CN112602723A - 一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉及制备方法 - Google Patents

一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉及制备方法 Download PDF

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CN112602723A
CN112602723A CN202011545114.6A CN202011545114A CN112602723A CN 112602723 A CN112602723 A CN 112602723A CN 202011545114 A CN202011545114 A CN 202011545114A CN 112602723 A CN112602723 A CN 112602723A
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livestock
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袁延定
李秋艳
李树德
李瑞英
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Henan Jiutian Biotechnology Co ltd
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Abstract

本发明提供了一种含T‑ZnOw及纳米复合无机物的畜牧消毒干粉,由以下质量百分比组份构成:纳米银1.1%—3.4%,以银离子计,硝酸银预混剂8%—13%、纳米T‑ZnOw 15%—31.3%,蒙脱石23%—45.3%,碳酸氢钠1.3%—3.5%,葡萄糖1.1%—3.2%,氯化钠1.9%—2.2%,复合抗生素0—2.8%,余量为聚丙烯系高吸水树脂。其制备方法包括初步混合,溶液配制及二次混合调配等三个步骤。本发明一方面较传统的消毒粉在消毒能力上得到了极大的提高,并有效的拓展了对细菌、病毒等有害微生物杀灭及抑制能力的适应范围;另一方面在使用中,对牲畜体表创口具有杀菌消炎能力,可有效的提高牲畜体表表面健康,并防止牲畜见皮肤疾病交叉感染。

