CN108192676A - 一种汽车尾气清洁剂 - Google Patents
一种汽车尾气清洁剂 Download PDFInfo
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Abstract
本发明提供了一种汽车尾气清洁剂,该清洁剂由包括如下重量份的原料制成:乙醇5‑10份、甲醇10‑15份、乙酸乙酯1‑3份、乙二醇1‑5份、正辛烷1‑3份、脂肪醇5‑10份、月桂醇1‑3份、三聚氰酸1‑3份、一乙醇胺3‑5份、二甘醇安1‑3份、二乙醇胺3‑5份、二异丙醇胺1‑3份、三乙醇胺5‑10份、N‑甲基‑二乙醇胺1‑3份、二甲基亚砜1‑3份、二氧化锆3‑8份、二氧化铈1‑5份、氧化镧1‑5份、钯1‑3份、活性炭20‑30份。本发明所述的汽车尾气清洁剂清理汽车尾气的同时,使油雾有足够的氧气进行完全燃烧,降低油耗,可将喷入到燃烧室的油雾瞬间爆裂,动力增强。
Description
技术领域
本发明属于汽车尾气净化领域,尤其是涉及一种汽车尾气清洁剂。
背景技术
汽车燃油在油箱会生成胶状物质,胶状物质就会粘附在燃油滤清器上,堵塞过滤介质,使供油量减少,使输油量不足,燃油雾化不良,致使可燃混合气变稀,发动机动力性和经济性下降。
随着经济的发展,汽车逐渐成为了每个家庭的必要代步工具。汽车方便了人们的同时导致的汽车尾气对大气的污染渐渐成为一个重要的环境问题。目前多数汽车的尾气都是没有经过任何处理直接排放到空气中,由于汽车尾气中含有大量的有害物质,汽车尾气的成分含有CO2,CO,NOx,油气,灰粉等物质,这些物质对环境的直接排放会给环境带来严重的污染。汽车尾气对局部地区的酸雨,北方冬季的严重雾霾有着不可推卸的责任,对老百姓的键康造成了极大的危害,因此汽车尾气的治理迫在眉睫。
汽车尾气对环境的影响越来越大,因此尾气的治理就越来越重要。目前汽车尾气的治理方法五花八门,无论何重方法,目的只有一个即减少汽车尾气对环境的排放、保护大气环境。现有技术中不管是何种治理方法,都必须使用净化剂,净化剂的配方直接影响着汽车尾气净化处理的效果。现有技术中,某些净化剂虽然能够起到较好的净化效果,但是对尾气净化装置的腐蚀较大,降低了尾气净化的长期效果和降低了尾气净化装置的使用寿命。因此急需开发出一种净化效果优异、原料易得、成本低廉且使用方便的汽车尾气净化剂。
发明内容
有鉴于此,本发明旨在提出一种汽车尾气清洁剂,可全方位清洗油路、进气、排气等系统,大大降低尾气排放,提升动力、节省燃油。
为达到上述目的,本发明的技术方案是这样实现的:
一种汽车尾气清洁剂,该清洁剂由包括如下重量份的原料制成:乙醇5-10份、甲醇10-15份、乙酸乙酯1-3份、乙二醇1-5份、正辛烷1-3份、脂肪醇5-10份、月桂醇1-3份、三聚氰酸1-3份、一乙醇胺3-5份、二甘醇安1-3份、二乙醇胺3-5份、二异丙醇胺1-3份、三乙醇胺5-10份、N-甲基-二乙醇胺1-3份、二甲基亚砜1-3份、二氧化锆3-8份、二氧化铈1-5份、氧化镧1-5份、钯1-3份、活性炭20-30份。
优选的,所述的清洁剂由包括如下重量份的原料制成:乙醇8-10份、甲醇13-15份、乙酸乙酯1-3份、乙二醇3-5份、正辛烷2-3份、脂肪醇8-10份、月桂醇1-3份、三聚氰酸1-3份、一乙醇胺3-5份、二甘醇安1-3份、二乙醇胺3-5份、二异丙醇胺1-3份、三乙醇胺5-8份、N-甲基-二乙醇胺1-3份、二甲基亚砜1-3份、二氧化锆3-8份、二氧化铈1-5份、氧化镧1-5份、钯1-3份、活性炭20-25份。
