CN108822998A - 缓释型光催化漂白清洁气雾剂 - Google Patents
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Abstract
本发明涉及缓释型光催化漂白清洁气雾剂。所述缓释型光催化漂白清洁气雾剂的原料组分按重量份计如下:月桂酰肌胺酸钠3~5份,乙二胺四乙酸二钠0.1~0.2份,异构十三醇聚氧乙烯醚0.1~0.3份,烷基糖苷0.5~0.8份,凹凸棒土1~1.5份,聚硅氧烷羧基甜菜碱0.3~0.5份,环糊精0.2~0.3份,
Description
技术领域
本发明涉及气雾剂,特别涉及缓释型光催化漂白清洁气雾剂。
背景技术
日常生活中,经常会在织物等物体表面染上茶渍、果汁、油渍等有色污垢。这些特殊污渍用普通的清洁剂很难除去。为了获得满意的清洁效果,人们开发出各种各样的专用漂白洗涤剂,其配方主要活性成分是含氯漂白剂和含氧漂白剂(氧漂剂)。家用含氯漂白剂主要是次氯酸钠溶液,是一种强氧化剂,可以破坏色素,具有很强的漂白作用,但溶液具有腐性,可致人体皮肤灼伤;含氧漂白剂主要有双氧水、过碳酸钠和过硼酸钠等,性质相对较温和,能够有效的去除织物上的茶渍、果汁等污渍且相对不易对织物造成损伤。但是在使用上仍然受到一定限制,并对环境造成一定的不良影响。如过硼酸钠需要在80℃以上的高温才能有效地发挥其漂白活性,即使加入TAED(四乙酰乙二胺)作为活化,也需要在40度以上才能很好地发挥漂白活性,在倡导低温洗涤的时代,其应用也受到限制。
在这样的背景条件下,我公司致力于一种更环保、更健康、更易于使用的洗涤产品的研究:深入开发基于光催化漂白和生物酶漂白技术,与气雾剂释放技术相结合的新型洗涤剂,降低使用者的劳动强度,提高洗涤用品的可持续性,推动洗涤用品行业转型升级。
发明内容
为了克服现有技术的不足,本发明提供了缓释型光催化漂白清洁气雾剂。本发明的缓释型光催化漂白清洁气雾剂使用方便,为消费者降低了劳动强度,且具有无腐蚀性和不会破坏环境的特点,能够使人们进入一个环保、健康的洗涤新时代,具有广阔的发展空间和巨大的市场容量。
本发明的技术方案:缓释型光催化漂白清洁气雾剂,其原料组分按重量份计如下:
本发明的缓释型光催化漂白清洁气雾剂按照如下步骤制得:
i.将凹凸棒土、聚硅氧烷羧基甜菜碱、环糊精混合,搅拌均匀,制得A物料;
ii.将烷基糖苷、漆酶、纳米甲壳质混合,搅拌均匀,静置2~4h,制得B物料;
iii.将月桂酰肌胺酸钠、乙二胺四乙酸二钠、异构十三醇聚氧乙烯醚、香精和去离子水混合,搅拌均匀,制得C物料;
iv.将A物料、B物料和C物料混合,搅拌均匀,制得D物料,输送到真空贮罐中等待灌装;
vi.在全自动灌装机上给气雾剂罐装配气雾阀门,并对D物料和丙丁烷进行静态混合罐装;
vii.在水浴温度为55±1℃的条件下,进行恒温水浴的密封性检测,对于没有漏气、变形的,进行空气吹干、装配塑料件、入库。
进一步,前述的缓释型光催化漂白清洁气雾剂的原料组分按重量份计如下:
再进一步,前述的缓释型光催化漂白清洁气雾剂的原料组分按重量份计如下:
与现有技术相比,本发明的缓释型光催化漂白清洁气雾剂具有特定的组分、用量和制备方法,取得了如下显著的进步:
1)配方环保,不会损害环境,具有可持续性,且性质温和,不会对皮肤、织物纤维等造成损伤;
2)采用气雾剂释放技术,将清洁剂浓缩液以气溶胶的形态进行定量极速释放,在物品表面形成活性泡沫,对物品表面进行去污除臭,使用方便,可以大幅降低劳动强度,减少了人们日常家务活动所占用的时间,使繁琐的家务活变得轻松和优雅;
3)(光催化剂)吸收可见光后,能够有效将空气中的处于基态的氧分子转变成为处于激发态的单线态氧,然后转化成相对稳定的三线态氧,可以在常温下漂白污渍,符合低温洗涤的要求,适用范围更广;
4)配方中的漆酶本身具有一定的去污能力,研究表明,在本发明的表面活性剂复配体系下,漆酶具有增强的催化活性的作用,产生显著的增白效果;
5)特定的制备方法下,吸附在凹凸棒土上,并被聚硅氧烷羧基甜菜碱包埋,形成微胶囊封装;漆酶吸附在纳米甲壳质上,并被烷基糖苷包埋,形成微胶囊封装;从而,整个复配体系稳定性好,不易变质,产品喷射到物体表面后,和漆酶逐渐被释放出来,对物体进行强效去污处理;
