CN110643396A - 一种汽车燃油添加剂及其制备方法 - Google Patents
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Abstract
本发明属于燃油添加剂技术领域,具体涉及一种汽车燃油添加剂及其制备方法。所述汽车燃油添加剂包括以下质量份组分:甲醇10‑14份、乙醇8‑12份、松节油5‑8份、纳米活性炭4‑8份、聚异丁烯苯酚7‑11份、丙酮5‑14份、丁酮4‑9份、生物质醇3‑7份、二茂铁3‑7份、抗氧剂2‑6份、云母粉3‑5份、抗腐剂1‑3份。本发明的汽车燃油添加剂可以改善燃油燃烧性能,促进燃油完全燃烧,达到了节能的目的,提高了燃油经济性以及减少碳氢化合物或燃烧中间产物的排放造成的空气污染。
Description
技术领域
本发明属于燃油添加剂技术领域,具体涉及一种汽车燃油添加剂及其制备方法。
背景技术
燃油,燃烧后产生的高温高压气体引起的膨胀,直接产生驱动力,带动引擎的运动部件如活塞,使其移动生成有效的机械能。现代汽车均采用内燃式发动机,挥发性的汽油或柴油通过喷嘴喷雾汽化后进入内燃机引擎燃烧室,与引进的空气混合燃烧,在控制的时间内,产生能量,使引擎按设计的方式运行。大量长期的研究已表明,燃料如汽油或柴油,在引擎燃烧室内以极短的瞬间燃烧即被排出,这样的燃料燃烧並不完全,剩余的燃料以燃烧的中间产物或甚至未燃烧即被排出,这样既使燃料的使用有效率降低,也使得大量的有害气体,如碳氢化合物和燃油不完全燃烧的中间产物,排放进入空气,污染大气。在燃油中引入添加剂以助提高燃油在内燃机引擎中燃烧效率的方法已被广泛地开发及应用外,汽车的排放已经成为重要的污染源,严重影响空气质量和生态环境。
发明内容
针对现有技术的不足,本发明提供一种汽车燃油添加剂及其制备方法,本发明的汽车燃油添加剂可以改善燃油燃烧性能,促进燃油完全燃烧,达到了节能的目的,提高了燃油经济性以及减少碳氢化合物或燃烧中间产物的排放造成的空气污染。
为实现以上目的,本发明通过以下技术方案予以实现:
一种汽车燃油添加剂,包括以下质量份组分:甲醇10-14份、乙醇8-12份、松节油5-8份、纳米活性炭4-8份、聚异丁烯苯酚7-11份、丙酮5-14份、丁酮4-9份、生物质醇3-7份、二茂铁3-7份、抗氧剂2-6份、云母粉3-5份、抗腐剂1-3份。
作为本发明的优选方案,所述汽车燃油添加剂,包括以下质量份组分:甲醇11份、乙醇9份、松节油7份、纳米活性炭6份、聚异丁烯苯酚8份、丙酮12份、丁酮7份、生物质醇6份、二茂铁4份、抗氧剂3份、云母粉4份、抗腐剂2份。
作为本发明的优选方案,所述汽车燃油添加剂,包括以下质量份组分:甲醇13份、乙醇11份、松节油6份、纳米活性炭7份、聚异丁烯苯酚9份、丙酮8份、丁酮9份、生物质醇6份、二茂铁5份、抗氧剂5份、云母粉4份、抗腐剂2份。
作为本发明的优选方案,所述云母粉的粒径≤50nm。
作为本发明的优选方案,所述抗氧剂为抗氧剂BHT。
一种汽车燃油添加剂的制备方法,包括以下步骤:
第一步,将所述甲醇、乙醇、松节油、纳米活性炭、聚异丁烯苯酚、丙酮和丁酮混合,通入氮气保持20-30min,得到混合物A;
第二步,将纳米活性炭和云母研磨至粒径≤50nm的纳米混合物,将所述混合物加入所述混合物A中,通入氦气并搅拌处理30-50min,得混合物B;
第三步,取生物质醇、二茂铁、抗氧剂和抗腐剂加入所述混合物B中,超声处理,即得。
