CN110026163B - 一种环保应急材料及其制备方法和再生方法 - Google Patents

一种环保应急材料及其制备方法和再生方法 Download PDF

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CN110026163B
CN110026163B CN201910221241.1A CN201910221241A CN110026163B CN 110026163 B CN110026163 B CN 110026163B CN 201910221241 A CN201910221241 A CN 201910221241A CN 110026163 B CN110026163 B CN 110026163B
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黄建洪
陈珊
田森林
胡学伟
李英杰
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Abstract

本发明公开一种环保应急材料及其制备方法和再生方法,属于生活废旧垃圾资源化技术领域。本发明所述方法为收集废旧尿不湿并清洗干净,剥开其外层织物取出填充物并机械破碎得到填充物颗粒,接着将填充物颗粒烘干,备用;取吸附材料;机械破碎得到辅料吸附性粉末,备用;按配方比例取烘干后的填充物颗粒和辅料吸附性粉末,于干燥处混合均匀,即得环保应急材料。本发明所述环保应急材料能快速,大量高效的吸收因意外事故等泄露的有机污染液,且成本低,原料来源广,处理过程环境友好,可将废旧尿不湿变废为宝,实现资源化。

Description

一种环保应急材料及其制备方法和再生方法
技术领域
本发明涉及一种环保应急材料及其制备方法和再生方法,属于生活废旧垃圾资源化技术领域。
背景技术
尿不湿是婴儿常用的日用品,是纸尿片、纸尿裤、拉拉裤的统称。干爽的尿不湿可以使婴儿保持整夜的安睡,由于吸水性强,被俗称为"尿不湿"。其中,高吸水性树脂是制造婴儿尿不湿的绝好材料,突出特点是吸水和蓄水量大得惊人。其吸收生理盐水是自身重量的40~60倍,吸收纯净水是自身重量的50~100倍。尿不湿的用户群体主要有婴儿与成年人两大类。其中中国市场主要为婴儿尿不湿,中国每年有近2000万的婴儿出生,使用尿不湿的0岁至2岁的婴儿达到4000多万。而根据国家统计局的数据,2008年全国60岁以上人口达到1.599亿人,占总人口的12%;65岁以上的老年人口达到1.096亿人占总人口的8.3%。据统计,平均一个宝宝在自己会上厕所前,大约需要6000片尿不湿,即需要砍到4~5棵树作为木浆原料。目前尿不湿的处理方式主要为掩埋,焚烧和随意丢弃,但由于尿不湿不溶于水,难于降解,无论采用哪种方式都会对环境造成危害。且尿不湿是一次性使用后即可抛弃的产品,可见尿不湿对环境的污染如此之大。尿不湿的使用量越来越大,若不采取妥善的处理办法,我们的环境将不堪重负。现有技术中已有针对废弃尿不湿重复利用的方案,但是尚未见将废弃尿不湿处理复配后用于环保应急的报道。
环保应急是指在突发环境事件发生后,需要在短时间赶到事件现场,并进行有效处理,以防环境污染进一步扩大。针对污染泄露事件,需要立刻赶到现场对泄露的液体进行快速吸收,以迅速的恢复现场。随着化学工业的发展,大量的有机化合物通过车辆、管线进行流转和输送,在流转和输送过程中出现泄露事故。而传统的应急材料,如海绵、吸水纸和脱脂棉,吸水量最大也只能达到自身重量的20倍左右,且在受挤压后吸附的水易被挤出,不便于运输。
因此为了更好的减少环境污染,更有效的对废旧尿不湿进行利用,有必要发明一种利用废旧尿不湿制备的环保应急材料及其制备方法与应用。
发明内容
本发明的目的在于提供一种环保应急材料,该材料可用于有机化合物意外泄露的环保应急救援工作中,能对环境现场情况立刻做出反应,避免环境事故的进一步恶化,处理后的废物也能立刻转移,大大提高应急工作效率,同时充分利用废旧尿不湿,减少对环境的污染,所述环保应急材料由以下原料制备得到,各原料及其重量份为:废旧尿不湿填充物200重量份,高强吸附性材料20~50重量份,强吸附性材料20~50重量份;所述高强吸附性材料为高岭土、凹凸棒土、海泥石、硅藻土、麦饭石中的一种或多种;所述强吸附性材料为蒙脱石、膨润土、伊利石、赤石脂、累托石中的一种或多种。
本发明的另一目的在于提供所述环保应急材料的制备方法,具体包括以下步骤:
(1)收集废旧尿不湿并清洗干净,剥开其外层织物取出填充物并机械破碎得到填充物颗粒,接着将填充物颗粒烘干至含水量低于10%,备用;
(2)取含水量低于10%的高强吸附性材料和强吸附性材料,机械破碎得到辅料吸附性粉末;
(3)按配方比例取烘干后的填充物颗粒和辅料吸附性粉末,混合均匀后即得环保应急材料。
优选的,本发明步骤(1)中所述的填充物颗粒的粒度为20~200目。
优选的,本发明步骤(1)中所述的烘干的温度为200~300℃。
优选的,本发明步骤(2)中所述的辅料吸附性粉末的粒度为100~250目。
