CN112012010A - 一种负氧离子墙布的制作方法 - Google Patents
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Abstract
本发明涉及一种负氧离子墙布的制作方法,按重量计,包括以下原料组分:高纯度锗20份、氧化钕3份、氧化钸2份、电气石20份、稀土镱2份、稀土铽3份、导电钛白粉5份、防水乳液25份、935增稠剂2份;制备方法包括步骤一研磨;步骤二制备稀土铽、稀土镱颗粒;步骤三制备混合物;步骤四混合物造粒;步骤五混合物煅烧得一种高浓度负氧离子原浆,再将本原浆均匀喷涂在高档墙布上。本发明的有益效果在于:本发明的负氧离子墙布自身能释放出高浓度负氧离子,通过电荷的中和作用,清除人体内的自由基,促进人体细胞的代谢功能,延缓衰老,增强淋巴循环,促进人体血液循环。
Description
技术领域
本发明属于材料技术领域,具体涉及一种负氧离子墙布的制作方法。
背景技术
生命科学已经证实:疾病和衰老的根本原因就是氧化,防止氧化的物质就是还原剂,对生命科学来说,抗氧化物质就是健康材料。人类不可缺的粮食、肉、糖和食品添加物等酸性物质实际上有时候也是有害健康的氧化物。疲劳过度也是氧化的原因,正离子加速氧化反应,污染空气含有大量的正离子。所以人们感到很不舒服,让人们感到舒服和有利于健康的是负氧离子。
负氧离子对人的生理机能起着重要作用,当负氧离子浓度大于5000个/cm3时,有益于人体健康和长寿,因为它能起到改善睡眠、降低血压、促进新陈代谢、提高免疫力、减轻疲劳、提高工作效率、清新净化空气等很多有益于健康的作用(百度便知)。
锗原子核周围有32个电子,最外侧轨道上的4个电子做不规则运动。一旦温度上升,最外侧轨道上的一个电子就会因受刺激而离轨。而脱离了轨道的电子有助于调整生物的离子平衡,使身体神经电路的异常恢复正常,具有预防和改善身体的不适感及按摩温泉效果等功效。锗还有调整人体不正常电位的功能,在癌细胞电位剧烈上升时,锗元素会夺取癌细胞的电子,使它电位下降,抑制病症的恶化。
锗本身能释放负氧离子,但持续时间不长,并且只有在温度较高(摄氏40以上)时才能释放负氧离子。在配方中加入稀土后,由于稀土材料具有很强的能量,可以激活锗、铈等物质的活性,使其在常温下材料也能持续释放负氧离子,这种材料能释放出高浓度负氧离子,这种高浓度负氧离子,通过中和作用,清除人体内的自由基,促进人体细胞的代谢功能,延缓衰老,增强淋巴循环,促进人体血液循环。
近年来随着生活水平的提高和生活方式的改变,人们在室内生活的时间越来越长,室内空气质量的优劣直接影响到人们的工作和生活。低劣的空气质量会使人注意力分散,工作效率下降,严重时还会使人产生头痛、恶心、疲劳、皮肤红肿等症状,统称为″病态建筑综合症。″人们急切盼望改善日益恶劣的居室、办公环境,提高生存质量。室内装修使用各种涂料、油漆、墙布、胶粘剂、人造板材、大理石地板以及新购买的家具等,都会散发出酚、甲醛、石棉粉尘、放射性物质等,它们可导致人们头疼、失眠、皮炎和过敏等反应,使人体免疫功能下降,因而国际癌症研究所将其列为可疑致癌物质。据不完全统计,我国儿童死于每年有210万因装修污染,肺癌致死率已经高居榜首,这些都与室内空气质量有关,于此我们发明了这种负氧离子墙布的制作方法。
发明内容
本发明提供了一种负氧离子墙布的制作方法,该墙布能释放出高浓度负氧离子,这种高浓度负氧离子,通过中和作用,清除人体内的自由基,促进人体细胞的代谢功能,延缓衰老,增强淋巴循环,促进人体血液循环(百度便知)。
为了实现上述目的,本发明采用如下的技术方案:
一种负氧离子墙布的制作方法,其特征在于:按重量计,包括以下原料组分:高纯度锗20份、氧化钕3份、氧化铈2份、电气石20份、稀土镱2份、稀土铽3份、导电钛白粉5份、防水乳液25份、935增稠剂2份、ID5040分散剂2份、纤维素3份、碱性调节剂5份;
