CN113136270A - 一种植物型抗菌清洁剂及其生产工艺 - Google Patents
一种植物型抗菌清洁剂及其生产工艺 Download PDFInfo
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Abstract
本发明公开了一种植物型抗菌清洁剂,包括如下重量份的原料:吴茱萸8‑10份、板蓝根5‑10份、鱼腥草5‑7份、金银花4‑6份、艾草1‑3份、表面活性剂8‑10份、烷基糖苷5‑10份、正丙醇8‑10份、抗菌剂2‑3份、食品香精0.5‑1份、去离子水40‑50份;本发明还公开了该植物型抗菌清洁剂的生产工艺。本发明中该清洁剂的原料中含有中药植物提取液、烷基糖苷、椰油基两性表面活性剂、多元醇、抗菌剂等,由于采用纯植物制剂,清洁剂温和低刺激、自带抗菌因子、效能高、环保安全,可用于厨具、果蔬、婴幼儿玩具等表面的除油和杀菌,此外,设计合成抗菌剂,配合植物型抗菌因子协同提升清洁剂的抗菌效能。
Description
技术领域
本发明属于清洁剂技术领域,涉及一种植物型抗菌清洁剂及其生产工艺。
背景技术
清洁剂,是一种液体状态的用来洗涤衣物或清洗用具或清洁家具等东西的清洁产品。它采用多种新型表面活性剂,去污力强、漂洗容易、对皮肤无刺激,最宜洗涤厨具、果蔬。
现有的清洁剂大多以化学成分为原料,日常清洗厨具、水果瓜菜的过程中,都会或多或少有一定的残留,日积月累,对人体的健康产生危害,长期使用对皮肤也会造成损伤,化学清洁剂使用后不易分解,对环境也造成了污染。特别随着社会的发展人们对餐具的清洁度要求不断提高,现有的清洁剂存在不抑菌,不环保、不安全等问题。
发明内容
本发明的目的在于提供一种植物型抗菌清洁剂及其生产工艺,该清洁剂的原料中含有中药植物提取液、烷基糖苷、椰油基两性表面活性剂、多元醇、抗菌剂等,由于采用纯植物制剂,清洁剂温和低刺激、自带抗菌因子、效能高、环保安全,可用于厨具、果蔬、婴幼儿玩具等表面的除油和杀菌,此外,设计合成抗菌剂,配合植物型抗菌因子协同提升清洁剂的抗菌效能。
本发明的目的可以通过以下技术方案实现:
一种植物型抗菌清洁剂,包括如下重量份的原料:
吴茱萸8-10份、板蓝根5-10份、鱼腥草5-7份、金银花4-6份、艾草1-3份、表面活性剂8-10份、烷基糖苷5-10份、正丙醇8-10份、抗菌剂2-3份、食品香精0.5-1份、去离子水40-50份;
该植物型抗菌清洁剂由如下步骤制成:
步骤A1,将吴茱萸、板蓝根、鱼腥草捣烂后加入烧瓶中,加入乙醇溶液,浸泡30-40分钟后加热回流4-5小时,将提取液于3000-3200rpm离心分离10-15分钟,弃去沉淀,制得混合液a;
步骤A2,将金银花、艾草捣烂后加入烧瓶中,加入蒸馏水,浸泡50-60分钟后加热回流2-3小时,将提取液于3000-3200rpm离心分离10-15分钟,弃去沉淀,制得混合液b;
步骤A3,将步骤A1制备的混合液a、步骤A2制备的混合液b加入化料釜中,加入去离子水、表面活性剂、烷基糖苷、正丙醇、抗菌剂于250-300rpm速率下搅拌至溶解,制得混合液c;
步骤A4,向步骤A3制备的混合液c中加入食品香精,加入柠檬酸调节pH至6.8-7.5,制得植物型抗菌清洁剂。
