CN106012653B - 一种彩色礼品包装纸及其制备方法 - Google Patents
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Abstract
本发明涉及造纸领域,提供一种彩色礼品包装纸及其制备方法,解决现有技术的包装纸降解困难、不能回收利用,并且容易吸水发霉的缺陷,包括以下重量份的各原料:生物可降解纤维100份、海藻酸钠10~15份、缓释型干燥组合物颗粒30~40份、碳酸钙20~30份、纳米二氧化钛5~8份、分散剂10~15份、润湿剂10~15份、增粘剂10~15份、烷基烯酮二聚体8~10份、聚酰胺环氧树脂1~2份、柠檬酸钠3~5份、颜料10~20份;所述缓释型干燥组合物颗粒由胶囊型外壁包裹干燥剂组成。
Description
技术领域
本发明涉及造纸领域,尤其涉及一种彩色礼品包装纸及其制备方法。
背景技术
包装纸是用作包装为目的的一类纸的统称,通常具有良好的强度、韧性、耐压及耐折等性能,质量要求与文化印刷用纸相比略简单。包装纸的细分纸种很多,大致可分为:普通包装纸、专用包装纸、商标包装纸、防油纸、防潮纸等。普通包装纸纸质强韧,作一般包装用;专用包装纸根据用途而命名,其性质也各不相同;商标包装纸是经印刷后作包装用;防油纸则具有防止油脂渗透的性能;而防潮纸则有防潮性。当包装纸作为礼品、装饰品的外包装时,其颜色多样,可根据礼品性质选择合适花纹及颜色的礼品包装纸,但传统的礼品包装纸在强度、抗水性和透气性方面可供选择的余地较小,如中国专利号为200720175219.0的文件公开了一种具有纹理表面的礼品包装纸,具有一底层,底层为皮革纤维和乳胶粘剂组成的基材层,一设于底层之上的水溶性乳胶涂层,一设于涂层之上的纹理层,具有撕扭力强, 柔韧性好的特点,但这种技术方案的礼品包装纸降解困难、可回收利用性差,并且在潮湿的南方使用,容易吸水,容易发霉。
发明内容
因此,针对以上内容,本发明提供一种彩色礼品包装纸及其制备方法,解决现有技术的包装纸降解困难、不能回收利用,并且容易吸水发霉的缺陷。
为达到上述目的,本发明是通过以下技术方案实现的:一种彩色礼品包装纸,包括以下重量份的各原料:生物可降解纤维100份、海藻酸钠10~15份、缓释型干燥组合物颗粒30~40份、碳酸钙20~30份、纳米二氧化钛5~8份、分散剂10~15份、润湿剂10~15份、增粘剂10~15份、烷基烯酮二聚体8~10份、聚酰胺环氧树脂1~2份、柠檬酸钠3~5份、颜料10~20份;所述缓释型干燥组合物颗粒由胶囊型外壁包裹干燥剂组成。
进一步的改进是:所述生物可降解纤维为竹纤维或甲壳质纤维。
进一步的改进是:所述胶囊型外壁包括双层结构,所述双层结构为外层淀粉层及被淀粉层包裹着的内层,所述内层由明胶与甘油混合而成。
进一步的改进是:所述干燥剂为:无水氯化钙。
进一步的改进是:所述缓释型干燥组合物颗粒的粒径为2~5mm。
一种彩色礼品包装纸的制备方法,包括以下处理方法:(1)制备缓释型干燥组合物颗粒:先将明胶与甘油按照3~5:1的重量比混合制成内层胶囊层,然后再裹上一层淀粉层,成型后即得到胶囊型外壁,接着在胶囊型外壁内填充作为干燥剂的无水氯化钙,所述缓释型干燥组合物颗粒的粒径控制在2~5mm;
(2)制备生物可降解纤维:采用竹纤维或甲壳质纤维作为生物可降解纤维;