本发明的有益效果在于:1、本发明的高浓度负氧离子产生墙布自身能辐射出高频能量震动波,这种墙布能释放出高浓度负氧离子,这种高浓度负氧离子,通过中和作用,清除人体内的自由基,促进人体细胞的代谢功能,延缓衰老,增强淋巴循环,促进人体血液循环。2、本发明的高浓度负氧离子墙布可释放出负氧离子,每立方厘米可达到2000-60000个,最高可达60000个以上。相当于我们在原始森林里负氧离子的浓度。这种墙布能释放出高浓度负氧离子,这种高浓度负氧离子,通过中和作用,清除人体内的自由基,促进人体细胞的代谢功能,延缓衰老,增强淋巴循环,促进人体血液循环;能够有效激活人体酶系统,恢复细胞正常运动,从而促进人体自身的解毒和排毒功能;可以轻易通过一般营养物质不易通过的血脑屏障,从而进入各种组织的内部尤其是进入大脑中起到抗氧化的作用。本发明的高浓度负氧离子墙布释放的负氧离子能量强、浓度高,每立方厘米的浓度最高可达60000个以上。且持续时间更长。
附图说明:
图1是负氧离子墙布的制作流程图。
具体实施方式:
下面结合具体实施方式对本发明的实质性内容作进一步详细的描述。
具体步骤如下:
P1-备料:分别准备以下材料:高纯度锗20份、氧化钕3份、氧化铈2份、电气石20份、稀土镱2份、稀土铽3份、稀土镝5份、导电钛白粉5份、钕铁硼5份、防水乳液25份、935增稠剂2份、ID5040分散剂2份、纤维素3份、碱性调节剂5份、高级墙布适量、纯净水若干;
P2-制备稀土铽、稀土镱小球:将稀土镱、稀土铽分别置于研磨机研磨,细度粒径不大于300目,然后将稀土镱粉制作成直径3-3.5mm的小球,将稀土铽制作成1.5-2mm的小球,备用;
P3-钕铁硼磨粉:取钕铁硼(N4OSH)5份置入高温纳米研磨机内升温至400℃时恒温24小时后开始研磨至1250目(在380℃以下或者430℃以上钕铁硼处于磁性状态,无法研磨),备用;
P4-制备氧化钕、氧化铈、稀土镝颗粒:取氧化钕3份、氧化铈、稀土镝5份分别粉碎至100目左右,备用;
P5-制备混合物:按设定的重量份将步骤一备用称重量高纯度锗20份、氧化铈2份、电气石20份粉碎至100目左右置于搅拌机以100r/min搅拌15-30分钟,得均匀的混合物,备用;
P6-混合物煅烧:将P5的混合物置于的真空加热炉里煅烧,升温至2950-3000℃后恒温120小时,冷却至2550℃后注入P4的稀土镝颗粒物恒温24小时,冷却至2430℃后注入P4的氧化铈颗粒物恒温24小时,冷却至1930℃后注入P4的氧化钕颗粒重量3份恒温24小时、冷却至1330℃后注入P2的稀土铽小球重量1份恒温24小时,冷却至800℃后注入P2的稀土镱颗粒重量1份和导电钛白粉10份并恒温12小时,冷却至400℃时注入P3的钕铁硼粉并恒温12小时,冷却至20℃后注入水150份,半小时后打开炉盖用50目钢网过滤即得负氧离子原浆粗料;
P7-研磨粗料:将P6所得粗料置于研磨机内研磨至1250目即得到高浓度负氧离子原浆;
P8-回收稀土镱和稀土铽:从P6的剩余物中回收稀土镱和稀土铽:将上述剩余物倒入直径2.5mm的不锈钢筛网中并摇动筛网,筛网内即得到稀土镱小球;再将本步骤的剩余物置入直径1mm的筛网中摇动筛网,筛网内即得到稀土铽小球。
P9-配制助剂:
分别取纯净水10份,将P1的分散剂、增稠剂加入纯净水中,各自搅拌均匀;
P10-乳化原浆:
将P9所得分散剂溶液倒入P7所得原浆中,并用500转/分钟的速度搅拌30分钟后再加入P9所得增稠剂溶液同速搅拌30分钟;
P11-混合:
将P10所得乳化原浆与P1所备乳液混合后用30转/分钟搅拌均匀后再加入P1所备纤维素并用30转/分钟搅拌30分钟,加入纯净水至200份并用30转/分钟搅拌60分钟;
P12-调节PH值:
测试P11所得产品的PH值并逐步添加P1备用的碱性调节剂,使之达到8-9.5之间即得到碱性原浆;