进一步,步骤A1所述的乙醇溶液的用量为吴茱萸、板蓝根、鱼腥草总质量的3-5倍,乙醇溶液的体积分数为95%,加热温度为75-80℃。
进一步,步骤A2所述的蒸馏水的用量为金银花、艾草总质量的4-5倍,加热温度为95-98℃。
进一步,步骤A3所述的表面活性剂为椰油基甜菜碱、椰油基氧化胺中的一种或两种按任意比例混合。
进一步,所述的抗菌剂由如下步骤制得:
步骤S1,将2,2,5,5-四甲基-4-咪唑烷酮加入烧瓶中,加入丙酮,将烧瓶置于油浴中预热,待2,2,5,5-四甲基-4-咪唑烷酮溶解后,加入碳酸钾,回流40-50分钟后加入1,3-二溴丙烷,继续加热回流12-16小时,减压蒸馏除去丙酮后加入乙酸乙酯,再用去离子水洗涤数次,制得中间体1;
反应过程如下:
步骤S2,向三口烧瓶中加入步骤S1制备的中间体1和三苯基膦,加入苯甲醇,通入氮气,打开磁力搅拌器,控制搅拌速率200-220rpm,温度120℃,反应18-20小时,制得抗菌剂。
反应过程如下:
进一步,步骤S1所述的2,2,5,5-四甲基-4-咪唑烷酮、丙酮、碳酸钾、1,3-二溴丙烷、乙酸乙酯的用量比为3.89-4.12g:200-220mL:15.6-16.2g:21.2-22.3g:2.12-2.22g。
进一步,步骤S2所述的中间体1、三苯基膦、苯甲醇的用量比为5.31-5.42g:3.45-3.56g:40-45mL。
一种植物型抗菌清洁剂的生产工艺,包括如下生产步骤:
步骤A1,将吴茱萸、板蓝根、鱼腥草捣烂后加入烧瓶中,加入乙醇溶液,浸泡30-40分钟后加热回流4-5小时,将提取液于3000-3200rpm离心分离10-15分钟,弃去沉淀,制得混合液a;
步骤A2,将金银花、艾草捣烂后加入烧瓶中,加入蒸馏水,浸泡50-60分钟后加热回流2-3小时,将提取液于3000-3200rpm离心分离10-15分钟,弃去沉淀,制得混合液b;
步骤A3,将步骤A1制备的混合液a、步骤A2制备的混合液b加入化料釜中,加入去离子水、表面活性剂、烷基糖苷、正丙醇、抗菌剂于250-300rpm速率下搅拌至溶解,制得混合液c;
步骤A4,向步骤A3制备的混合液c中加入食品香精,加入柠檬酸调节pH至6.8-7.5,制得植物型抗菌清洁剂。
本发明的有益效果:本发明的目的在于提供一种植物型抗菌清洁剂及其生产工艺,该清洁剂的原料中含有中药植物提取液、烷基糖苷、椰油基两性表面活性剂、多元醇、抗菌剂等,由于采用纯植物制剂,清洁剂温和低刺激、自带抗菌因子、效能高、环保安全,可用于厨具、果蔬、婴幼儿玩具等表面的除油和杀菌,此外,设计合成抗菌剂,配合植物型抗菌因子协同提升清洁剂的抗菌效能。
具体地,对于吴茱萸、板蓝根、鱼腥草等中药植物,其主要成分是生物碱,通常用乙醇回流提取,而金银花、艾草,其主要成分为挥发油,通常用水蒸气蒸馏法提取,本发明使用的吴茱萸、板蓝根、鱼腥草、金银花、艾草不仅可适量替代清洁剂的主要成分,减少有机组分的占比,更加环保安全,并且其属于天然抗菌中草药,抗菌机理是抑制剂作用于微生物的细胞膜,破坏其屏障作用,使细胞不能生长繁殖,但是植物型抗菌剂的广谱性略差,因此再配合设计合成的抗菌剂,抗菌抑菌效能更佳,2,2,5,5-四甲基-4-咪唑烷酮发生卤代反应生成卤胺,卤胺与三苯基膦通过共价键结合起来,形成卤胺-季膦盐型抗菌剂,含有正电荷的P+与细菌接触,破坏细胞膜,使蛋白质变性,阻碍DNA的复制繁殖,达到抗菌效果;卤胺中N-X在水分子中会缓慢分解、释放出具有强氧化作用的X正离子来杀菌。
