CN113698671A - 全降解液态膜的制备方法 - Google Patents

全降解液态膜的制备方法 Download PDF

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CN113698671A
CN113698671A CN202111023172.7A CN202111023172A CN113698671A CN 113698671 A CN113698671 A CN 113698671A CN 202111023172 A CN202111023172 A CN 202111023172A CN 113698671 A CN113698671 A CN 113698671A
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李哲
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Abstract

全降解液态膜及制备方法。液态膜也存在着诸多问题,如冻融稳定性差、储存稳定性差、产品性能不稳定的问题。本发明组成包括:1‑7份的木质素,2‑9份的纤维素,0.3‑8份的稳定剂,0.2‑9份的增稠剂,1‑11份的增韧剂,1‑10份的聚乙烯醇,0.8‑8份的壳聚糖,38‑93.7份的水。本发明用于在地面、植物和水果的表面形成保护膜。

Description

全降解液态膜的制备方法
技术领域
本发明涉及一种全降解液态膜及制备方法。
背景技术
干旱半干旱地区的水资源短缺是制约当地农业发展的瓶颈之一,例如 2008年,全国因旱作物受灾面积12136.8千公顷,其中成灾6797.5千公顷,绝收811.8千公顷,全国因旱粮食损失160.6亿公斤,经济作物损失226.2 亿元。因此,如何解决农业缺水问题已经成为农业科技工作者面对的重要挑战。
田间覆盖技术、化控节水技术是两种节约农业水资源的重要措施,液态地膜作为二者的集成,可以有效保持土壤水分、改良土壤结构、促进作 物增产。液态地膜操作简单、适应性强,在丘陵地耕作、荒山绿化、荒漠 化治理等方面也具有一定的效果,因此液态地膜具有明显的理论意义和显著的应用价值。
目前,液态膜也存在着诸多问题,如冻融稳定性差、储存稳定性差、产品性能不稳定的问题。
发明内容
本发明的目的是提供一种全降解液态膜及制备方法。
上述的目的通过以下的技术方案实现:
一种全降解液态膜,其组成包括:1-7份的木质素,2-9份的纤维素,0.3-8份的稳定剂,0.2-9份的增稠剂,1-11份的增韧剂,1-10份的聚乙烯醇,0.8-8份的壳聚糖, 38-93.7份的水;
所述的全降解液态膜,其组成包括:1份的木质素,2份的纤维素,0.3份的稳定剂,0.2份的增稠剂,1份的增韧剂,1份的聚乙烯醇,0.8份的壳聚糖, 93.7份的水。
所述的全降解液态膜,其组成包括:7份的木质素,9份的纤维素,8份的稳定剂,9份的增稠剂, 11份的增韧剂,10份的聚乙烯醇,8份的壳聚糖, 38份的水。
所述的全降解液态膜,其组成包括:4份的木质素,5份的纤维素,5份的稳定剂,6份的增稠剂,7份的增韧剂,6份的聚乙烯醇,4份的壳聚糖,63份的水。
所述的全降解液态膜,所述的稳定剂为尿素。
所述的全降解液态膜,所述的增稠剂为淀粉。
所述的全降解液态膜,所述的增韧剂为甘油。
一种全降解液态膜的制备方法,该方法包括如下步骤:按上述原料按照比例量取,在反应釜中加入水,而后依次再加入聚乙烯醇、甘油和纤维素,升温至60~80℃,高速搅拌2~3h,降至室温得到混合溶解液;所得混合溶解液中再按上述比例依次加入木质素、稳定剂、增稠剂、增韧剂和壳聚糖,升温至90℃,高速搅拌0.5~1h,即得到可降解液态膜。
有益效果:
1.本发明具有抑制土壤水分蒸发的功效,液态膜的蒸发抑制率达到 24%-40%,将本发明膜兑水喷施于土壤表面后,播种后或移栽后喷施在地上可替代塑料地膜,起到增温,保墒,经过一段时间就会自然全降解,其中高分子的亲水基团可以有效地与土壤颗粒结合,在土壤表层形成交联层,抑制土壤水分蒸发。
2.本发明液态膜具有冻融稳定性强;储存稳定性强等特点。并具有提前作物出苗时间,增强土壤保墒能力,改良土壤结构,促进作物增产, 不产生土壤环境污染的功效。
3.本发明添加聚乙烯醇为土壤改良剂,改良土壤功效,可以有效提高磷肥的利用效率,进而在降解过程中可有效促进土壤水稳性团聚体的形成。
4.本发明的纤维素可促进土壤对对磷的有效吸收,进而增加作物根系对磷的有效利用。
6.本发明壳聚糖属天然可食性物质,可直接食用,具有良好的成膜性、透气性、生物兼容性,在果树邻近秋收时,将其喷洒在水果上,可以作为套袋,在其表面形成壳膜,可防止在贮藏期间杂菌的侵入,此外,壳聚糖还具有通透性和保湿性、防止褐变等特性,本发明中同时作为天然保鲜剂,可有效抑制各种病菌入侵和生长,同时可以将其喷施在植物叶面上,可防虫,起到植物保护作用,就当植物保护膜。
7.本发明利用甘油作为聚乙烯醇和淀粉的增韧剂,其形成的液态膜具有韧性,喷洒在沙华的地方,喷施在可做防风固沙用。
具体实施方式:
实施例1:
一种全降解液态膜,其组成包括:1份的木质素,2份的纤维素,0.3份的稳定剂,0.2份的增稠剂,1份的增韧剂,1份的聚乙烯醇,0.8份的壳聚糖, 93.7份的水。
实施例2:
根据实施例1所述的全降解液态膜,其组成包括:7份的木质素,9份的纤维素,8份的稳定剂,9份的增稠剂, 11份的增韧剂,10份的聚乙烯醇,8份的壳聚糖, 38份的水。
实施例3:
根据实施例1或2所述的全降解液态膜,其组成包括:4份的木质素,5份的纤维素,5份的稳定剂,6份的增稠剂,7份的增韧剂,6份的聚乙烯醇,4份的壳聚糖,63份的水。
实施例4:
根据实施例1或2或3所述的全降解液态膜,所述的稳定剂为尿素。
实施例5:
根据实施例1或2或3或4所述的全降解液态膜,所述的增稠剂为淀粉。
实施例6:
根据实施例1或2或3或4或5所述的全降解液态膜,所述的增韧剂为甘油。
实施例7:
一种全降解液态膜的制备方法,该方法包括如下步骤:按上述原料按照比例量取,在反应釜中加入水,而后依次再加入聚乙烯醇、甘油和纤维素,升温至60~80℃,高速搅拌2~3h,降至室温得到混合溶解液;所得混合溶解液中再按上述比例依次加入木质素、稳定剂、增稠剂、增韧剂和壳聚糖,升温至90℃,高速搅拌0.5~1h,即得到可降解液态膜。
实施例8:
将其喷施在地面上作为地膜;
将制备出的液态膜兑水稀释10~20倍所得稀释液喷施于土壤表面,每亩土壤喷施液态地膜的稀释液30~40kg,喷洒后形成一层液态保护膜,在3个月后自行降解。
作为地膜应用时可以在液态膜内添加腐殖酸,形成腐殖酸液态膜,在使用后能形成黑褐色土膜,能减少土壤水份蒸发,减少水土流失,在降解后会化为有机肥,能改良土壤团粒,增加通透性,促进植物生长,没有任何污染。
实施例9:
将其喷施在沙化地进行防风固沙;
将制备出的液态膜兑水稀释5-10倍所得稀释液喷施于地面,喷洒后形成一层液态保护膜,在3个月后自行降解。
实施例10:
将其喷施在植物上作为植物保护膜;
将制备出的液态膜兑水稀释10-20倍所得稀释液喷施于植物表面,喷洒后形成一层液态保护膜,在3个月后自行降解。
实施例11:
将其喷施在果树的果实上作为水果的套袋;
将制备出的液态膜兑水稀释15-30倍所得稀释液喷施于水果上,喷洒后形成一层液态保护膜,在3个月后自行降解。