(3)取生物可降解纤维100份、海藻酸钠10~15份、缓释型干燥组合物颗粒30~40份、碳酸钙20~30份、纳米二氧化钛5~8份、分散剂10~15份、润湿剂10~15份、增粘剂10~15份、烷基烯酮二聚体8~10份、聚酰胺环氧树脂1~2份、柠檬酸钠3~5份、颜料10~20份作为原材料备用;
(4)常规纸张制作工艺。
通过采用前述技术方案,本发明的有益效果是:本发明的彩色礼品包装纸,包括以下重量份的各原料:生物可降解纤维100份、海藻酸钠10~15份、缓释型干燥组合物颗粒30~40份、碳酸钙20~30份、纳米二氧化钛5~8份、分散剂10~15份、润湿剂10~15份、增粘剂10~15份、烷基烯酮二聚体8~10份、聚酰胺环氧树脂1~2份、柠檬酸钠3~5份、颜料10~20份;所述缓释型干燥组合物颗粒由胶囊型外壁包裹干燥剂组成,采用生物可降解纤维作为主料,可被降解,不污染环境,采用缓释型干燥组合物颗粒,当周围的空气较为潮湿时,水容易渗入到干燥剂中,被干燥剂吸收,从而使纸张的表面维持在一个较为干燥的状态,使纸张不容易发霉。
具体实施方式
以下将结合具体实施例来详细说明本发明的实施方式,借此对本发明如何应用技术手段来解决技术问题,并达成技术效果的实现过程能充分理解并据以实施。
若未特别指明,实施例中所采用的技术手段为本领域技术人员所熟知的常规手段,所采用的试剂和产品也均为可商业获得的。所用试剂的来源、商品名以及有必要列出其组成成分者,均在首次出现时标明。
实施例一
一种彩色礼品包装纸,包括以下重量份的各原料:竹纤维100份、海藻酸钠10份、缓释型干燥组合物颗粒30份、碳酸钙20份、纳米二氧化钛5份、分散剂10份、润湿剂10份、增粘剂10份、烷基烯酮二聚体8份、聚酰胺环氧树脂1份、柠檬酸钠3份、颜料10份;所述缓释型干燥组合物颗粒由胶囊型外壁包裹无水氯化钙组成,所述胶囊型外壁包括双层结构,所述双层结构为外层淀粉层及被淀粉层包裹着的内层,所述内层由明胶与甘油混合而成,所述缓释型干燥组合物颗粒的粒径为2mm。
其制备方法,包括以下处理方法:
(1)制备缓释型干燥组合物颗粒:先将明胶与甘油按照3:1的重量比混合制成内层胶囊层,然后再裹上一层淀粉层,成型后即得到胶囊型外壁,接着在胶囊型外壁内填充作为干燥剂的无水氯化钙,所述缓释型干燥组合物颗粒的粒径控制在2mm;
(2)制备生物可降解纤维:采用竹纤维或甲壳质纤维作为生物可降解纤维;
(3)取生物可降解纤维100份、海藻酸钠10份、缓释型干燥组合物颗粒30份、碳酸钙20份、纳米二氧化钛5份、分散剂10份、润湿剂10份、增粘剂10份、烷基烯酮二聚体8份、聚酰胺环氧树脂1份、柠檬酸钠3份、颜料10份作为原材料备用;
(4)制浆、脱水、干燥、压光、卷纸、裁切、包装,其中,所述缓释型干燥组合物颗粒是在干燥处理后压光前加入。
实施例二
一种彩色礼品包装纸,包括以下重量份的各原料:甲壳质纤维100份、海藻酸钠13份、缓释型干燥组合物颗粒35份、碳酸钙25份、纳米二氧化钛6份、分散剂13份、润湿剂12份、增粘剂13份、烷基烯酮二聚体9份、聚酰胺环氧树脂1.5份、柠檬酸钠4份、颜料15份;所述缓释型干燥组合物颗粒由胶囊型外壁包裹无水氯化钙组成,所述胶囊型外壁包括双层结构,所述双层结构为外层淀粉层及被淀粉层包裹着的内层,所述内层由明胶与甘油混合而成,所述缓释型干燥组合物颗粒的粒径为3mm。
其制备方法,包括以下处理方法:
(1)制备缓释型干燥组合物颗粒:先将明胶与甘油按照4:1的重量比混合制成内层胶囊层,然后再裹上一层淀粉层,成型后即得到胶囊型外壁,接着在胶囊型外壁内填充作为干燥剂的无水氯化钙,所述缓释型干燥组合物颗粒的粒径控制在4mm;