Description

一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉及制备方法
技术领域
本发明涉及一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉及制备方法,属养殖及人工繁殖技术领域。
背景技术
在畜牧消毒养殖工作中,消毒干粉时进行牲畜养殖场地、工具及牲畜身体表面进行杀菌净化作业,以达到降低牲畜发生疾病风险,在消毒干粉实际的使用中,当前所使用的干粉往往是基于氧化钙、氧化锌等氧化物为基础的杀菌干粉,同时也是使用诸如三氯异氰尿酸类药剂的杀菌干粉,虽然可以一定程度满足使用的需要,但一方面存在杀菌抑菌能力相对较差,且使用范围也相对较差,往往需要使用多种不同类型的杀菌粉进行杀菌作业,且在杀菌过程中也无法对牲畜生活环境进行有效的治理,因此导致消毒干粉的有效性相对较短,进一步增加了消毒作业成本,从而严重影响了杀菌粉的使用灵活性、便捷性,同时也造成了杀菌粉的使用效果较差且使用成本也相对较高;另一方面当前所使用的杀菌干粉中,当以三氯异氰尿酸类药剂等为主料时,易产生刺激性气味而造成空气环境污染,同时也易对牲畜圈舍等设施及牲畜体表造成腐蚀,因此使用的毒副作用相对较高,且无法对牲畜提高创口进行辅助清洗剂治疗。
因此,针对这一问题,迫切需要开发一种全新的畜牧消毒干粉,以满足实际养殖工作的需要。
发明内容
针对现有技术上存在的不足,本发明提供一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉及制备方法,以满足实际使用的需要。
为了达到上述目的,本发明提供如下技术方案:
一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉,由以下质量百分比组份构成:纳米银1.1%—3.4%,以银离子计,硝酸银预混剂8%—13%、纳米T-ZnOw 15%—31.3%,蒙脱石23%—45.3%,碳酸氢钠1.3%—3.5%,过氧化钙 0—4.1%,无水硫酸钠0—2.5%,三氯异氰尿酸0 —2.2%,葡萄糖1.1%—3.2%,氯化钠1.9%—2.2%,复合抗生素0—2.8%,余量为聚丙烯系高吸水树脂。
进一步的,所述的纳米T-ZnOw为稀土改性T-ZnOw消毒剂。
进一步的,所述的复合抗生素为3000-5000单位青链霉素、庆大霉素中的任意一种或两种以任意比例混合。
进一步的,所述的蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸及聚丙烯系高吸水树脂均为100—800目粉末结构。
进一步的,所述的硝酸银预混剂浓度为0.5—3.5wt%。
一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法,包括以下步骤:
S1,初步混合,首先将蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸进行混合并搅拌均匀,然后将混合物一同添加到研磨设备中,并在25℃—75℃恒温环境下进行研磨,得到粒径为100—800目粉末混合物;
S2,溶液配制,将硝酸银预混剂调温至35℃—45℃,然后将纳米银、纳米T-ZnOw、葡萄糖一同添加到硝酸银预混剂中,并超声波震荡均质处理10—30分钟,然后减压浓缩至60%—75%,然后以430—690米/秒速度进行超声波喷雾干燥,并对干燥后的固体物料粉碎从而至粒径不大于0.01—0.1毫米的固体颗粒;
S3,二次混合调配,将S1步骤得到的粉末混合物、S2步骤得到的固体颗粒、复合抗生素及聚丙烯系高吸水树脂添加到混合设备中,通过超声波振动混合,即可得到成品畜牧消毒干粉。
进一步的,所述的S2步骤中,减压浓缩时的温度为80℃—115℃,气压为0.01—0.08MPa。
进一步的,所述的S3步骤中,超声波振动混合时的振荡频率为40KHz—60KHz。
进一步的,所述的S2步骤中,成品畜牧消毒干粉含水量不大于1%。
本发明生产制备工艺简单,生产制备成本低,可有效实现对器具及牲畜体表进行杀菌作业使用的需要,同时一方面较传统的消毒粉在消毒能力上得到了极大的提高,并有效的拓展了对细菌、病毒等有害微生物杀灭及抑制能力的适应范围;另一方面在使用中,对牲畜体表创口具有杀菌消炎能力,可有效的提高牲畜体表表面健康,并防止牲畜见皮肤疾病交叉感染。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明制备方法流程图。
具体实施方式
下面将结合本发明的附图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他实施例,都属于本发明保护的范围。
实施例1
一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉,由以下质量百分比组份构成:纳米银1.1%,以银离子计,硝酸银预混剂8%、纳米T-ZnOw 15%,蒙脱石23%,碳酸氢钠1.3%,葡萄糖1.1%,氯化钠1.9%,余量为聚丙烯系高吸水树脂。
本实施例中,所述的纳米T-ZnOw为稀土改性T-ZnOw消毒剂。
同时,所述的复合抗生素为3000单位青链霉素。
此外,所述的蒙脱石、碳酸氢钠及聚丙烯系高吸水树脂均为100目粉末结构。
值得注意的,所述的硝酸银预混剂浓度为0.5wt%。
如图1所示,一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法,包括以下步骤:
S1,初步混合,首先将蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸进行混合并搅拌均匀,然后将混合物一同添加到研磨设备中,并在25℃恒温环境下进行研磨,得到粒径为100目粉末混合物;
S2,溶液配制,将硝酸银预混剂调温至35℃,然后将纳米银、纳米T-ZnOw、葡萄糖一同添加到硝酸银预混剂中,并超声波震荡均质处理10分钟,然后减压浓缩至60%,然后以430—690米/秒速度进行超声波喷雾干燥,并对干燥后的固体物料粉碎从而至粒径不大于0.01毫米的固体颗粒;
S3,二次混合调配,将S1步骤得到的粉末混合物、S2步骤得到的固体颗粒、复合抗生素及聚丙烯系高吸水树脂添加到混合设备中,通过超声波振动混合,即可得到成品畜牧消毒干粉。
本实施例中,所述的S2步骤中,减压浓缩时的温度为80℃,气压为0.01MPa。
本实施例中,所述的S3步骤中,超声波振动混合时的振荡频率为40KHz。
本实施例中,所述的S3步骤中,成品畜牧消毒干粉含水量不大于1%。
实施例2
一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉,由以下质量百分比组份构成:纳米银3.4%,以银离子计,硝酸银预混剂13%、纳米T-ZnOw 31.3%,蒙脱石45.3%,碳酸氢钠3.5%,过氧化钙4.1%,无水硫酸钠2.5%,三氯异氰尿酸2.2%,葡萄糖3.2%,氯化钠2.2%,复合抗生素2.8%,余量为聚丙烯系高吸水树脂。