P13-植入墙布:
将P12所得碱性原浆加热至40-45℃时放入P1备用的墙布恒温24小时后,取出并在60-65℃的烘干箱内烘干即得到浓度5000个/cm3以上的负氧离子墙布。
以上对本发明的实施例进行了详细说明,但所述内容仅为本发明的较佳实施例,不能被认为用于限定本发明的实施范围。凡依本发明申请范围所作的均等变化与改进等,均应仍归属于本发明的专利涵盖范围之内。
Claims (2)
1.一种负氧离子墙布的制作方法,其特征在于:按重量计,包括以下原料组分:高纯度锗20份、氧化钕3份、氧化铈2份、电气石20份、稀土镱2份、稀土铽3份、导电钛白粉5份、防水乳液25份、935增稠剂2份、ID5040分散剂2份、纤维素3份、碱性调节剂5份。
2.一种负氧离子墙布的制作方法。其特征在于:包括如下步骤:
P1-备料:分别准备以下材料:高纯度锗20份、氧化钕3份、氧化铈2份、电气石20份、稀土镱2份、稀土铽3份、稀土镝5份、导电钛白粉5份、钕铁硼5份、防水乳液25份、935增稠剂2份、ID5040分散剂2份、纤维素3份、碱性调节剂5份、高级墙布适量、纯净水若干;
P2-制备稀土铽、稀土镱小球:将稀土镱、稀土铽分别置于研磨机研磨,细度粒径不大于300目,然后将稀土镱粉制作成直径3-3.5mm的小球,将稀土铽制作成1.5-2mm的小球,备用;
P3-钕铁硼磨粉:取钕铁硼(N40SH)5份置入高温纳米研磨机内升温至400℃时恒温24小时后开始研磨至1250目,备用;
P4-制备氧化钕、氧化铈、稀土镝颗粒:取氧化钕3份、氧化铈、稀土镝5份分别粉碎至100目左右,备用;
P5-制备混合物:按设定的重量份将步骤一备用称重量高纯度锗20份、氧化铈2份、电气石20份粉碎至100目左右置于搅拌机以100r/min搅拌15-30分钟,得均匀的混合物,备用;
P6-混合物煅烧:将P5的混合物置于的真空加热炉里煅烧,升温至2950-3000℃后恒温120小时,冷却至2550℃后注入P4的稀土镝颗粒物恒温24小时,冷却至2430℃后注入P4的氧化铈颗粒物恒温24小时,冷却至1930℃后注入P4的氧化钕颗粒重量3份恒温24小时、冷却至1330℃后注入P2的稀土铽小球重量1份恒温24小时,冷却至800℃后注入P2的稀土镱颗粒重量1份和导电钛白粉10份并恒温12小时,冷却至400℃时注入P3的钕铁硼粉并恒温12小时,冷却至20℃后注入水150份,半小时后打开炉盖用50目钢网过滤即得负氧离子原浆粗料;
P7-研磨粗料:将P6所得粗料置于研磨机内研磨至1250目即得到高浓度负氧离子原浆;
P8-回收稀土镱和稀土铽:从P6的剩余物中回收稀土镱和稀土铽:将上述剩余物倒入直径2.5mm的不锈钢筛网中并摇动筛网,筛网内即得到稀土镱小球;再将本步骤的剩余物置入直径1mm的筛网中摇动筛网,筛网内即得到稀土铽小球。
P9-配制助剂:
分别取纯净水10份,将P1的分散剂、增稠剂加入纯净水中,各自搅拌均匀;
P10-乳化原浆:
将P9所得分散剂溶液倒入P7所得原浆中,并用500转/分钟的速度搅拌30分钟后再加入P9所得增稠剂溶液同速搅拌30分钟;
P11-混合:
将P10所得乳化原浆与P1所备乳液混合后用30转/分钟搅拌均匀后再加入P1所备纤维素并用30转/分钟搅拌30分钟,加入纯净水至200份并用30 转/分钟搅拌60分钟;
P12-调节PH值:
测试P11所得产品的PH值并逐步添加P1备用的碱性调节剂,使之达到8-9.5之间即得到碱性原浆;
P13-植入墙布:
将P12所得碱性原浆加热至40-45℃时放入P1备用的墙布恒温24小时后,取出并在60-65℃的烘干箱内烘干即得到到浓度5000个/cm3以上的负氧离子墙布。
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