作为本发明的优选方案,所述超声处理的时间为1-2小时。
与现有技术相比,本发明具有以下有益效果:
(1)本发明的汽车燃油添加剂可以改善燃油燃烧性能,促进燃油完全燃烧,达到了节能的目的,提高了燃油经济性以及减少碳氢化合物或燃烧中间产物的排放造成的空气污染;
(2)本发明的制备方法简单、操作方便、且原来原料成本较低,适合工业化生产。
具体实施方式
下面通过具体实施方式对本发明作进一步详细说明。但本领域技术人员将会理解,下列实施例仅用于说明本发明,而不应视为限定本发明的范围。实施例中未注明具体技术或条件者,按照本领域内的文献所描述的技术或条件按照说明书进行。所用试剂或仪器未注明生产厂商者,均为可以通过市购获得的常规产品。
实施例1
一种汽车燃油添加剂,包括以下质量份组分:甲醇10份、乙醇8份、松节油5份、纳米活性炭4份、聚异丁烯苯酚7份、丙酮5份、丁酮4份、生物质醇3份、二茂铁3份、抗氧剂2份、云母粉3份、抗腐剂1份。
其中,所述云母粉的粒径≤50nm。
所述抗氧剂为抗氧剂BHT。
一种汽车燃油添加剂的制备方法,包括以下步骤:
第一步,将所述甲醇、乙醇、松节油、纳米活性炭、聚异丁烯苯酚、丙酮和丁酮混合,通入氮气保持20min,得到混合物A;
第二步,将纳米活性炭和云母研磨至粒径≤50nm的纳米混合物,将所述混合物加入所述混合物A中,通入氦气并搅拌处理30min,得混合物B;
第三步,取生物质醇、二茂铁、抗氧剂和抗腐剂加入所述混合物B中,超声处理,即得。
其中,所述超声处理的时间为1小时。
实施例2
一种汽车燃油添加剂,包括以下质量份组分:甲醇14份、乙醇12份、松节油8份、纳米活性炭8份、聚异丁烯苯酚11份、丙酮14份、丁酮9份、生物质醇7份、二茂铁7份、抗氧剂6份、云母粉5份、抗腐剂3份。
其中,所述云母粉的粒径≤50nm。
所述抗氧剂为抗氧剂BHT。
一种汽车燃油添加剂的制备方法,包括以下步骤:
第一步,将所述甲醇、乙醇、松节油、纳米活性炭、聚异丁烯苯酚、丙酮和丁酮混合,通入氮气保持30min,得到混合物A;
第二步,将纳米活性炭和云母研磨至粒径≤50nm的纳米混合物,将所述混合物加入所述混合物A中,通入氦气并搅拌处理50min,得混合物B;
第三步,取生物质醇、二茂铁、抗氧剂和抗腐剂加入所述混合物B中,超声处理,即得。
其中,所述超声处理的时间为2小时。
实施例3
一种汽车燃油添加剂,包括以下质量份组分:甲醇11份、乙醇9份、松节油7份、纳米活性炭6份、聚异丁烯苯酚8份、丙酮12份、丁酮7份、生物质醇6份、二茂铁4份、抗氧剂3份、云母粉4份、抗腐剂2份。
其中,所述云母粉的粒径≤50nm。
所述抗氧剂为抗氧剂BHT。
一种汽车燃油添加剂的制备方法,包括以下步骤:
第一步,将所述甲醇、乙醇、松节油、纳米活性炭、聚异丁烯苯酚、丙酮和丁酮混合,通入氮气保持25min,得到混合物A;
第二步,将纳米活性炭和云母研磨至粒径≤50nm的纳米混合物,将所述混合物加入所述混合物A中,通入氦气并搅拌处理40min,得混合物B;
第三步,取生物质醇、二茂铁、抗氧剂和抗腐剂加入所述混合物B中,超声处理,即得。
其中,所述超声处理的时间为1.5小时。
实施例4
一种汽车燃油添加剂,包括以下质量份组分:甲醇13份、乙醇11份、松节油6份、纳米活性炭7份、聚异丁烯苯酚9份、丙酮8份、丁酮9份、生物质醇6份、二茂铁5份、抗氧剂5份、云母粉4份、抗腐剂2份。
