CN106433821A - 一种纳米汽油添加剂 - Google Patents

一种纳米汽油添加剂 Download PDF

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CN106433821A
CN106433821A CN201610720694.5A CN201610720694A CN106433821A CN 106433821 A CN106433821 A CN 106433821A CN 201610720694 A CN201610720694 A CN 201610720694A CN 106433821 A CN106433821 A CN 106433821A
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蒋俊
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Guilin Weimeiyuan Restaurant Management Co Ltd
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Abstract

本发明涉及一种纳米汽油添加剂,其特征在于,包括:重量比为1:10的纳米催化剂和可溶性木质素,其中,纳米催化剂按重量分划分包括:聚乙烯醚5‑15份、聚异丁烯胺8‑12份、烷基苯0.5‑1份、硫酸锌1‑3份。本发明的纳米汽油添加剂提取方法简单,设备要求低,产率高,周期短,为工业化合成提供了支持;将其添加到汽油中可以提高汽油效率和减少废气排放。

Description

一种纳米汽油添加剂
技术领域
本发明涉及节能环保技术领域,具体的说,涉及一种纳米汽油添加剂。
背景技术
汽油是不可再生能源之一,随着天然石油贮存量的减少,提高汽油洁净度以及使汽油充分燃烧是当前化工领域和汽车工业十分关注的问题,特别是在我国目前采用的汽油中,催化裂化汽油所占比例还相当高,因此汽油氧化生成胶质、漆膜和沉积物的问题还比较严重,因此,环保汽油添加剂是目前研究的热点。发动机运转时,喷油嘴温度在100℃左右,进气阀温度在200-300℃之间。在这样的温度下,汽油中的不稳定成份,极易产生氧化缩合反应,生成胶质和积碳,沉淀在进气阀和喷油嘴上,先进的高增压发动机和使用GDI汽油直喷技术的发动机更容易产生积碳。堆积在进气阀上的沉积物,会造成进气通道截面积减少,进气效率降低,功率下降,严重时会使阀门动作迟缓,关闭不严。喷油嘴积碳,会使喷油不畅,汽油雾化质量下降,导致汽油进入燃烧室后,难以完全燃烧,造成发动机启动困难,怠速不稳,以及油耗加大,尾气排放恶化,特别在冬天,这些状况更加明显。
发明内容
本发明所要解决的技术问题是提供一种节能环保的纳米汽油添加剂。
本发明解决上述技术问题的技术方案如下:
一种纳米汽油添加剂,包括:重量比为1:10的纳米催化剂和可溶性木质素,其中,纳米催化剂按重量分划分包括:
聚乙烯醚5-15份、聚异丁烯胺8-12份、烷基苯0.5-1份、硫酸锌1-3份。
进一步,所述的可溶性木质素包括:乙醇木质素、碱木质素、硝酸木质素、酚木质素中的一种或几种。
进一步,所述纳米催化剂按重量分划分包括:
聚乙烯醚5份、聚异丁烯胺12份、烷基苯0.5份、硫酸锌3份。
进一步,所述纳米催化剂按重量分划分包括:
聚乙烯醚15份、聚异丁烯胺8份、烷基苯1份、硫酸锌1份。
进一步,所述纳米催化剂按重量分划分包括:
聚乙烯醚10份、聚异丁烯胺10份、烷基苯0.8份、硫酸锌2份。
进一步,所述纳米汽油添加剂通过以下步骤制备:
(1)原料准备:按重量份数取各种原料,各种原料的重量份数分别如下:
聚乙烯醚5-15份、聚异丁烯胺8-12份、烷基苯0.5-1份、硫酸锌1-3份;
(2)搅拌混合:各原料与其10倍重量的木质素混合,并加水搅拌均匀;
(3)造粒:将步骤二中的混合物使用螺杆挤出机挤出造粒。
进一步,所述聚乙烯醚、聚异丁烯胺、烷基苯、硫酸锌和水溶性木质素均采用纳米级材料。
本发明的有益效果是:本发明的纳米汽油添加剂提取方法简单,设备要求低,产率高,周期短,为工业化合成提供了支持;将其添加到汽油中可以提高汽油效率和减少废气排放。
具体实施方式
以下对本发明的原理和特征进行描述,所举实例只用于解释本发明,并非用于限定本发明的范围。
所述纳米汽油添加剂通过以下步骤制备:
(1)原料准备:按重量份数取各种原料,各种原料的重量份数分别如下:
聚乙烯醚5-15份、聚异丁烯胺8-12份、烷基苯0.5-1份、硫酸锌1-3份;
(2)搅拌混合:各原料与其10倍重量的木质素混合,并加水搅拌均匀;
(3)造粒:将步骤二中的混合物使用螺杆挤出机挤出造粒。
所述聚乙烯醚、聚异丁烯胺、烷基苯、硫酸锌和水溶性木质素均采用纳米级材料。
实施例1
一种纳米汽油添加剂,包括:重量比为1:10的纳米催化剂和可溶性木质素,其中,纳米催化剂按重量分划分包括:
聚乙烯醚5份、聚异丁烯胺12份、烷基苯0.5份、硫酸锌3份。
所述纳米汽油添加剂通过以下步骤制备:
(1)原料准备:按重量份数取各种原料,各种原料的重量份数分别如下:
聚乙烯醚5份、聚异丁烯胺12份、烷基苯0.5份、硫酸锌3份。
(2)搅拌混合:各原料与其10倍重量的木质素混合,并加水搅拌均匀;
(3)造粒:将步骤二中的混合物使用螺杆挤出机挤出造粒。
实施例2
一种纳米汽油添加剂,包括:重量比为1:10的纳米催化剂和可溶性木质素,其中,纳米催化剂按重量分划分包括:
聚乙烯醚15份、聚异丁烯胺8份、烷基苯1份、硫酸锌1份。
所述纳米汽油添加剂通过以下步骤制备:
(1)原料准备:按重量份数取各种原料,各种原料的重量份数分别如下:
聚乙烯醚15份、聚异丁烯胺8份、烷基苯1份、硫酸锌1份。
(2)搅拌混合:各原料与其10倍重量的木质素混合,并加水搅拌均匀;
(3)造粒:将步骤二中的混合物使用螺杆挤出机挤出造粒。
实施例3
一种纳米汽油添加剂,包括:重量比为1:10的纳米催化剂和可溶性木质素,其中,纳米催化剂按重量分划分包括:
聚乙烯醚10份、聚异丁烯胺10份、烷基苯0.8份、硫酸锌2份。
所述纳米汽油添加剂通过以下步骤制备:
(1)原料准备:按重量份数取各种原料,各种原料的重量份数分别如下:
聚乙烯醚10份、聚异丁烯胺10份、烷基苯0.8份、硫酸锌2份。
(2)搅拌混合:各原料与其10倍重量的木质素混合,并加水搅拌均匀;
(3)造粒:将步骤二中的混合物使用螺杆挤出机挤出造粒。
以分别将本发明实施例1-3中的纳米汽油添加剂和市售的普通汽油添加剂(对比例)以相同比例加入汽油中,其提高汽油效率和减少废气排放量如表1所示。(以不添加汽油添加剂的汽油燃烧效率和尾气排放量为100%)。
表1
燃烧效率(%) 尾气排放量(%)
实施例1 139 42
实施例2 138 41
实施例3 141 44
对比例 107 92
以上所述仅为本发明的较佳实施例,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (7)