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。
实施例1
一种植物型抗菌清洁剂,包括如下重量份的原料:吴茱萸8份、板蓝根5份、鱼腥草5份、金银花4份、艾草1份、表面活性剂8份、烷基糖苷5份、正丙醇8份、抗菌剂2份、食品香精0.5份、去离子水40份;
该植物型抗菌清洁剂由如下步骤制成:
步骤A1,将吴茱萸、板蓝根、鱼腥草捣烂后加入烧瓶中,加入乙醇溶液,浸泡30分钟后加热回流4小时,将提取液于3000rpm离心分离10分钟,弃去沉淀,制得混合液a;
步骤A2,将金银花、艾草捣烂后加入烧瓶中,加入蒸馏水,浸泡50分钟后加热回流2小时,将提取液于3000rpm离心分离10分钟,弃去沉淀,制得混合液b;
步骤A3,将步骤A1制备的混合液a、步骤A2制备的混合液b加入化料釜中,加入去离子水、表面活性剂、烷基糖苷、正丙醇、抗菌剂于250rpm速率下搅拌至溶解,制得混合液c;
步骤A4,向步骤A3制备的混合液c中加入食品香精,加入柠檬酸调节pH至6.8,制得植物型抗菌清洁剂。
其中,步骤A1所述的乙醇溶液的用量为吴茱萸、板蓝根、鱼腥草总质量的3倍,乙醇溶液的体积分数为95%,加热温度为75℃。
其中,步骤A2所述的蒸馏水的用量为金银花、艾草总质量的4倍,加热温度为95℃。
其中,步骤A3所述的表面活性剂为椰油基甜菜碱。
其中,步骤A4所述的食品香精为柠檬香精。
其中,抗菌剂由如下步骤制得:
步骤S1,将2,2,5,5-四甲基-4-咪唑烷酮加入烧瓶中,加入丙酮,将烧瓶置于油浴中预热,待2,2,5,5-四甲基-4-咪唑烷酮溶解后,加入碳酸钾,回流40分钟后加入1,3-二溴丙烷,继续加热回流12小时,减压蒸馏除去丙酮后加入乙酸乙酯,再用去离子水洗涤数次,制得中间体1;
步骤S2,向三口烧瓶中加入步骤S1制备的中间体1和三苯基膦,加入苯甲醇,通入氮气,打开磁力搅拌器,控制搅拌速率200rpm,温度120℃,反应18小时,制得抗菌剂。
其中,步骤S1所述的2,2,5,5-四甲基-4-咪唑烷酮、丙酮、碳酸钾、1,3-二溴丙烷、乙酸乙酯的用量比为3.89g:200mL:15.6g:21.2g:2.12g。
其中,骤S2所述的中间体1、三苯基膦、苯甲醇的用量比为5.31g:3.45g:40mL。
一种植物型抗菌清洁剂的生产工艺,包括如下生产步骤:
步骤A1,将吴茱萸、板蓝根、鱼腥草捣烂后加入烧瓶中,加入乙醇溶液,浸泡30分钟后加热回流4小时,将提取液于3000rpm离心分离10分钟,弃去沉淀,制得混合液a;
步骤A2,将金银花、艾草捣烂后加入烧瓶中,加入蒸馏水,浸泡50分钟后加热回流2小时,将提取液于3000rpm离心分离10分钟,弃去沉淀,制得混合液b;
步骤A3,将步骤A1制备的混合液a、步骤A2制备的混合液b加入化料釜中,加入去离子水、表面活性剂、烷基糖苷、正丙醇、抗菌剂于250rpm速率下搅拌至溶解,制得混合液c;