其中,所述云母粉的粒径≤50nm。
所述抗氧剂为抗氧剂BHT。
一种汽车燃油添加剂的制备方法,包括以下步骤:
第一步,将所述甲醇、乙醇、松节油、纳米活性炭、聚异丁烯苯酚、丙酮和丁酮混合,通入氮气保持26min,得到混合物A;
第二步,将纳米活性炭和云母研磨至粒径≤50nm的纳米混合物,将所述混合物加入所述混合物A中,通入氦气并搅拌处理45min,得混合物B;
第三步,取生物质醇、二茂铁、抗氧剂和抗腐剂加入所述混合物B中,超声处理,即得。
作为本发明的优选方案,所述超声处理的时间为2小时。
实施例5
一种汽车燃油添加剂,包括以下质量份组分:甲醇12份、乙醇8份、松节油7份、纳米活性炭6份、聚异丁烯苯酚8份、丙酮11份、丁酮8份、生物质醇6份、二茂铁4份、抗氧剂3份、云母粉5份、抗腐剂2份。
其中,所述云母粉的粒径≤50nm。
所述抗氧剂为抗氧剂BHT。
一种汽车燃油添加剂的制备方法,包括以下步骤:
第一步,将所述甲醇、乙醇、松节油、纳米活性炭、聚异丁烯苯酚、丙酮和丁酮混合,通入氮气保持20min,得到混合物A;
第二步,将纳米活性炭和云母研磨至粒径≤50nm的纳米混合物,将所述混合物加入所述混合物A中,通入氦气并搅拌处理40min,得混合物B;
第三步,取生物质醇、二茂铁、抗氧剂和抗腐剂加入所述混合物B中,超声处理,即得。
其中,所述超声处理的时间为1.2小时。
以上所述,仅是本发明较佳的实施例而已,并非对本发明的技术范围作任何限制,故凡是依据本发明的技术实质对以上实施例所做的任何细微修改、等同变化和修饰,均属于本发明技术方案的范围内。
Claims (7)
1.一种汽车燃油添加剂,其特征在于,包括以下质量份组分:甲醇10-14份、乙醇8-12份、松节油5-8份、纳米活性炭4-8份、聚异丁烯苯酚7-11份、丙酮5-14份、丁酮4-9份、生物质醇3-7份、二茂铁3-7份、抗氧剂2-6份、云母粉3-5份、抗腐剂1-3份。
2.根据权利要求1所述的一种汽车燃油添加剂,其特征在于,包括以下质量份组分:甲醇11份、乙醇9份、松节油7份、纳米活性炭6份、聚异丁烯苯酚8份、丙酮12份、丁酮7份、生物质醇6份、二茂铁4份、抗氧剂3份、云母粉4份、抗腐剂2份。
3.根据权利要求1所述的一种汽车燃油添加剂,其特征在于,包括以下质量份组分:甲醇13份、乙醇11份、松节油6份、纳米活性炭7份、聚异丁烯苯酚9份、丙酮8份、丁酮9份、生物质醇6份、二茂铁5份、抗氧剂5份、云母粉4份、抗腐剂2份。
4.根据权利要求1所述的一种汽车燃油添加剂,其特征在于,所述云母粉的粒径≤50nm。
5.根据权利要求1所述的一种汽车燃油添加剂,其特征在于,所述抗氧剂为抗氧剂BHT。
6.权利要求1所述的一种汽车燃油添加剂的制备方法,其特征在于,包括以下步骤:
第一步,将所述甲醇、乙醇、松节油、纳米活性炭、聚异丁烯苯酚、丙酮和丁酮混合,通入氮气保持20-30min,得到混合物A;
第二步,将纳米活性炭和云母研磨至粒径≤50nm的纳米混合物,将所述混合物加入所述混合物A中,通入氦气并搅拌处理30-50min,得混合物B;
第三步,取生物质醇、二茂铁、抗氧剂和抗腐剂加入所述混合物B中,超声处理,即得。
7.根据权利要求7所述的一种汽车燃油添加剂的制备方法,其特征在于,所述超声处理的时间为1-2小时。
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