本实施例中,所述的纳米T-ZnOw为稀土改性T-ZnOw消毒剂。
值得注意的,所述的复合抗生素为5000单位青链霉素、庆大霉素1:1比例混合。
同时,所述的蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸及聚丙烯系高吸水树脂均为800目粉末结构。
进一步优化的,所述的硝酸银预混剂浓度为3.5wt%。
如图1所示,一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法,包括以下步骤:
S1,初步混合,首先将蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸进行混合并搅拌均匀,然后将混合物一同添加到研磨设备中,并在75℃恒温环境下进行研磨,得到粒径为800目粉末混合物;
S2,溶液配制,将硝酸银预混剂调温至45℃,然后将纳米银、纳米T-ZnOw、葡萄糖一同添加到硝酸银预混剂中,并超声波震荡均质处理30分钟,然后减压浓缩至75%,然后以430—690米/秒速度进行超声波喷雾干燥,并对干燥后的固体物料粉碎从而至粒径不大于0.1毫米的固体颗粒;
S3,二次混合调配,将S1步骤得到的粉末混合物、S2步骤得到的固体颗粒、复合抗生素及聚丙烯系高吸水树脂添加到混合设备中,通过超声波振动混合,即可得到成品畜牧消毒干粉。
其中,所述的S2步骤中,减压浓缩时的温度为115℃,气压为0.08MPa。
本实施例中,所述的S3步骤中,超声波振动混合时的振荡频率为60KHz,且成品畜牧消毒干粉含水量不大于1%。
实施例3
一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉,由以下质量百分比组份构成:纳米银2.4%,以银离子计,硝酸银预混剂10%、纳米T-ZnOw 21%,蒙脱石33%,碳酸氢钠1.8%,过氧化钙 1.1%,无水硫酸钠2.0%,三氯异氰尿酸1.2%,葡萄糖1.5%,氯化钠2.0%,复合抗生素1.8%,余量为聚丙烯系高吸水树脂。
本实施例中,所述的纳米T-ZnOw为稀土改性T-ZnOw消毒剂。
同时,所述的复合抗生素为4000单位庆大霉素。
此外,所述的蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸及聚丙烯系高吸水树脂均为300目粉末结构。
需要特别说明的,所述的硝酸银预混剂浓度为1.5wt%。
如图1所示,一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法,包括以下步骤:
S1,初步混合,首先将蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸进行混合并搅拌均匀,然后将混合物一同添加到研磨设备中,并在35℃恒温环境下进行研磨,得到粒径为300目粉末混合物;
S2,溶液配制,将硝酸银预混剂调温至38℃,然后将纳米银、纳米T-ZnOw、葡萄糖一同添加到硝酸银预混剂中,并超声波震荡均质处理15分钟,然后减压浓缩至71%,然后以430—690米/秒速度进行超声波喷雾干燥,并对干燥后的固体物料粉碎从而至粒径不大于0.05毫米的固体颗粒;
S3,二次混合调配,将S1步骤得到的粉末混合物、S2步骤得到的固体颗粒、复合抗生素及聚丙烯系高吸水树脂添加到混合设备中,通过超声波振动混合,即可得到成品畜牧消毒干粉。
同时,所述的S2步骤中,减压浓缩时的温度为95℃,气压为0.05MPa。
本实施例中,所述的S3步骤中,超声波振动混合时的振荡频率为50KHz。
此外,所述的S2步骤中,成品畜牧消毒干粉含水量不大于1%。
实施例4
一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉,由以下质量百分比组份构成:纳米银1.9%,以银离子计,硝酸银预混剂11.5%、纳米T-ZnOw 25%,蒙脱石40.3%,碳酸氢钠2.1%,过氧化钙 2.5%,无水硫酸钠1.5%,三氯异氰尿酸 1.4%,葡萄糖2.2%,氯化钠2.1%,复合抗生素2.1%,余量为聚丙烯系高吸水树脂。
本实施例中,所述的纳米T-ZnOw为稀土改性T-ZnOw消毒剂。
其中,所述的复合抗生素为3500单位青链霉素、庆大霉素以1:5比例混合。
进一步的,所述的蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸及聚丙烯系高吸水树脂均为600目粉末结构。
进一步的,所述的硝酸银预混剂浓度为2.8wt%。
如图1所示,一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法,包括以下步骤:
S1,初步混合,首先将蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸进行混合并搅拌均匀,然后将混合物一同添加到研磨设备中,并在48℃恒温环境下进行研磨,得到粒径为600目粉末混合物;
S2,溶液配制,将硝酸银预混剂调温至41℃,然后将纳米银、纳米T-ZnOw、葡萄糖一同添加到硝酸银预混剂中,并超声波震荡均质处理25分钟,然后减压浓缩至73%,然后以430—690米/秒速度进行超声波喷雾干燥,并对干燥后的固体物料粉碎从而至粒径不大于0.04毫米的固体颗粒;
S3,二次混合调配,将S1步骤得到的粉末混合物、S2步骤得到的固体颗粒、复合抗生素及聚丙烯系高吸水树脂添加到混合设备中,通过超声波振动混合,即可得到成品畜牧消毒干粉。
本实施例中,所述的S2步骤中,减压浓缩时的温度为110℃,气压为0.07MPa。
此外,所述的S3步骤中,超声波振动混合时的振荡频率为50KHz,同时所述的S3步骤中,成品畜牧消毒干粉含水量不大于1%。
本发明中,
纳米银、硝酸银预混剂10%、纳米T-ZnOw均具有良好的抗菌、杀菌及抑菌能力;
碳酸氢钠,过氧化钙 ,无水硫酸钠,三氯异氰尿酸可对纳米银、硝酸银预混剂10%、纳米T-ZnOw的杀菌能力进行补充、提高及拓展杀菌抑菌的适用范围;
葡萄糖,氯化钠,复合抗生素可有效对牲畜体表外伤创口、溃疡创口进行有效的消炎治疗和修复。
聚丙烯系高吸水树脂,可有效对牲畜活动场所等环境进行吸水干燥,防止因环境潮湿而导致的细菌、病毒等有害微生物滋生。
本发明生产制备工艺简单,生产制备成本低,可有效实现对器具及牲畜体表进行杀菌作业使用的需要,同时一方面较传统的消毒粉在消毒能力上得到了极大的提高,并有效的拓展了对细菌、病毒等有害微生物杀灭及抑制能力的适应范围;另一方面在使用中,对牲畜体表创口具有杀菌消炎能力,可有效的提高牲畜体表表面健康,并防止牲畜见皮肤疾病交叉感染。
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应所述以权利要求的保护范围为准。

