CN109621218A - 一种新型远红外线液体 - Google Patents
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Abstract
本发明公开了一种新型远红外线液体,包括如下步骤:S1、选材:选取适量的电气石原矿,用清水清洗去除杂质;S2、原矿干燥:将清洗后的电气石原矿进行干燥处理,去除电气石原矿表面的水渍;S3、原矿粗碎:将电气石原矿用颚式破碎机粉碎至豆粒状,初步粉碎得到100~300μm粒径的电气石粉体;S4、初步煅烧:在电气石粉体中加入其重量的0.5~1%的偶联剂和0.5~1%的氯化铜并混合均匀。本发明使得食用液体注入远红外线后该食用液体会更特出其味道更柔滑更易吸收,且还能激活人体细胞,非食用液体注入远红外线后侧会令该液体更纯更活跃,通过对超细电气石粉进行优化,可明显降低电气石超微粉体的团聚,提高粉碎效率。
Description
技术领域
本发明涉及保健技术领域,更具体地说,尤其涉及一种新型远红外线液体。
背景技术
太阳光线大致可分为可见光及不可见光。可见光经三棱镜后会折射出紫、蓝、青、绿、黄、橙、红颜色的光线(光谱)。红光外侧的光线,在光谱中波长自0.75至1000微米的一段被称为红外光,又称红外线。红外线属于电磁波的范畴,是一种具有强热作用的电磁波。红外线的波长范围很宽,人们将不同波长范围的红外线分为近红外、中红外和远红外区域,相对应波长的电磁波称为近红外线、中红外线及远红外线。
但是,传统的远红外线使用起来非常不便,不能普遍到广大的人群,给人们的使用造成了困扰,并且一般远红外线只能在高温下作用于人体表面,功效发挥很受影响,而且就算有相关的远红外线液体,其也不具有较高的负离子产生量,并且目前流通市场的液体产品,包括酒,酱油,花生油,水,饮料,香水,香精,柴油,汽油,含液体的美容护肤产品,洗发液,及含液体的医药用品液体是没有含远红外线的,为此,我们提出一种新型远红外线液体。
发明内容
本发明的目的是为了解决现有技术中存在的缺点,而提出的一种新型远红外线液体。
为实现上述目的,本发明提供如下技术方案:一种新型远红外线液体,包括如下步骤:
S1、选材:选取适量的电气石原矿,用清水清洗去除杂质;
S2、原矿干燥:将清洗后的电气石原矿进行干燥处理,去除电气石原矿表面的水渍;
S3、原矿粗碎:将电气石原矿用颚式破碎机粉碎至豆粒状,初步粉碎得到100~300μm粒径的电气石粉体;
S4、初步煅烧:在电气石粉体中加入其重量的0.5~1%的偶联剂和0.5~1%的氯化铜并混合均匀,在400~1000℃的温度下煅烧5~9h,然后再将电气石粉体冷却至-5~-20℃;
S5、二次煅烧:将冷却后的电气石粉体在800~1000℃的温度下煅烧10~50min;
S6、微波加热处理:将S5中煅烧后的电气石粉体中加入其重量的0.2~0.7%的六甲基磷酰三胺、0.1~0.3%的二甲基亚砜、0.4~0.8%的强酸性苯乙烯系阳离子交换树脂和1~3%的硅氟酸,然后在1000瓦、2450MHz的微波马弗炉中,做干式或者湿式微波热处理,温度为100~150℃之间,处理时间为10~50h;
S7、球磨:将S6中的电气石粉体放置于球磨机中,加入0.05~0.1%助磨剂进行湿法球磨,得到1000~3000nm的电气石料浆。
S8、喷雾干燥:将所得到的电气石料浆分散成小液滴喷入热风中,含水率≤1‰,得到超细电气石粉。
S9、溶解:先将清水进行过滤净化,去除清水中的杂质,再将清水置于搅拌容器内,然后再倒入S8中所得的超细电气石粉,进行搅拌,处理时间为30min~60min.