步骤A4,向步骤A3制备的混合液c中加入食品香精,加入柠檬酸调节pH至6.8,制得植物型抗菌清洁剂。
实施例2
一种植物型抗菌清洁剂,包括如下重量份的原料:吴茱萸9份、板蓝根7份、鱼腥草6份、金银花5份、艾草2份、表面活性剂9份、烷基糖苷7份、正丙醇9份、抗菌剂2.5份、食品香精0.7份、去离子水45份;
该植物型抗菌清洁剂由如下步骤制成:
步骤A1,将吴茱萸、板蓝根、鱼腥草捣烂后加入烧瓶中,加入乙醇溶液,浸泡35分钟后加热回流4.5小时,将提取液于3000rpm离心分离10分钟,弃去沉淀,制得混合液a;
步骤A2,将金银花、艾草捣烂后加入烧瓶中,加入蒸馏水,浸泡50分钟后加热回流2.5小时,将提取液于3100rpm离心分离12分钟,弃去沉淀,制得混合液b;
步骤A3,将步骤A1制备的混合液a、步骤A2制备的混合液b加入化料釜中,加入去离子水、表面活性剂、烷基糖苷、正丙醇、抗菌剂于270rpm速率下搅拌至溶解,制得混合液c;
步骤A4,向步骤A3制备的混合液c中加入食品香精,加入柠檬酸调节pH至7.0,制得植物型抗菌清洁剂。
其中,步骤A1所述的乙醇溶液的用量为吴茱萸、板蓝根、鱼腥草总质量的4倍,乙醇溶液的体积分数为95%,加热温度为75℃.
其中,步骤A2所述的蒸馏水的用量为金银花、艾草总质量的5倍,加热温度为96℃.
其中,步骤A3所述的表面活性剂为椰油基氧化胺。
其中,步骤A4所述的食品香精为水蜜桃香精。
其中,所述的抗菌剂由如下步骤制得:
步骤S1,将2,2,5,5-四甲基-4-咪唑烷酮加入烧瓶中,加入丙酮,将烧瓶置于油浴中预热,待2,2,5,5-四甲基-4-咪唑烷酮溶解后,加入碳酸钾,回流45分钟后加入1,3-二溴丙烷,继续加热回流14小时,减压蒸馏除去丙酮后加入乙酸乙酯,再用去离子水洗涤数次,制得中间体1;
步骤S2,向三口烧瓶中加入步骤S1制备的中间体1和三苯基膦,加入苯甲醇,通入氮气,打开磁力搅拌器,控制搅拌速率210rpm,温度120℃,反应19小时,制得抗菌剂。
其中,步骤S1所述的2,2,5,5-四甲基-4-咪唑烷酮、丙酮、碳酸钾、1,3-二溴丙烷、乙酸乙酯的用量比为4.02g:210mL:15.8g:21.8g:2.16g。
其中,步骤S2所述的中间体1、三苯基膦、苯甲醇的用量比为5.38g:3.52g:42mL。
一种植物型抗菌清洁剂的生产工艺,包括如下生产步骤:
步骤A1,将吴茱萸、板蓝根、鱼腥草捣烂后加入烧瓶中,加入乙醇溶液,浸泡35分钟后加热回流4.5小时,将提取液于3000rpm离心分离10分钟,弃去沉淀,制得混合液a;
步骤A2,将金银花、艾草捣烂后加入烧瓶中,加入蒸馏水,浸泡50分钟后加热回流2.5小时,将提取液于3100rpm离心分离12分钟,弃去沉淀,制得混合液b;
步骤A3,将步骤A1制备的混合液a、步骤A2制备的混合液b加入化料釜中,加入去离子水、表面活性剂、烷基糖苷、正丙醇、抗菌剂于270rpm速率下搅拌至溶解,制得混合液c;
步骤A4,向步骤A3制备的混合液c中加入食品香精,加入柠檬酸调节pH至7.0,制得植物型抗菌清洁剂。
实施例3
