CN108244445A - 一种浓缩柠檬矿物滴及制备方法 - Google Patents
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- A23L33/00—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof
- A23L33/10—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof using additives
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- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
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- A23L33/00—Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof
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- A23L33/16—Inorganic salts, minerals or trace elements
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- A23L—FOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
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- A—HUMAN NECESSITIES
- A23—FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
- A23L—FOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
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Abstract
本发明公开了一种矿物滴及制备方法,特别涉及一种浓缩柠檬矿物滴及制备方法,所述浓缩柠檬矿物滴按重量计,包括以下组分:纳米硒0.02‑0.1份;食盐0.5‑1.5份;牡蛎粉10‑25份;麦饭石20‑30份;珍珠粉15‑25份;蛋白石5‑15份;蛭石70‑90份;盐卤结晶粉体0.2‑0.8份;柠檬酸10‑25份,其余为水,水与其他组分总和比为15:1‑18:1。本发明的矿物滴本身去除重金属,从原料本身防止了的重金属污染,绿色健康安全有效;本发明通过柠檬酸大大提高饮用水的活性,使得微量矿物元素能被人体充分吸收,达到适量、均衡地补充人体所需矿物质和微量元素的目的。
Description
技术领域
本发明涉及一种浓缩矿物滴及制备方法,特别是涉及一种浓缩柠檬矿物滴及制备方法。
背景技术
随着现代化工业的发展,同时也带来了生态环境的严重破坏,水源的污染也越来越严重,为确保饮用水的安全,饮用纯净水应运而生。
目前,市场上的饮用纯净水主要采用反渗透技术和蒸馏方法生产,这些方法确实能够达到提高饮用水水质的目的,但同时也带来了一系列问题:由于纯净水过于纯净,水中缺乏人体所必须的矿物质和微量元素,长期饮用,将使人体内部的矿物质和微量元素失去平衡,从而造成一系列的副面影响。为解决这一问题,有些纯净水厂开始在纯净水中添加人工合成的无机盐如钾盐、钠盐、钙盐、镁盐等,制成“矿物质水”,由于水中无机盐的种类和数量均很少,而且水的“活性”未能得到提高,因此这些“矿物质”不能被人体充分吸收,也未能达到适量、均衡地补充人体所需矿物质和微量元素的目的。
发明内容
有鉴于现有技术的上述缺陷,本发明所要解决的技术问题是提供一种浓缩柠檬矿物滴及制备方法。本发明富含丰富的矿物微量元素,可应用于饮用水中。
为实现上述目的,本发明提供了提供一种浓缩柠檬矿物滴及制备方法,所述浓缩柠檬矿物滴按重量计,包括以下组分:纳米硒0.02-0.1份;食盐0.5-1.5份;牡蛎粉10-25份;麦饭石20-30份;珍珠粉15-25份;蛋白石5-15份;蛭石70-90份;盐卤结晶粉体0.2-0.8份;柠檬酸10-25份,其余为水,水与其他组分总和比为15:1-18:1。
上述一种浓缩柠檬矿物滴的制备方法,包括以下步骤:
步骤一、按照重量计将纳米硒0.02-0.1份、食盐0.5-1.5份、牡蛎粉10-25份、麦饭石20-30份、珍珠粉15-25份、蛋白石5-15份、蛭石70-90份、盐卤结晶粉体0.2-0.8份混合并粉碎为1.5-2.5mm,通过碳酸氢钠溶液清洗并水洗除碱过滤得到A混合物;
步骤二、将A混合物在500-600℃范围内煅烧3小时,将煅烧后的粉料粉碎至直径小于0.1mm得到B混合物;
步骤三、在B混合物中加入柠檬酸5-10份以及纯净水,保持温度80-100℃用频率为1-4MHz强度为1-10M/cm2的超声波照射10小时得到C混合物;