(2)制备生物可降解纤维:采用竹纤维或甲壳质纤维作为生物可降解纤维;
(3)取生物可降解纤维100份、海藻酸钠13份、缓释型干燥组合物颗粒35份、碳酸钙25份、纳米二氧化钛6份、分散剂13份、润湿剂12份、增粘剂13份、烷基烯酮二聚体9份、聚酰胺环氧树脂1.5份、柠檬酸钠4份、颜料15份作为原材料备用;
(4)制浆、脱水、干燥、压光、卷纸、裁切、包装,其中,所述缓释型干燥组合物颗粒是在干燥处理后压光前加入。
实施例三
一种彩色礼品包装纸,包括以下重量份的各原料:竹纤维100份、海藻酸钠15份、缓释型干燥组合物颗粒40份、碳酸钙30份、纳米二氧化钛8份、分散剂15份、润湿剂15份、增粘剂15份、烷基烯酮二聚体10份、聚酰胺环氧树脂2份、柠檬酸钠5份、颜料20份;所述缓释型干燥组合物颗粒由胶囊型外壁包裹无水氯化钙组成,所述胶囊型外壁包括双层结构,所述双层结构为外层淀粉层及被淀粉层包裹着的内层,所述内层由明胶与甘油混合而成,所述缓释型干燥组合物颗粒的粒径为5mm。
其制备方法,包括以下处理方法:
(1)制备缓释型干燥组合物颗粒:先将明胶与甘油按照3~5:1的重量比混合制成内层胶囊层,然后再裹上一层淀粉层,成型后即得到胶囊型外壁,接着在胶囊型外壁内填充作为干燥剂的无水氯化钙,所述缓释型干燥组合物颗粒的粒径控制在5mm;
(2)制备生物可降解纤维:采用竹纤维或甲壳质纤维作为生物可降解纤维;
(3)取生物可降解纤维100份、海藻酸钠15份、缓释型干燥组合物颗粒40份、碳酸钙30份、纳米二氧化钛8份、分散剂15份、润湿剂15份、增粘剂15份、烷基烯酮二聚体10份、聚酰胺环氧树脂2份、柠檬酸钠5份、颜料20份作为原材料备用;
(4)制浆、脱水、干燥、压光、卷纸、裁切、包装,其中,所述缓释型干燥组合物颗粒是在干燥处理后压光前加入。
其中,本发明的各原料的含量选择在以下参数范围内均可实现本发明的目的:生物可降解纤维100份、海藻酸钠10~15份、缓释型干燥组合物颗粒30~40份、碳酸钙20~30份、纳米二氧化钛5~8份、分散剂10~15份、润湿剂10~15份、增粘剂10~15份、烷基烯酮二聚体8~10份、聚酰胺环氧树脂1~2份、柠檬酸钠3~5份、颜料10~20份;所述缓释型干燥组合物颗粒的粒径为2~5mm均可实现本发明的目的。
以上所记载,仅为利用本创作技术内容的实施例,任何熟悉本项技艺者运用本创作所做的修饰、变化,皆属本创作主张的专利范围,而不限于实施例所揭示者。
Claims (1)
1.一种彩色礼品包装纸的制备方法,其特征在于,包括以下处理方法:(1)制备缓释型干燥组合物颗粒:先将明胶与甘油按照3~5:1的重量比混合制成内层胶囊层,然后再裹上一层淀粉层,成型后即得到胶囊型外壁,接着在胶囊型外壁内填充作为干燥剂的无水氯化钙,所述缓释型干燥组合物颗粒的粒径控制在2~5mm;
(2)制备生物可降解纤维:采用竹纤维或甲壳质纤维作为生物可降解纤维;
(3)取生物可降解纤维100份、海藻酸钠10~15份、缓释型干燥组合物颗粒30~40份、碳酸钙20~30份、纳米二氧化钛5~8份、分散剂10~15份、润湿剂10~15份、增粘剂10~15份、烷基烯酮二聚体8~10份、聚酰胺环氧树脂1~2份、柠檬酸钠3~5份、颜料10~20份作为原材料备用;
(4)常规纸张制作工艺。
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