一种植物型抗菌清洁剂,包括如下重量份的原料:吴茱萸10份、板蓝根10份、鱼腥草7份、金银花6份、艾草3份、表面活性剂10份、烷基糖苷10份、正丙醇10份、抗菌剂3份、食品香精1份、去离子水50份;
步骤A1,将吴茱萸、板蓝根、鱼腥草捣烂后加入烧瓶中,加入乙醇溶液,浸泡40分钟后加热回流5小时,将提取液于3200rpm离心分离15分钟,弃去沉淀,制得混合液a;
步骤A2,将金银花、艾草捣烂后加入烧瓶中,加入蒸馏水,浸泡60分钟后加热回流3小时,将提取液于3200rpm离心分离15分钟,弃去沉淀,制得混合液b;
步骤A3,将步骤A1制备的混合液a、步骤A2制备的混合液b加入化料釜中,加入去离子水、表面活性剂、烷基糖苷、正丙醇、抗菌剂于300rpm速率下搅拌至溶解,制得混合液c;
步骤A4,向步骤A3制备的混合液c中加入食品香精,加入柠檬酸调节pH至7.5,制得植物型抗菌清洁剂。
其中,步骤A1所述的乙醇溶液的用量为吴茱萸、板蓝根、鱼腥草总质量的5倍,乙醇溶液的体积分数为95%,加热温度为80℃。
其中,步骤A2所述的蒸馏水的用量为金银花、艾草总质量的5倍,加热温度为98℃。
其中,步骤A3所述的表面活性剂为椰油基甜菜碱。
其中,步骤A4所述的食品香精为水蜜桃香精。
其中,所述的抗菌剂由如下步骤制得:
步骤S1,将2,2,5,5-四甲基-4-咪唑烷酮加入烧瓶中,加入丙酮,将烧瓶置于油浴中预热,待2,2,5,5-四甲基-4-咪唑烷酮溶解后,加入碳酸钾,回流50分钟后加入1,3-二溴丙烷,继续加热回流16小时,减压蒸馏除去丙酮后加入乙酸乙酯,再用去离子水洗涤数次,制得中间体1;
步骤S2,向三口烧瓶中加入步骤S1制备的中间体1和三苯基膦,加入苯甲醇,通入氮气,打开磁力搅拌器,控制搅拌速率220rpm,温度120℃,反应20小时,制得抗菌剂。
其中,步骤S1所述的2,2,5,5-四甲基-4-咪唑烷酮、丙酮、碳酸钾、1,3-二溴丙烷、乙酸乙酯的用量比为4.12g:220mL:16.2g:22.3g:2.22g。
其中,骤S2所述的中间体1、三苯基膦、苯甲醇的用量比为5.42g:3.56g:45mL。
一种植物型抗菌清洁剂的生产工艺,包括如下生产步骤:
步骤A1,将吴茱萸、板蓝根、鱼腥草捣烂后加入烧瓶中,加入乙醇溶液,浸泡40分钟后加热回流5小时,将提取液于3200rpm离心分离15分钟,弃去沉淀,制得混合液a;
步骤A2,将金银花、艾草捣烂后加入烧瓶中,加入蒸馏水,浸泡60分钟后加热回流3小时,将提取液于3200rpm离心分离15分钟,弃去沉淀,制得混合液b;
步骤A3,将步骤A1制备的混合液a、步骤A2制备的混合液b加入化料釜中,加入去离子水、表面活性剂、烷基糖苷、正丙醇、抗菌剂于300rpm速率下搅拌至溶解,制得混合液c;
步骤A4,向步骤A3制备的混合液c中加入食品香精,加入柠檬酸调节pH至7.5,制得植物型抗菌清洁剂。
对比例1
市售的植物型抗菌清洁剂。
对实施例1-3和对比例1得到的植物型抗菌清洁剂进行抗菌性能测试(金黄色葡萄球菌、大肠杆菌),具体地,根据日本工业标准JIS Z2801规定的抗菌制品抗菌效果的评价方法,测试数据如表1所示:
表1