Claims (9)

1.一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉, 其特征在于:所述的含T-ZnOw及纳米复合无机物的畜牧消毒干粉由以下质量百分比组份构成:纳米银1.1%—3.4%,以银离子计,硝酸银预混剂8%—13%、纳米T-ZnOw 15%—31.3%,蒙脱石23%—45.3%,碳酸氢钠1.3%—3.5%,过氧化钙 0—4.1%,无水硫酸钠0—2.5%,三氯异氰尿酸 0 —2.2%,葡萄糖1.1%—3.2%,氯化钠1.9%—2.2%,复合抗生素0—2.8%,余量为聚丙烯系高吸水树脂。
2.根据权利1所述的一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉,其特征在于:所述的纳米T-ZnOw为稀土改性T-ZnOw消毒剂。
3.根据权利1所述的一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉,其特征在于:所述的复合抗生素为3000-5000单位青链霉素、庆大霉素中的任意一种或两种以任意比例混合。
4.根据权利1所述的一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉,其特征在于:所述的蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸及聚丙烯系高吸水树脂均为100—800目粉末结构。
5.根据权利1所述的一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉,其特征在于:所述的硝酸银预混剂浓度为0.5—3.5wt%。
6.一种含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法,其特征在于:所述的含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法包括以下步骤:
S1,初步混合,首先将蒙脱石、碳酸氢钠、氧化钙、无水硫酸钠、三氯异氰尿酸进行混合并搅拌均匀,然后将混合物一同添加到研磨设备中,并在25℃—75℃恒温环境下进行研磨,得到粒径为100—800目粉末混合物;
S2,溶液配制,将硝酸银预混剂调温至35℃—45℃,然后将纳米银、纳米T-ZnOw、葡萄糖一同添加到硝酸银预混剂中,并超声波震荡均质处理10—30分钟,然后减压浓缩至60%—75%,然后以430—690米/秒速度进行超声波喷雾干燥,并对干燥后的固体物料粉碎从而至粒径不大于0.01—0.1毫米的固体颗粒;
S3,二次混合调配,将S1步骤得到的粉末混合物、S2步骤得到的固体颗粒、复合抗生素及聚丙烯系高吸水树脂添加到混合设备中,通过超声波振动混合,即可得到成品畜牧消毒干粉。
7.根据权利6所述的含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法,其特征在于:所述的S2步骤中,减压浓缩时的温度为80℃—115℃,气压为0.01—0.08MPa。
8.根据权利6所述的含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法,其特征在于:所述的S3步骤中,超声波振动混合时的振荡频率为40KHz—60KHz。
9.根据权利6所述的含T-ZnOw及纳米复合无机物的畜牧消毒干粉的制备方法,其特征在于:所述的S3步骤中,成品畜牧消毒干粉含水量不大于1%。
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CN115251067A (zh) * 2022-07-13 2022-11-01 内蒙古和正美生物科技有限公司 一种用于养殖环境改善及仔畜接生用干粉剂及其制备方法
CN115251067B (zh) * 2022-07-13 2024-04-12 内蒙古和正美生物科技有限公司 一种用于养殖环境改善及仔畜接生用干粉剂及其制备方法
CN117732302A (zh) * 2023-11-10 2024-03-22 青岛动保国家工程技术研究中心有限公司 一种畜禽用消毒剂制备工艺及使用装置
CN117732302B (zh) * 2023-11-10 2024-05-24 青岛动保国家工程技术研究中心有限公司 一种畜禽用消毒剂制备工艺及使用装置

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