1.一种纳米汽油添加剂,其特征在于,包括:重量比为1:10的纳米催化剂和可溶性木质素,其中,纳米催化剂按重量分划分包括:
聚乙烯醚5-15份、聚异丁烯胺8-12份、烷基苯0.5-1份、硫酸锌1-3份。
2.如权利要求1所述的一种内密汽油添加剂,其特征在于,所述的可溶性木质素包括:乙醇木质素、碱木质素、硝酸木质素、酚木质素中的一种或几种。
3.如权利要求2所述的一种内密汽油添加剂,其特征在于,所述纳米催化剂按重量分划分包括:
聚乙烯醚5份、聚异丁烯胺12份、烷基苯0.5份、硫酸锌3份。
4.如权利要求2所述的一种内密汽油添加剂,其特征在于,所述纳米催化剂按重量分划分包括:
聚乙烯醚15份、聚异丁烯胺8份、烷基苯1份、硫酸锌1份。
5.如权利要求2所述的一种内密汽油添加剂,其特征在于,所述纳米催化剂按重量分划分包括:
聚乙烯醚10份、聚异丁烯胺10份、烷基苯0.8份、硫酸锌2份。
6.如权利要求1-5任一所述的纳米汽油添加剂,其特征在于,所述纳米汽油添加剂通过以下步骤制备:
(1)原料准备:按重量份数取各种原料,各种原料的重量份数分别如下:
聚乙烯醚5-15份、聚异丁烯胺8-12份、烷基苯0.5-1份、硫酸锌1-3份;
(2)搅拌混合:各原料与其10倍重量的木质素混合,并加水搅拌均匀;
(3)造粒:将步骤二中的混合物使用螺杆挤出机挤出造粒。
7.如权利要求1-5任一所述的纳米汽油添加剂,其特征在于,所述聚乙烯醚、聚异丁烯胺、烷基苯、硫酸锌和水溶性木质素均采用纳米级材料。
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Publication number Priority date Publication date Assignee Title
CN101230297A (zh) * 2007-09-29 2008-07-30 天津悦泰石化科技有限公司 一种能减少汽油发动机燃烧室沉积物的汽油清净剂
CN101962584A (zh) * 2010-08-30 2011-02-02 深圳市超美化工科技有限公司 一种具有清洗功能的汽油清净剂及其制备方法
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CN104212500A (zh) * 2013-06-05 2014-12-17 中国科学院过程工程研究所 一种燃油用消烟节能添加剂、制备方法及其使用方法
CN104449909A (zh) * 2014-10-19 2015-03-25 青岛康泰鑫环保科技有限公司 一种高效汽油添加剂

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101230297A (zh) * 2007-09-29 2008-07-30 天津悦泰石化科技有限公司 一种能减少汽油发动机燃烧室沉积物的汽油清净剂
CN101962584A (zh) * 2010-08-30 2011-02-02 深圳市超美化工科技有限公司 一种具有清洗功能的汽油清净剂及其制备方法
CN104212500A (zh) * 2013-06-05 2014-12-17 中国科学院过程工程研究所 一种燃油用消烟节能添加剂、制备方法及其使用方法
CN103387857A (zh) * 2013-08-16 2013-11-13 重庆车伴侣科技有限公司 一种纳米燃油催化添加剂
CN104449909A (zh) * 2014-10-19 2015-03-25 青岛康泰鑫环保科技有限公司 一种高效汽油添加剂

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Application publication date: 20170222