本发明的另一目的在于提供所述环保应急材料的再生方法,具体为:将使用过的环保应急材料回收,按环保应急材料与乙醇质量比为1:5~1:10的比例加入乙醇,搅拌萃取,搅拌时间为1~10h,接着过滤,将萃取液进行蒸馏回收有机化合物和乙醇,过滤得到的回收环保应急材料烘干,再次得到含水量低于10%的环保应急材料。
本发明所述环保应急材料可以用于有机化合物液体泄漏、含有机物的废液泄漏、装有有机化合物液体的运输车辆泄漏应用;所述的有机化合物液体为甲酰胺、乙二醇、苯酚、乙二酸、乙酸乙酯等中的任一种或多种。
本发明的有益效果是:
(1)本发明所述环保应急材料用于意外泄露的环保应急救援工作中,能快速、大量、高效的吸收因意外事故等泄露的有机污染液,避免环境事故的进一步恶化,处理后的尿不湿也能立刻转移,使得工作效率有很大的提高;且成本低,原料来源广,处理过程环境友好,可将废旧尿不湿变废为宝,实现废弃污染物资源化利用。
(2)本发明的的环保应急材料选择废旧尿不湿的填充物作为主要原料,具有吸附量大,吸附速度快,保水能力强等优点,而与高岭土、蒙脱石等吸附材料进行配合使用,高岭土具有较强的吸附性,能从周围介质中吸附各种离子及杂质的性能,并且在溶液中具较弱的离子交换性质;且高岭土和蒙脱石等高强吸附性材料和强吸附性材料具有良好的吸附性,从而进一步加强对泄露液的吸收。
(3)本发明的环保应急材料能够进行用后回收,不仅实现了多次重复利用,而且已经吸附的有机物通过萃取蒸馏能够回收,避免现有技术中吸附材料由于吸附量少用量大,处理难度大而造成的用后直接掩埋的问题,大大缓解了环境压力,而且为泄漏事件降低损失。
具体实施方式
下面结合具体实施方式,对本发明作进一步说明,但本发明的保护范围并不限于所述内容。
实施例1
一种环保应急材料的制备方法,具体包括以下步骤:
(1)收集废旧尿不湿并清洗干净,剥开其外层织物取出填充物并机械破碎得到填充物颗粒,并过200目筛,接着将填充物颗粒烘干至含水量为10%,备用;
(2)取含水量为10%的高岭土和蒙脱石,机械破碎得到辅料吸附性粉末,过250目筛备用;
(3)按配方比例(废旧尿不湿填充物200份,高岭土50份,蒙脱石50份)取烘干后的填充物颗粒和辅料吸附性粉末,于干燥处混合均匀,即得环保应急材料,对环保应急材料进行打包装袋,打包装袋的规格为100cm×40cm×60cm;所述的环保应急材料在环境温度为30~45℃,环境湿度25%~35%条件下保存。
将本实施例制备得到的环保应急材料用于吸附甲酰胺的泄露,效果如表1所示。
表1环保应急材料与普通海绵对甲酰胺的吸附比较
Figure DEST_PATH_IMAGE002
本实施例所述环保应急材料再生:将使用过的环保应急材料回收,加入10倍量(质量)的乙醇,搅拌萃取,搅拌时间为10h,接着过滤,将萃取液进行蒸馏回收有机化合物和乙醇,过滤得到的回收环保应急材料烘干,再次得到含水量为10%的环保应急材料,可进行再次吸收。
实施例2
一种环保应急材料的制备方法,具体包括以下步骤:
(1)收集废旧尿不湿并清洗干净,剥开其外层织物取出填充物并机械破碎得到填充物颗粒,并过150目筛,接着将填充物颗粒烘干至含水量为10%,备用;
(2)取含水量为10%的凹凸棒土和膨润土,机械破碎得到辅料吸附性粉末,过200目筛备用;
(3)按配方比例(废旧尿不湿填充物200份,凹凸棒土20份,膨润土20份)取烘干后的填充物颗粒和辅料吸附性粉末,于干燥处混合均匀,即得环保应急材料,对环保应急材料进行打包装袋,打包装袋的规格为100cm×40cm×60cm;所述的环保应急材料在环境温度为30~45℃,环境湿度25%~35%条件下保存。
将本实施例制备得到的材料用于吸附甲酰胺的泄露。
表2环保应急材料与普通海绵对甲酰胺的吸附比较
Figure DEST_PATH_IMAGE004
本实施例所述环保应急材料再生:将使用过的环保应急材料回收,加入8倍量的乙醇,搅拌萃取,搅拌时间为6 h,接着过滤,将萃取液进行蒸馏回收有机化合物和乙醇,过滤得到的回收环保应急材料烘干,再次得到含水量为10%的环保应急材料,即可。
实施例3
一种环保应急材料的制备方法,具体包括以下步骤:
(1)收集废旧尿不湿并清洗干净,剥开其外层织物取出填充物并机械破碎得到填充物颗粒,并过100目筛,接着将填充物颗粒烘干至含水量为10%,备用;
(2)取含水量为10%的膨润土和伊利石,机械破碎得到辅料吸附性粉末,过150目筛备用;
(3)按配方比例(废旧尿不湿填充物200份,膨润土30份,伊利石30份)取烘干后的填充物颗粒和辅料吸附性粉末,于干燥处混合均匀,即得环保应急材料,对环保应急材料进行打包装袋,打包装袋的规格为100cm×40cm×60cm;所述的环保应急材料在环境温度为30~45℃,环境湿度25%~35%条件下保存。
将本实施例制备得到的环保应急材料用于吸附甲酰胺的泄露。
表3环保应急材料与普通海绵对甲酰胺的吸附比较
Figure DEST_PATH_IMAGE006
本实施例所述环保应急材料再生:将使用过的环保应急材料回收,加入6倍量的乙醇,搅拌萃取,搅拌时间为4h,接着过滤,将萃取液进行蒸馏回收有机化合物和乙醇,过滤得到的回收环保应急材料烘干,再次得到含水量为10%的环保应急材料,即可。