6)本身呈蓝色,特定用量的使得清洁剂喷射到物体表面后,活性泡沫呈清新怡人的蓝色,并随着光催化漂白的进行,逐渐被分解,在光催化剂消耗完时,泡沫转为无色状态,从而起到指示作用,使用者可以通过观察活性泡沫的颜色变化情况,比较直观准确的判定作用时间和效力,避免清洁剂被过度喷射;
7)本发明的缓释型光催化漂白清洁气雾剂易于制备,有利于规模化生产;
8)试验研究表明,本发明的洗涤剂比20%质量分数的过碳酸钠的洗涤剂在通常用量下对常见可氧化性污渍具有更好的漂白效果,具有活性成分用量少的特点,从而具有生产成本较低的优势。
作为优化,前述的缓释型光催化漂白清洁气雾剂中,所述凹凸棒土的粒径在5000~10000目之间。经过发明人长期试验、摸索,发现,凹凸棒土的粒径在5000~10000目之间时,凹凸棒土吸附光催化剂的能力较强,且制得的产品稳定性相对更好,具有相对更长的使用寿命。
具体实施方式
下面结合具体实施方式(实施例)对本发明作进一步的说明,但并不作为对本发明限制的依据。
以下各实施例中,用量1份实际对应的100g。
本发明中,若非特指,所采用的原料和设备等均可从市场购得或是本领域常用的。
本发明的下列各实施例中,光催化剂购自汽巴公司;纳米甲壳质购自广汉恒宇新材料有限公司;凹凸棒土的粒径为8000目。
本发明的缓释型光催化漂白清洁气雾剂可以按照下表1所列的配方制备。
表1
实施例1
i.按照表2中的用量,将凹凸棒土、聚硅氧烷羧基甜菜碱、 环糊精混合,搅拌均匀,制得A物料;
ii.按照表2中的用量将烷基糖苷、漆酶、纳米甲壳质混合,搅拌均匀,静置2h,制得B物料;
iii.按照表2中的用量将月桂酰肌胺酸钠、乙二胺四乙酸二钠、异构十三醇聚氧乙烯醚、香精和去离子水混合,搅拌均匀,制得C物料;
iv.将制得的A物料、B物料和C物料混合,搅拌均匀,制得D物料,输送到真空贮罐中等待灌装;
vi.在全自动灌装机上给气雾剂罐装配气雾阀门,并对D物料和丙丁烷进行静态混合罐装;
vii.在水浴温度为55±1℃的条件下,进行恒温水浴的密封性检测(时间为30min),对于没有漏气、变形的,进行空气吹干、装配塑料件、入库。
表2
实施例2
与实施例1不同的是,本实施例中,制备缓释型光催化漂白清洁气雾剂的各原料组分的配比如表3。
表3
实施例3
与实施例1不同的是,本实施例中,制备缓释型光催化漂白清洁气雾剂的各原料组分的配比如表4。
表4
试验表明,具体实施例1-3所制得的缓释型光催化漂白清洁气雾剂均能实现本发明的上述发明目的,但相对来说,实施例1使用的配方为最优配比,其制得的缓释型光催化漂白清洁气雾剂产品具有最好的清洁、去污、增白效果。
本发明的缓释型光催化漂白清洁气雾剂喷射到物体上后,对物体表层进行强力去污,待水分蒸发完后,残留物以粉末形式存在于物体表面,凤轻轻一吹,即可脱离物体,随风而去,还清洁对象一份干净,使用方法新颖、独特,且可大幅减轻劳动强度。
上述对本申请中涉及的发明的一般性描述和对其具体实施例的描述不应理解为是对该发明技术方案构成的限制。本领域所属技术人员根据本申请的公开,可以在不违背所涉及的发明构成要素的前提下,对上述一般性描述或/和实施例中的公开技术特征进行增加、减少或组合,形成属于本申请保护范围之内的其它的技术方案。
Claims (4)
1.缓释型光催化漂白清洁气雾剂,其特征在于,其原料组分按重量份计如下:
所述缓释型光催化漂白清洁气雾剂按照如下步骤制得:
i.将凹凸棒土、聚硅氧烷羧基甜菜碱、BMC、环糊精混合,搅拌均匀,制得A物料;
ii.将烷基糖苷、漆酶、纳米甲壳质混合,搅拌均匀,静置2~4h,制得B物料;
iii.将月桂酰肌胺酸钠、乙二胺四乙酸二钠、异构十三醇聚氧乙烯醚、香精和去离子水混合,搅拌均匀,制得C物料;
iv.将A物料、B物料和C物料混合,搅拌均匀,制得D物料,输送到真空贮罐中等待灌装;
vi.在全自动灌装机上给气雾剂罐装配气雾阀门,并对D物料和丙丁烷进行静态混合罐装;
vii.在水浴温度为55±1℃的条件下,进行恒温水浴的密封性检测,对于没有漏气、变形的,进行空气吹干、装配塑料件、入库。
2.根据权利要求1所述的缓释型光催化漂白清洁气雾剂,其特征在于,其原料组分按重量份计如下:
3.根据权利要求2所述的缓释型光催化漂白清洁气雾剂,其特征在于,其原料组分按重量份计如下:
4.根据权利要求1、2或3所述的缓释型光催化漂白清洁气雾剂,其特征在于:所述凹凸棒土的粒径在5000~10000目之间。
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