优选的,所述的清洁剂由包括如下重量份的原料制成:乙醇8-10份、甲醇13-15份、乙酸乙酯1-3份、乙二醇3-5份、正辛烷2-3份、脂肪醇8-10份、月桂醇1-3份、三聚氰酸1-3份、一乙醇胺3-5份、二甘醇安1-3份、二乙醇胺3-5份、二异丙醇胺1-3份、三乙醇胺5-8份、N-甲基-二乙醇胺1-3份、二甲基亚砜1-3份、二氧化锆3-8份、二氧化铈1-3份、氧化镧3-5份、钯3-3份、活性炭20-25份。
优选的,所述的清洁剂由包括如下重量份的原料制成:乙醇5-7份、甲醇10-15份、乙酸乙酯1-3份、乙二醇1-3份、正辛烷1-3份、脂肪醇5-7份、月桂醇1-3份、三聚氰酸1-3份、一乙醇胺3-5份、二甘醇安1-3份、二乙醇胺3-5份、二异丙醇胺1-3份、三乙醇胺5-10份、N-甲基-二乙醇胺1-3份、二甲基亚砜1-3份、二氧化锆3-8份、二氧化铈1-5份、氧化镧1-5份、钯1-3份、活性炭28-30份。
所述的汽车尾气清洁剂的制备方法,包括如下步骤:
(1)将二氧化锆、二氧化铈、氧化镧、钯、活性炭分别进行研磨至10-50目的粉末,然后混合均匀,得到催化粉末;
(2)将乙醇、甲醇、乙酸乙酯、乙二醇、正辛烷、脂肪醇、月桂醇、三聚氰酸、一乙醇胺、二甘醇安、二乙醇胺、二异丙醇胺、三乙醇胺、N-甲基-二乙醇胺、二甲基亚砜混合均匀,调节pH值达6-9,然后向其中加入所述的催化粉末,超声波震荡1-3小时后即得。
相对于现有技术,本发明所述的汽车尾气清洁剂具有以下优势:
(1)本发明所述的汽车尾气清洁剂清理汽车尾气的同时,使油雾有足够的氧气进行完全燃烧,降低油耗,可将喷入到燃烧室的油雾瞬间爆裂,动力增强。
(2)本发明所述的汽车尾气清洁剂与目前的任何汽油随意混合,不会发生沉淀、悬浊现象,并且清除积碳,延长发动机保养周期,在汽油车燃烧过程中积碳排放问题,降低闪点,增加辛烷值。
具体实施方式
除有定义外,以下实施例中所用的技术术语具有与本发明所属领域技术人员普遍理解的相同含义。以下实施例中所用的试验试剂,如无特殊说明,均为常规生化试剂;所述实验方法,如无特殊说明,均为常规方法。
下面结合实施例来详细说明本发明。
实施例1
一种汽车尾气清洁剂,该清洁剂由包括如下重量份的原料制成:乙醇8份、甲醇10份、乙酸乙酯2份、乙二醇3份、正辛烷1份、脂肪醇6份、月桂醇2份、三聚氰酸2份、一乙醇胺4份、二甘醇安2份、二乙醇胺3份、二异丙醇胺2份、三乙醇胺6份、N-甲基-二乙醇胺2份、二甲基亚砜2份、二氧化锆5份、二氧化铈2份、氧化镧2份、钯1份、活性炭24份。
所述的汽车尾气清洁剂的制备方法,包括如下步骤:
(1)将二氧化锆、二氧化铈、氧化镧、钯、活性炭分别进行研磨至20目的粉末,然后混合均匀,得到催化粉末;
(2)将乙醇、甲醇、乙酸乙酯、乙二醇、正辛烷、脂肪醇、月桂醇、三聚氰酸、一乙醇胺、二甘醇安、二乙醇胺、二异丙醇胺、三乙醇胺、N-甲基-二乙醇胺、二甲基亚砜混合均匀,调节pH值达7-8,然后向其中加入所述的催化粉末,超声波震荡2小时后即得。
实施例2
一种汽车尾气清洁剂,该清洁剂由包括如下重量份的原料制成:乙醇6份、甲醇12份、乙酸乙酯1份、乙二醇2份、正辛烷2份、脂肪醇6份、月桂醇1份、三聚氰酸1份、一乙醇胺3份、二甘醇安1份、二乙醇胺3份、二异丙醇胺1份、三乙醇胺6份、N-甲基-二乙醇胺1份、二甲基亚砜1份、二氧化锆5份、二氧化铈3份、氧化镧3份、钯1份、活性炭22份。
所述的汽车尾气清洁剂的制备方法,包括如下步骤:
(1)将二氧化锆、二氧化铈、氧化镧、钯、活性炭分别进行研磨至20目的粉末,然后混合均匀,得到催化粉末;
(2)将乙醇、甲醇、乙酸乙酯、乙二醇、正辛烷、脂肪醇、月桂醇、三聚氰酸、一乙醇胺、二甘醇安、二乙醇胺、二异丙醇胺、三乙醇胺、N-甲基-二乙醇胺、二甲基亚砜混合均匀,调节pH值达7-8,然后向其中加入所述的催化粉末,超声波震荡2小时后即得。
