂,其均匀分散在棉纤维上,使得棉织物的抗紫外线性能大幅提高,抗紫外线性能的提高能够有效减缓紫外线对织物的老化、褪色作用,即能减缓棉织物掉色;并且,丝素蛋白包覆的纳米银粒子具有抗菌作用,抑制菌类生长,提高棉织物的抑菌性能,减缓棉织物的细菌腐蚀;
所述减缓纯棉衣服掉色的处理剂的使用方法如下:
第一步、将退浆后的纯棉织物在30℃的温水中浸泡2h;
第二步、将湿摩擦牢度提升乳液升温至70-75℃,将温水浸泡后的纯棉织物浸入湿摩擦牢度提升乳液中,在70-75℃恒温条件下,进行一浸一轧,带液率80-90%,并在85℃的烘箱中烘干;
第三步、将抗菌整理剂升温至40-45℃,将步骤S2处理过的棉织物浸入抗菌整理剂中,二浸二轧,轧余率70-80%,于80℃的烘箱中预烘5min,后在120℃的条件下焙烘3min;
第四步、将焙烘后的纯棉织物在室温条件下用自来水反复清洗6-8次,并在60℃条件下干燥至恒重。
实施例1
将纯棉织物按照如下方法进行处理:
第一步、将退浆后的纯棉织物在30℃的温水中浸泡2h;
第二步、将湿摩擦牢度提升乳液升温至70℃,将温水浸泡后的纯棉织物浸入湿摩擦牢度提升乳液中,在70℃恒温条件下,进行一浸一轧,带液率80%,并在85℃的烘箱中烘干;
第三步、将抗菌整理剂升温至40℃,将步骤S2处理过的棉织物浸入抗菌整理剂中,二浸二轧,轧余率70%,于80℃的烘箱中预烘5min,后在120℃的条件下焙烘3min;
第四步、将焙烘后的纯棉织物在室温条件下用自来水反复清洗6次,并在60℃条件下干燥至恒重。
实施例2
将纯棉织物按照如下方法进行处理:
第一步、将退浆后的纯棉织物在30℃的温水中浸泡2h;
第二步、将湿摩擦牢度提升乳液升温至73℃,将温水浸泡后的纯棉织物浸入湿摩擦牢度提升乳液中,在73℃恒温条件下,进行一浸一轧,带液率85%,并在85℃的烘箱中烘干;
第三步、将抗菌整理剂升温至43℃,将步骤S2处理过的棉织物浸入抗菌整理剂中,二浸二轧,轧余率75%,于80℃的烘箱中预烘5min,后在120℃的条件下焙烘3min;
第四步、将焙烘后的纯棉织物在室温条件下用自来水反复清洗7次,并在60℃条件下干燥至恒重。
实施例3
将纯棉织物按照如下方法进行处理:
第一步、将退浆后的纯棉织物在30℃的温水中浸泡2h;
第二步、将湿摩擦牢度提升乳液升温至75℃,将温水浸泡后的纯棉织物浸入湿摩擦牢度提升乳液中,在75℃恒温条件下,进行一浸一轧,带液率90%,并在85℃的烘箱中烘干;
第三步、将抗菌整理剂升温至45℃,将步骤S2处理过的棉织物浸入抗菌整理剂中,二浸二轧,轧余率80%,于80℃的烘箱中预烘5min,后在120℃的条件下焙烘3min;
第四步、将焙烘后的纯棉织物在室温条件下用自来水反复清洗8次,并在60℃条件下干燥至恒重。
对比例1
将实施例1中的第三步去掉,即只进行湿摩擦牢度提升乳液处理。
对比例2
将实施例1中的第二步去掉,即只进行抗菌整理剂处理。
对比例3
未经过任何处理的纯棉织物。
对实施例1-3和对比例1-3的纯棉织物做如下性能测试:
织物耐摩擦色牢度:按GB/T 3920-2008《纺织品色牢度试验耐摩擦色牢度》进行测试;抗紫外线性能:利用HB902型紫外线透过率分析仪测试UPF值;抑菌性能:按照GB/T20944.2-2007《纺织品抗菌性能的评价第2部分:吸收法》测试面料的抗菌性;织物顶破强力:按照GB/T 19976-2005《纺织品顶破强力的测定钢球法》进行测试;测试结果如下表:
可知,实施例1-3处理过的纯棉织物的湿摩擦牢度均达到3级,干摩擦牢度均达到4级;相较于对比例2,说明经过湿摩擦牢度提升乳液处理过的纯棉织物,其干/湿摩擦牢度均能得到明显增强;实施例1-3处理过的纯棉织物的UPF值达到45.2-45.9,大肠杆菌抑菌率和金黄色葡萄球菌的抑菌率分别为76.2-77.1%、89.7-90.5%,相较于对比例1,说明经过抗菌整理剂处理能够显著提高纯棉织物的抗紫外线性能和抑菌性能;实施例1-3制得的纯棉织物的顶破强力为235.9-237.1N,未经过任何处理的纯棉织物的顶破强力为240.5N,强力损失较小,说明经过本发明的处理剂不会对纯棉织物的织物强力造成影响;经过本发明的处理剂处理的纯棉织物具有高的耐摩擦色牢度、较强的抗紫外线性能和抑菌性能,能够有效减缓纯棉织物的掉色。