由表1可知,说明实施例1-3得到的植物型抗菌清洁剂相较于对比例具有更加优异的抗菌效果。
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 (7)
1.一种植物型抗菌清洁剂,其特征在于,包括如下重量份的原料:吴茱萸8-10份、板蓝根5-10份、鱼腥草5-7份、金银花4-6份、艾草1-3份、表面活性剂8-10份、烷基糖苷5-10份、正丙醇8-10份、抗菌剂2-3份、食品香精0.5-1份、去离子水40-50份;
其中,所述抗菌剂由如下步骤制得:
步骤S1,将2,2,5,5-四甲基-4-咪唑烷酮加入烧瓶中,加入丙酮,将烧瓶置于油浴中预热,待2,2,5,5-四甲基-4-咪唑烷酮溶解后,加入碳酸钾,回流40-50分钟后加入1,3-二溴丙烷,继续加热回流12-16小时,减压蒸馏除去丙酮后加入乙酸乙酯,再用去离子水洗涤数次,制得中间体1;
步骤S2,向三口烧瓶中加入步骤S1制备的中间体1和三苯基膦,加入苯甲醇,通入氮气,打开磁力搅拌器,控制搅拌速率200-220rpm,温度120℃,反应18-20小时,制得抗菌剂。
2.根据权利要求1所述的一种植物型抗菌清洁剂,其特征在于:步骤S1所述的2,2,5,5-四甲基-4-咪唑烷酮、丙酮、碳酸钾、1,3-二溴丙烷、乙酸乙酯的用量比为3.89-4.12g:200-220mL:15.6-16.2g:21.2-22.3g:2.12-2.22g。
3.根据权利要求1所述的一种植物型抗菌清洁剂,其特征在于:步骤S2所述的中间体1、三苯基膦、苯甲醇的用量比为5.31-5.42g:3.45-3.56g:40-45mL。
4.根据权利要求1所述的一种植物型抗菌清洁剂的生产工艺,其特征在于:包括如下生产步骤:
步骤A1,将吴茱萸、板蓝根、鱼腥草捣烂后加入烧瓶中,加入乙醇溶液,浸泡30-40分钟后加热回流4-5小时,将提取液于3000-3200rpm离心分离10-15 分钟,弃去沉淀,制得混合液a;
步骤A2,将金银花、艾草捣烂后加入烧瓶中,加入蒸馏水,浸泡50-60分钟后加热回流2-3小时,将提取液于3000-3200rpm离心分离10-15分钟,弃去沉淀,制得混合液b;
步骤A3,将步骤A1制备的混合液a、步骤A2制备的混合液b加入化料釜中,加入去离子水、表面活性剂、烷基糖苷、正丙醇、抗菌剂于250-300rpm速率下搅拌至溶解,制得混合液c;
步骤A4,向步骤A3制备的混合液c中加入食品香精,加入柠檬酸调节pH至6.8-7.5,制得植物型抗菌清洁剂。
5.根据权利要求4所述的一种植物型抗菌清洁剂的生产工艺,其特征在于:步骤A1所述的乙醇溶液的用量为吴茱萸、板蓝根、鱼腥草总质量的3-5倍,乙醇溶液的体积分数为95%,加热温度为75-80℃。
6.根据权利要求4所述的一种植物型抗菌清洁剂的生产工艺,其特征在于:步骤A2所述的蒸馏水的用量为金银花、艾草总质量的4-5倍,加热温度为95-98℃。
7.根据权利要求4所述的一种植物型抗菌清洁剂的生产工艺,其特征在于:步骤A3所述的表面活性剂为椰油基甜菜碱、椰油基氧化胺中的一种或两种按任意比例混合。
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