实施例3
一种汽车尾气清洁剂,该清洁剂由包括如下重量份的原料制成:乙醇8份、甲醇15份、乙酸乙酯2份、乙二醇2份、正辛烷3份、脂肪醇8份、月桂醇2份、三聚氰酸2份、一乙醇胺4份、二甘醇安3份、二乙醇胺4份、二异丙醇胺3份、三乙醇胺8份、N-甲基-二乙醇胺3份、二甲基亚砜3份、二氧化锆6份、二氧化铈5份、氧化镧5份、钯2份、活性炭28份。
所述的汽车尾气清洁剂的制备方法,包括如下步骤:
(1)将二氧化锆、二氧化铈、氧化镧、钯、活性炭分别进行研磨至20目的粉末,然后混合均匀,得到催化粉末;
(2)将乙醇、甲醇、乙酸乙酯、乙二醇、正辛烷、脂肪醇、月桂醇、三聚氰酸、一乙醇胺、二甘醇安、二乙醇胺、二异丙醇胺、三乙醇胺、N-甲基-二乙醇胺、二甲基亚砜混合均匀,调节pH值达7-8,然后向其中加入所述的催化粉末,超声波震荡2小时后即得。
实施例4
一种汽车尾气清洁剂,该清洁剂由包括如下重量份的原料制成:乙醇5份、甲醇10份、乙酸乙酯1份、乙二醇1份、正辛烷1份、脂肪醇5份、月桂醇1份、三聚氰酸1份、一乙醇胺3份、二甘醇安1份、二乙醇胺3份、二异丙醇胺1份、三乙醇胺5份、N-甲基-二乙醇胺1份、二甲基亚砜1份、二氧化锆3份、二氧化铈1份、氧化镧1份、钯1份、活性炭20份。
所述的汽车尾气清洁剂的制备方法,包括如下步骤:
(1)将二氧化锆、二氧化铈、氧化镧、钯、活性炭分别进行研磨至20目的粉末,然后混合均匀,得到催化粉末;
(2)将乙醇、甲醇、乙酸乙酯、乙二醇、正辛烷、脂肪醇、月桂醇、三聚氰酸、一乙醇胺、二甘醇安、二乙醇胺、二异丙醇胺、三乙醇胺、N-甲基-二乙醇胺、二甲基亚砜混合均匀,调节pH值达7-8,然后向其中加入所述的催化粉末,超声波震荡2小时后即得。
实施例5
一种汽车尾气清洁剂,该清洁剂由包括如下重量份的原料制成:乙醇10份、甲醇15份、乙酸乙酯3份、乙二醇5份、正辛烷3份、脂肪醇10份、月桂醇3份、三聚氰酸3份、一乙醇胺5份、二甘醇安3份、二乙醇胺5份、二异丙醇胺3份、三乙醇胺10份、N-甲基-二乙醇胺3份、二甲基亚砜3份、二氧化锆8份、二氧化铈5份、氧化镧5份、钯3份、活性炭30份。
所述的汽车尾气清洁剂的制备方法,包括如下步骤:
(1)将二氧化锆、二氧化铈、氧化镧、钯、活性炭分别进行研磨至20目的粉末,然后混合均匀,得到催化粉末;
(2)将乙醇、甲醇、乙酸乙酯、乙二醇、正辛烷、脂肪醇、月桂醇、三聚氰酸、一乙醇胺、二甘醇安、二乙醇胺、二异丙醇胺、三乙醇胺、N-甲基-二乙醇胺、二甲基亚砜混合均匀,调节pH值达7-8,然后向其中加入所述的催化粉末,超声波震荡2小时后即得。
将实施例1-5制备得到的汽车尾气清洁剂进行测试,尾气中各排放物依据GB18352.5-2013、DB371657-200b检测方法检测,CO排放量低于1,HC+NOX排放量低于1,如下表所示。结果如表1所示。
表1汽车尾气清洁剂净化测试(2000年桑塔纳车测试)。
以上所述仅为本发明的较佳实施例而已,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 (5)
1.一种汽车尾气清洁剂,其特征在于:该清洁剂由包括如下重量份的原料制成:乙醇5-10份、甲醇10-15份、乙酸乙酯1-3份、乙二醇1-5份、正辛烷1-3份、脂肪醇5-10份、月桂醇1-3份、三聚氰酸1-3份、一乙醇胺3-5份、二甘醇安1-3份、二乙醇胺3-5份、二异丙醇胺1-3份、三乙醇胺5-10份、N-甲基-二乙醇胺1-3份、二甲基亚砜1-3份、二氧化锆3-8份、二氧化铈1-5份、氧化镧1-5份、钯1-3份、活性炭20-30份。