步骤四、将C混合物导入离心管以11000r/min的转速离心10min,过滤掉液体得到D混合物;
步骤五、将D混合物中加入柠檬酸5-15份以及纯净水加热至90℃至水与其他组分总和比为15:1-18:1后停止加热自然冷却得到E混合物;
步骤六、将E混合物经1-5μm的微孔过滤器过滤、紫外线杀菌得到的液体即为最终产物;
本发明可解吸原料中的Cd、Pb、Cu、Zn等重金属,经浓缩柠檬、超声波照以及离心过程去除矿物原料内过量的重金属,使其含量大幅降低,从源头消除重金属污染。
本发明的一种浓缩柠檬矿物滴食用后,可起到一定的保健作用,其可以分解乳酸,消除疲劳,防止动脉硬化,增加血液中的有益胆固醇,减少有害胆固醇,降低血脂,消除动脉硬化病因之一的乳酸,改善血液pH,改善肾功能,解除精神压力,促进新陈代谢,恢复细胞活力,解除疲劳,使机体保持青春活力,并可防止老年痴呆症的发生,促进副肾皮质激素的分泌而有利于防止糖尿病,营养也不致过剩而转化成脂肪从而有助于防止肥胖与脂肪肝。
本发明的有益效果是:
本发明的矿物滴本身去除重金属,从原料本身防止了的重金属污染,绿色健康安全有效;
本发明具有保健作用,其可以分解乳酸,消除动脉硬化病因之一的乳酸,消除疲劳,防止动脉硬化,增加血液中的有益胆固醇,减少有害胆固醇,降低血脂,改善血液pH,改善肾功能,解除精神压力,促进新陈代谢,恢复细胞活力,解除疲劳。
本发明通过柠檬酸大大提高饮用水的活性,使得微量矿物元素能被人体充分吸收,达到适量、均衡地补充人体所需矿物质和微量元素的目的。
具体实施方式
下面结合实施例对本发明作进一步说明:
实施例1
所述浓缩柠檬矿物滴按重量计,包括以下组分:纳米硒0.02份;食盐0.5份;牡蛎粉10份;麦饭石20份;珍珠粉15份;蛋白石5份;蛭石70份;盐卤结晶粉体0.2份;柠檬酸10份,其余为水,水与其他组分总和比为15:1-18:1。
上述一种浓缩柠檬矿物滴的制备方法,包括以下步骤:
步骤一、按照重量计将纳米硒0.02份、食盐0.5份、牡蛎粉10份、麦饭石20份、珍珠粉15份、蛋白石5份、蛭石70份、盐卤结晶粉体0.2份混合并粉碎为1.5-2.5mm,通过碳酸氢钠溶液清洗并水洗除碱过滤得到A混合物;
步骤二、将A混合物在500-600℃范围内煅烧3小时,将煅烧后的粉料粉碎至直径小于0.1mm得到B混合物;
步骤三、在B混合物中加入柠檬酸5份以及纯净水,保持温度80-100℃用频率为1-4MHz强度为1-10M/cm2的超声波照射10小时得到C混合物;
步骤四、将C混合物导入离心管以11000r/min的转速离心10min,过滤掉液体得到D混合物;
步骤五、将D混合物中加入柠檬酸5份以及纯净水加热至90℃至水与其他组分总和比为15:1-18:1后停止加热自然冷却得到E混合物;
步骤六、将E混合物经1-5μm的微孔过滤器过滤、紫外线杀菌得到的液体即为最终产物;
其中矿物微量元素含量如表1所示;
实施例2
所述浓缩柠檬矿物滴按重量计,包括以下组分:纳米硒0.05份;食盐1.0份;牡蛎粉18份;麦饭石25份;珍珠粉20份;蛋白石10份;蛭石80份;盐卤结晶粉体0.5份;柠檬酸15份,其余为水,水与其他组分总和比为15:1-18:1。
上述一种浓缩柠檬矿物滴的制备方法,包括以下步骤:
步骤一、按照重量计将纳米硒0.05份、食盐1.0份、牡蛎粉18份、麦饭石25份、珍珠粉20份、蛋白石10份、蛭石80份、盐卤结晶粉体0.5份混合并粉碎为1.5-2.5mm,通过碳酸氢钠溶液清洗并水洗除碱过滤得到A混合物;
步骤二、将A混合物在500-600℃范围内煅烧3小时,将煅烧后的粉料粉碎至直径小于0.1mm得到B混合物;
步骤三、在B混合物中加入柠檬酸7份以及纯净水,保持温度80-100℃用频率为1-4MHz强度为1-10M/cm2的超声波照射10小时得到C混合物;
步骤四、将C混合物导入离心管以11000r/min的转速离心10min,过滤掉液体得到D混合物;
步骤五、将D混合物中加入柠檬酸8份以及纯净水加热至90℃至水与其他组分总和比为15:1-18:1后停止加热自然冷却得到E混合物;
步骤六、将E混合物经1-5μm的微孔过滤器过滤、紫外线杀菌得到的液体即为最终产物;
其中矿物微量元素含量如表2所示;
实施例3
所述浓缩柠檬矿物滴按重量计,包括以下组分:纳米硒0.1份;食盐1.5份;牡蛎粉25份;麦饭石30份;珍珠粉25份;蛋白石15份;蛭石90份;盐卤结晶粉体0.8份;柠檬酸25份,其余为水,水与其他组分总和比为15:1-18:1。
上述一种浓缩柠檬矿物滴的制备方法,包括以下步骤:
步骤一、按照重量计将纳米硒0.1份、食盐1.5份、牡蛎粉25份、麦饭石30份、珍珠粉25份、蛋白石15份、蛭石90份、盐卤结晶粉体0.8份混合并粉碎为1.5-2.5mm,通过碳酸氢钠溶液清洗并水洗除碱过滤得到A混合物;
步骤二、将A混合物在500-600℃范围内煅烧3小时,将煅烧后的粉料粉碎至直径小于0.1mm得到B混合物;