Claims (8)

1.一种全降解液态膜,其特征是:其组成包括:1-7份的木质素,2-9份的纤维素,0.3-8份的稳定剂,0.2-9份的增稠剂,1-11份的增韧剂,1-10份的聚乙烯醇,0.8-8份的壳聚糖,38-93.7份的水。
2.根据权利要求1所述的全降解液态膜,其特征是:其组成包括:1份的木质素,2份的纤维素,0.3份的稳定剂,0.2份的增稠剂,1份的增韧剂,1份的聚乙烯醇,0.8份的壳聚糖,93.7份的水。
3.根据权利要求1所述的全降解液态膜,其特征是:其组成包括:7份的木质素,9份的纤维素,8份的稳定剂,9份的增稠剂, 11份的增韧剂,10份的聚乙烯醇,8份的壳聚糖, 38份的水。
4.根据权利要求1所述的全降解液态膜,其特征是:其组成包括:4份的木质素,5份的纤维素,5份的稳定剂,6份的增稠剂,7份的增韧剂,6份的聚乙烯醇,4份的壳聚糖,63份的水。
5.根据权利要求1所述的全降解液态膜,其特征是:所述的稳定剂为尿素。
6.根据权利要求1所述的全降解液态膜,其特征是:所述的增稠剂为淀粉。
7.根据权利要求1所述的全降解液态膜,其特征是:所述的增韧剂为甘油。
8.一种权利要求1-7之一所述的全降解液态膜的制备方法,其特征是:该方法包括如下步骤:按上述原料按照比例量取,在反应釜中加入水,而后依次再加入聚乙烯醇、甘油和纤维素,升温至60~80℃,高速搅拌2~3h,降至室温得到混合溶解液;所得混合溶解液中再按上述比例依次加入木质素、稳定剂、增稠剂、增韧剂和壳聚糖,升温至90℃,高速搅拌0.5~1h,即得到可降解液态膜。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114957896A (zh) * 2022-06-16 2022-08-30 塔里木大学 一种可降解地膜的制备方法

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114957896A (zh) * 2022-06-16 2022-08-30 塔里木大学 一种可降解地膜的制备方法

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