S10、静置:将S9中搅拌后的液体在常温下静置1h~2h,然后用筛网进行过滤,筛选出残留的超细电气石粉,即可得远红外线液体。
优选的,在步骤S4中偶联剂为乙基三乙氧基硅烷、钛酸酯、镁类偶联剂中的至少一种。
优选的,在步骤S7中助磨剂为等量的有机硅改性聚丙稀酸酯和硅酸钠。
优选的,在步骤S10中筛网的孔径大小约为1000~3000nm。
本发明的技术效果和优点:
1、本发明通过将超细电气石粉与清水进行混合,及能使液体中具有较高的负离子产生量,远红外线液体在温度10度左右就可发射远红外线,刺激机体组织复活,促进酵素生成,皮肤在吸收了远红外线液体后直达皮下30-50毫米,针对皮下细胞组织发挥功效,使皮肤吸收养份的能量增强,及时排放皮肤垃圾与毒素,真正达到了光泽紧致,细腻有弹性,同时还有温通经络的效果。
2、本发明通过将液体注入远红外线,食用液体注入远红外线后该食用液体会更特出其味道更柔滑更易吸收,且还能激活人体细胞,非食用液体注入远红外线后侧会令该液体更纯更活跃。
3、本发明通过对超细电气石粉进行优化,可明显降低电气石超微粉体的团聚,提高粉碎效率,使粉体粒径可达到100~300nm,使其负离子发生能力明显提高,负离子的浓度达到3500-4000个/cm3,从而可进一步提高远红外线液体的负离子产生量。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合具体实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
实施例1
一种新型远红外线液体,包括如下步骤:
S1、选材:选取适量的电气石原矿,用清水清洗去除杂质;
S2、原矿干燥:将清洗后的电气石原矿进行干燥处理,去除电气石原矿表面的水渍;
S3、原矿粗碎:将电气石原矿用颚式破碎机粉碎至豆粒状,初步粉碎得到100~300μm粒径的电气石粉体;
S4、初步煅烧:在电气石粉体中加入其重量的0.5~1%的偶联剂和0.5~1%的氯化铜并混合均匀,在400~1000℃的温度下煅烧5~9h,然后再将电气石粉体冷却至-5~-20℃;
S5、二次煅烧:将冷却后的电气石粉体在800~1000℃的温度下煅烧10~50min;
S6、微波加热处理:将S5中煅烧后的电气石粉体中加入其重量的0.2~0.7%的六甲基磷酰三胺、0.1~0.3%的二甲基亚砜、0.4~0.8%的强酸性苯乙烯系阳离子交换树脂和1~3%的硅氟酸,然后在1000瓦、2450MHz的微波马弗炉中,做干式或者湿式微波热处理,温度为100~150℃之间,处理时间为10~50h;
S7、球磨:将S6中的电气石粉体放置于球磨机中,加入0.05~0.1%助磨剂进行湿法球磨,得到1000~3000nm的电气石料浆。
S8、喷雾干燥:将所得到的电气石料浆分散成小液滴喷入热风中,含水率≤1‰,得到超细电气石粉。
S9、溶解:先将清水进行过滤净化,去除清水中的杂质,再将清水置于搅拌容器内,然后再倒入S8中所得的超细电气石粉,进行搅拌,处理时间为30min~60min.
S10、静置:将S9中搅拌后的液体在常温下静置1h~2h,然后用筛网进行过滤,筛选出残留的超细电气石粉,即可得远红外线液体。
实施例2
液体注入远红外线方法:1.将液体过滤带有远红外线的过滤器,2.将液体接触带有远红外线的物体,包括木炭,竹炭,备长炭,矿石,金属,布类,皮类等物质。本身液体包括酒,酱油,花生油,水,饮料,香水,香精,柴油,汽油,含液体的美容护肤产品,洗发液,及含液体的医药用品液体是没有含远红外线的,食用液体注入远红外线后该食用液体会更特出其味道更柔滑更易吸收,且还能激活人体细胞,非食用液体注入远红外线后侧会令该液体更纯更活跃。
综上所述:本发明提供的一种新型远红外线液体,凡是利用实施例1和实施例2生产出来的液体产品均属保护范围,通过对超细电气石粉进行优化,可明显降低电气石超微粉体的团聚,提高粉碎效率,使粉体粒径可达到100~300nm,使其负离子发生能力明显提高,负离子的浓度达到3500-4000个/cm3,从而可进一步提高远红外线液体的负离子产生量。
最后应说明的是:以上所述仅为本发明的优选实施例而已,并不用于限制本发明,尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
Claims (4)
1.一种新型远红外线液体,其特征在于:包括如下步骤:
S1、选材:选取适量的电气石原矿,用清水清洗去除杂质;
S2、原矿干燥:将清洗后的电气石原矿进行干燥处理,去除电气石原矿表面的水渍;
S3、原矿粗碎:将电气石原矿用颚式破碎机粉碎至豆粒状,初步粉碎得到100~300μm粒径的电气石粉体;
S4、初步煅烧:在电气石粉体中加入其重量的0.5~1%的偶联剂和0.5~1%的氯化铜并混合均匀,在400~1000℃的温度下煅烧5~9h,然后再将电气石粉体冷却至-5~-20℃;
S5、二次煅烧:将冷却后的电气石粉体在800~1000℃的温度下煅烧10~50min;
S6、微波加热处理:将S5中煅烧后的电气石粉体中加入其重量的0.2~0.7%的六甲基磷酰三胺、0.1~0.3%的二甲基亚砜、0.4~0.8%的强酸性苯乙烯系阳离子交换树脂和1~3%的硅氟酸,然后在1000瓦、2450MHz的微波马弗炉中,做干式或者湿式微波热处理,温度为100~150℃之间,处理时间为10~50h;
S7、球磨:将S6中的电气石粉体放置于球磨机中,加入0.05~0.1%助磨剂进行湿法球磨,得到1000~3000nm的电气石料浆。
S8、喷雾干燥:将所得到的电气石料浆分散成小液滴喷入热风中,含水率≤1‰,得到超细电气石粉。
S9、溶解:先将清水进行过滤净化,去除清水中的杂质,再将清水置于搅拌容器内,然后再倒入S8中所得的超细电气石粉,进行搅拌,处理时间为30min~60min.
S10、静置:将S9中搅拌后的液体在常温下静置1h~2h,然后用筛网进行过滤,筛选出残留的超细电气石粉,即可得远红外线液体。
2.根据权利要求1所述的一种新型远红外线液体,其特征在于:在步骤S4中偶联剂为乙基三乙氧基硅烷、钛酸酯、镁类偶联剂中的至少一种。
3.根据权利要求1所述的一种新型远红外线液体,其特征在于:在步骤S7中助磨剂为等量的有机硅改性聚丙稀酸酯和硅酸钠。
4.根据权利要求1所述的一种新型远红外线液体,其特征在于:在步骤S10中筛网的孔径大小约为1000~3000nm。
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