以上公开的本发明优选实施例只是用于帮助阐述本发明。优选实施例并没有详尽叙述所有的细节,也不限制该发明仅为所述的具体实施方式。显然,根据本说明书的内容,可作很多的修改和变化。本说明书选取并具体描述这些实施例,是为了更好地解释本发明的原理和实际应用,从而使所属技术领域技术人员能很好地理解和利用本发明。本发明仅受权利要求书及其全部范围和等效物的限制。
Claims (5)
1.一种减缓纯棉织物掉色的处理剂,其特征在于,包括湿摩擦牢度提升乳液和抗菌整理剂;
所述湿摩擦牢度提升乳液由如下方法制备:
(1)称取十二烷基磺酸钠于装有蒸馏水的四颈烧瓶中,加入维生素C,搅拌并升温至80℃,再加入五水硫酸铜,于80℃恒温条件下反应2-3h,降温后,过滤、干燥制得改性铜粉;
(2)将改性铜粉研磨过100目筛后烘干至质量恒定,与丙烯酸丁酯、甲基丙烯酸甲酯、正十六烷、十二烷基苯磺酸钠、蒸馏水混合,搅拌均匀后在0-4℃水浴中超声分散3-4min;
(3)将上述混合物在氮气保护下升温至70℃,加入过硫酸钾后反应5h,待降至室温后,加入萘磺酸钠甲醛缩聚物,搅拌均匀,加入4倍蒸馏水进行稀释,再加入醋酸调节体系的pH值至5-6,得到湿摩擦牢度提升乳液;
所述抗菌整理剂由如下方法制备:
1)将碳酸钠溶于去离子水中配置成浓度为0.1mol/L的碳酸钠溶液,将桑蚕丝置于碳酸钠溶液中沸煮70-80min,取出,用去离子水冲洗5-6次,置于50℃烘箱内干燥后精炼、拉松,得到预处理桑蚕丝;
2)将水、无水乙醇、无水氯化钙按照摩尔比9:3:1配置成溶液,按固液比1g:15mL将预处理桑蚕丝置于溶液中溶解70min,过滤,滤液透析3d,得到丝素蛋白液;
3)将30mL浓度为2mmol/L的NaBH4溶液置于冰水浴中,搅拌的同时向溶液中逐滴加入10mL浓度为1mmol/L的AgNO3溶液,反应10-15min后,加入1.2g纳米TiO2,搅拌5min,加入50mg丝素蛋白液,搅拌24h,再加入3倍的乙酸溶液稀释,得到抗菌整理剂。
2.根据权利要求1所述的一种减缓纯棉织物掉色的处理剂,其特征在于,所述湿摩擦牢度提升乳液制备步骤(1)中十二烷基磺酸钠、维生素C、五水硫酸铜、蒸馏水的用量之比为2-3:0.5-0.6:20-25:100。
3.根据权利要求1所述的一种减缓纯棉织物掉色的处理剂,其特征在于,所述湿摩擦牢度提升乳液制备步骤(2)中改性铜粉、丙烯酸丁酯、甲基丙烯酸甲酯、正十六烷、十二烷基苯磺酸钠、蒸馏水的用量之比为1:10-12:12-14:5-6:2-3:3-4。
4.根据权利要求1所述的一种减缓纯棉织物掉色的处理剂,其特征在于,所述湿摩擦牢度提升乳液制备步骤(3)中过硫酸钾的加入量为混合物质量的0.1%;萘磺酸钠甲醛缩聚物的加入量为混合物质量的10%。
5.一种减缓纯棉织物掉色的处理剂的使用方法,其特征在于,包括如下步骤:
第一步、将退浆后的纯棉织物在30℃的温水中浸泡2h;
第二步、将湿摩擦牢度提升乳液升温至70-75℃,将温水浸泡后的纯棉织物浸入湿摩擦牢度提升乳液中,在70-75℃恒温条件下,进行一浸一轧,带液率80-90%,并在85℃的烘箱中烘干;
第三步、将抗菌整理剂升温至40-45℃,将步骤S2处理过的棉织物浸入抗菌整理剂中,二浸二轧,轧余率70-80%,于80℃的烘箱中预烘5min,后在120℃的条件下焙烘3min;
第四步、将焙烘后的纯棉织物在室温条件下用自来水反复清洗6-8次,并在60℃条件下干燥至恒重。
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