Claims (6)

1.一种环保应急材料的应用,其特征在于:所述环保应急材料由以下原料制备得到,各原料及其重量份为:废旧尿不湿填充物200重量份,高强吸附性材料20~50重量份,强吸附性材料20~50重量份;所述高强吸附性材料为高岭土、海泥石、麦饭石中的一种或多种;所述强吸附性材料为蒙脱石、伊利石、赤石脂、累托石中的一种或多种;
所述环保应急材料用于有机化合物液体泄漏、含有机物的废液泄漏、装有有机化合物液体的运输车辆泄漏;所述的有机化合物液体为甲酰胺、乙二醇、苯酚、乙二酸、乙酸乙酯中的任一种或多种。
2.根据权利要求1所述的环保应急材料的应用,其特征在于,所述环保应急材料的制备方法具体包括以下步骤:
(1)收集废旧尿不湿并清洗干净,剥开其外层织物取出填充物并机械破碎得到填充物颗粒,接着将填充物颗粒烘干至含水量低于10%,备用;
(2)取含水量低于10%的高强吸附性材料和强吸附性材料,机械破碎得到辅料吸附性粉末;
(3)按配方比例取烘干后的填充物颗粒和辅料吸附性粉末,混合均匀后即得环保应急材料。
3.根据权利要求2所述的环保应急材料的应用,其特征在于:步骤(1)中所述的填充物颗粒的粒度为20~200目。
4.根据权利要求2所述的环保应急材料的应用,其特征在于:步骤(1)中所述的烘干的温度为200~300℃。
5.根据权利要求2所述的环保应急材料的应用,其特征在于:步骤(2)中所述的辅料吸附性粉末的粒度为100~250目。
6.根据权利要求1所述的环保应急材料的应用,其特征在于:所述环保应急材料的再生方法为将使用过的环保应急材料回收,按环保应急材料与乙醇质量比为1:5~1:10的比例加入乙醇,搅拌萃取,搅拌时间为1~10h,接着过滤,将萃取液进行蒸馏回收有机化合物和乙醇,过滤得到的回收环保应急材料烘干,再次得到含水量低于10%的环保应急材料。
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