步骤三、在B混合物中加入柠檬酸10份以及纯净水,保持温度80-100℃用频率为1-4MHz强度为1-10M/cm2的超声波照射10小时得到C混合物;
步骤四、将C混合物导入离心管以11000r/min的转速离心10min,过滤掉液体得到D混合物;
步骤五、将D混合物中加入柠檬酸15份以及纯净水加热至90℃至水与其他组分总和比为15:1-18:1后停止加热自然冷却得到E混合物;
步骤六、将E混合物经1-5μm的微孔过滤器过滤、紫外线杀菌得到的液体即为最终产物;
其中矿物微量元素含量如表3所示;
表1实施例1中浓缩柠檬矿物滴矿物质与微量元素含量表
项目 | 含量mg/100mL | 项目 | 含量mg/100mL |
钙 | 36-41 | 铁 | 560-720 |
锌 | 3.5-4.0 | 锰 | 9-18 |
钾 | 9-16 | 硅 | 2.0-2.5 |
镁 | 560-690 | 硒 | 0.07-0.08 |
钠 | 7.3-8.2 | 锗 | 0.21-0.28 |
磷 | 60-74 | 钴 | 0.52-0.63 |
铜 | 0.40-0.50 | 镍 | 0.17-0.20 |
钼 | 0.10-0.12 | 锂 | 0.54-0.62 |
钒 | 4.9-5.2 | 钨 | 1.2-1.6 |
钡 | 0.07-0.09 | 钛 | 62-71 |
表2实施例2中浓缩柠檬矿物滴矿物质与微量元素含量表
表3实施例3中浓缩柠檬矿物滴矿物质与微量元素含量表
项目 | 含量mg/100mL | 项目 | 含量mg/100mL |
钙 | 58-63 | 铁 | 800-886 |
锌 | 4.6-5.2 | 锰 | 22-25 |
钾 | 22-27 | 硅 | 3.2-3.7 |
镁 | 800-920 | 硒 | 0.11-0.12 |
钠 | 9.0-10.1 | 锗 | 0.35-0.39 |
磷 | 95-102 | 钴 | 0.78-0.82 |
铜 | 0.58-0.63 | 镍 | 0.26-0.31 |
钼 | 0.13-0.14 | 锂 | 0.72-0.75 |
钒 | 6.6-6.9 | 钨 | 1.7-1.9 |
钡 | 0.12-0.14 | 钛 | 80-87 |
对于原材料的重金属析出方面而言,取原材料粉碎,过20目筛,测定Cd、Cu、Pb、Zn重金属形态。
将原材料分为3组,分别为原材料1组、原材料2组、原材料3组,每组100g;
原材料1组的组分按照实施例1中配比;
原材料2组的组分按照实施例2中配比;
原材料3组的组分按照实施例3中配比;
原材料1组、原材料2组、原材料3组按照制备方法的步骤一到步骤四处理后测定Cd、Cu、Pb、Zn重金属形态;
表4原材料中重金属形态分配对照表
原材料中Cd,Pb,Cu,Zn的解吸量随着淋洗时间的延长而不断增加,Cd,Pb,Cu,Zn的解吸速率随解吸时间延长而不断降低,由表4可知,本发明去除的重金属主要以酸提取态存在,经处理后,不稳定态重金属所占比例均有所降低,降低了原材料中重金属的生物有效性。
以上详细描述了本发明的较佳具体实施例。应当理解,本领域的普通技术人员无需创造性劳动就可以根据本发明的构思作出诸多修改和变化。因此,凡本技术领域中技术人员依本发明的构思在现有技术的基础上通过逻辑分析、推理或者有限的实验可以得到的技术方案,皆应在由权利要求书所确定的保护范围内。
Claims (2)
1.一种浓缩柠檬矿物滴,其特征在于:所述浓缩柠檬矿物滴按重量计,包括以下组分:纳米硒0.02-0.1份;食盐0.5-1.5份;牡蛎粉10-25份;麦饭石20-30份;珍珠粉15-25份;蛋白石5-15份;蛭石70-90份;盐卤结晶粉体0.2-0.8份;柠檬酸10-25份,其余为水,水与其他组分总和比为15:1-18:1。
2.基于权利要求1所述的一种浓缩柠檬矿物滴,其特征在于:制备方法包括以下步骤:
步骤一、按照重量计将纳米硒0.02-0.1份、食盐0.5-1.5份、牡蛎粉10-25份、麦饭石20-30份、珍珠粉15-25份、蛋白石5-15份、蛭石70-90份、盐卤结晶粉体0.2-0.8份混合并粉碎为1.5-2.5mm,通过碳酸氢钠溶液清洗并水洗除碱过滤得到A混合物;
步骤二、将A混合物在500-600℃范围内煅烧3小时,将煅烧后的粉料粉碎至直径小于0.1mm得到B混合物;
步骤三、在B混合物中加入柠檬酸5-10份以及纯净水,保持温度80-100℃用频率为1-4MHz强度为1-10M/cm2的超声波照射10小时得到C混合物;
步骤四、将C混合物导入离心管以11000r/min的转速离心10min,过滤掉液体得到D混合物;
步骤五、将D混合物中加入柠檬酸5-15份以及纯净水加热至90℃至水与其他组分总和比为15:1-18:1后停止加热自然冷却得到E混合物;
步骤六、将E混合物经1-5μm的微孔过滤器过滤、紫外线杀菌得到的液体即为最终产物。
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