2.根据权利要求1所述的汽车尾气清洁剂,其特征在于:所述的清洁剂由包括如下重量份的原料制成:乙醇8-10份、甲醇13-15份、乙酸乙酯1-3份、乙二醇3-5份、正辛烷2-3份、脂肪醇8-10份、月桂醇1-3份、三聚氰酸1-3份、一乙醇胺3-5份、二甘醇安1-3份、二乙醇胺3-5份、二异丙醇胺1-3份、三乙醇胺5-8份、N-甲基-二乙醇胺1-3份、二甲基亚砜1-3份、二氧化锆3-8份、二氧化铈1-5份、氧化镧1-5份、钯1-3份、活性炭20-25份。
3.根据权利要求2所述的汽车尾气清洁剂,其特征在于:所述的清洁剂由包括如下重量份的原料制成:乙醇8-10份、甲醇13-15份、乙酸乙酯1-3份、乙二醇3-5份、正辛烷2-3份、脂肪醇8-10份、月桂醇1-3份、三聚氰酸1-3份、一乙醇胺3-5份、二甘醇安1-3份、二乙醇胺3-5份、二异丙醇胺1-3份、三乙醇胺5-8份、N-甲基-二乙醇胺1-3份、二甲基亚砜1-3份、二氧化锆3-8份、二氧化铈1-3份、氧化镧3-5份、钯3-3份、活性炭20-25份。
4.根据权利要求1所述的汽车尾气清洁剂,其特征在于:所述的清洁剂由包括如下重量份的原料制成:乙醇5-7份、甲醇10-15份、乙酸乙酯1-3份、乙二醇1-3份、正辛烷1-3份、脂肪醇5-7份、月桂醇1-3份、三聚氰酸1-3份、一乙醇胺3-5份、二甘醇安1-3份、二乙醇胺3-5份、二异丙醇胺1-3份、三乙醇胺5-10份、N-甲基-二乙醇胺1-3份、二甲基亚砜1-3份、二氧化锆3-8份、二氧化铈1-5份、氧化镧1-5份、钯1-3份、活性炭28-30份。
5.权利要求1-4中任一项所述的汽车尾气清洁剂的制备方法,其特征在于:包括如下步骤:
(1)将二氧化锆、二氧化铈、氧化镧、钯、活性炭分别进行研磨至10-50目的粉末,然后混合均匀,得到催化粉末;
(2)将乙醇、甲醇、乙酸乙酯、乙二醇、正辛烷、脂肪醇、月桂醇、三聚氰酸、一乙醇胺、二甘醇安、二乙醇胺、二异丙醇胺、三乙醇胺、N-甲基-二乙醇胺、二甲基亚砜混合均匀,调节pH值达6-9,然后向其中加入所述的催化粉末,超声波震荡1-3小时后即得。
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CN108837701A (zh) * | 2018-06-29 | 2018-11-20 | 河南妙天控股有限公司 | 一种汽车尾气净化液及其制备方法 |
CN108913243A (zh) * | 2018-07-30 | 2018-11-30 | 北京动力醇新能源科技发展有限公司 | 一种新能源汽车尾气清洁剂及其制备方法 |
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CN110396441A (zh) * | 2019-08-13 | 2019-11-01 | 吴爱林 | 一种尾气清洁剂 |
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CN108837701A (zh) * | 2018-06-29 | 2018-11-20 | 河南妙天控股有限公司 | 一种汽车尾气净化液及其制备方法 |
CN108949260A (zh) * | 2018-07-24 | 2018-12-07 | 安徽绿色精灵新能源科技有限公司 | 一种节能助燃汽车尾气汽油清洁剂及其制备方法 |
CN108913243A (zh) * | 2018-07-30 | 2018-11-30 | 北京动力醇新能源科技发展有限公司 | 一种新能源汽车尾气清洁剂及其制备方法 |
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