CN110272768A - 一种低碳汽油及其制备方法 - Google Patents
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Abstract
本发明创造涉及一种低碳汽油及其制备方法,由以下体积百分比的组分组成:甲醇999的含量为65%~73%、氢氧化钠的含量为0.002%~0.007%、BHT501的含量为0.1%~0.6%、苯并三氮唑的含量为0.02%~0.25%、油酸咪唑林的含量为0.05%~0.3%、司盘—80的含量为0.1%~0.4%、丙三醇的含量为0.2%~0.9%、MTBE1%~8%、石油醚的含量为2%~8%、环己胺的含量为0.2%~0.9%、石脑油的含量为9%~17%、碳五的含量为2.801%~8.801%、正丁醇的含量为0.095%~5.095%、乙酸乙酯的含量为0.025%~0.195%;因此,本发明具有含碳量低的汽油、燃烧充分、节能环保和制造方便的优点。
Description
技术领域
本发明属于汽油技术领域,具体涉及一种低碳汽油及其制备方法。
背景技术
近年来,汽车的使用越来越普及,随着汽车的普及,造成的问题就是污染空气,由于现有技术中的汽油中含碳量较高,导致汽车尾气中的一氧化碳和二氧化碳的含量也相对偏高,针对这一问题,有必要开发出一种含碳量低的汽油、燃烧充分、节能环保和制造方便的低碳汽油及其制备方法;因此,开发一种含碳量低的汽油、燃烧充分、节能环保和制造方便的低碳汽油及其制备方法具有十分重要的意义。
发明内容
本发明的目的是为了克服现有技术的不足,而提供一种含碳量低的汽油、燃烧充分、节能环保和制造方便的低碳汽油及其制备方法。
本发明的目的是这样实现的:一种低碳汽油及其制备方法,由以下体积百分比的组分组成:甲醇999的含量为65%~73%、氢氧化钠的含量为0.002%~0.007%、BHT501的含量为0.1%~0.6%、苯并三氮唑的含量为0.02%~0.25%、油酸咪唑林的含量为0.05%~0.3%、司盘—80的含量为0.1%~0.4%、丙三醇的含量为0.2%~0.9%、MTBE1%~8%、石油醚的含量为2%~8%、环己胺的含量为0.2%~0.9%、石脑油的含量为9%~17%、碳五的含量为2.801%~8.801%、正丁醇的含量为0.095%~5.095%、乙酸乙酯的含量为0.025%~0.195%。
由以下体积百分比的组分组成:甲醇999的含量为65%、氢氧化钠的含量为0.002%、BHT501的含量为0.1%、苯并三氮唑的含量为0.02%、油酸咪唑林的含量为0.05%、司盘—80的含量为0.1%、丙三醇的含量为0.2%、MTBE的含量为1%、石油醚的含量为2%、环己胺的含量为0.2%、石脑油的含量为9%、碳五的含量为2.801%、正丁醇的含量为0.095%、乙酸乙酯的含量为0.025%。
由以下体积百分比的组分组成:甲醇999的含量为73%、氢氧化钠的含量为0.007%、BHT501的含量为0.6%、苯并三氮唑的含量为0.25%、油酸咪唑林的含量为0.3%、司盘—80的含量为0.4%、丙三醇的含量为0.9%、MTBE的含量为8%、石油醚的含量为8%、环己胺的含量为0.9%、石脑油的含量为17%、碳五的含量为8.801%、正丁醇的含量为5.095%、乙酸乙酯的含量为0.195%。
由以下体积百分比的组分组成:甲醇999的含量为65%~73%、氢氧化钠的含量为0.004%、BHT501的含量为0.3%、苯并三氮唑的含量为0.1%、油酸咪唑林的含量为0.2%、司盘80的含量为0.2%、丙三醇的含量为0.7%、MTBE的含量为4%、石油醚的含量为5%、环己胺的含量为0.6%、石脑油的含量为9%~17%、碳五的含量为4.801%、正丁醇的含量为2.095%、乙酸乙酯的含量为0.095%。
将氢氧化钠、BHT501、苯并三氮唑、油酸咪唑林、司盘—80、丙三醇、MTBE、石油醚、环己胺、石脑油、碳五、正丁醇、乙酸乙酯混合搅拌后添加乳化剂,再加入甲醇搅拌40min,静置1h后,制成成品,进行灌装。
本发明的有益效果:本发明中的低碳汽油增强动力,减少尾气中的碳含量,燃油充分,减少大气污染,成本低廉,生产制造方便;因此,本发明具有含碳量低的汽油、燃烧充分、节能环保和制造方便的优点。
具体实施方式
实施例1
一种低碳汽油及其制备方法,由以下体积百分比的组分组成:甲醇999的含量为65%~73%、氢氧化钠的含量为0.002%~0.007%、BHT501的含量为0.1%~0.6%、苯并三氮唑的含量为0.02%~0.25%、油酸咪唑林的含量为0.05%~0.3%、司盘—80的含量为0.1%~0.4%、丙三醇的含量为0.2%~0.9%、MTBE1%~8%、石油醚的含量为2%~8%、环己胺的含量为0.2%~0.9%、石脑油的含量为9%~17%、碳五的含量为2.801%~8.801%、正丁醇的含量为0.095%~5.095%、乙酸乙酯的含量为0.025%~0.195%。
在本实施例中,常温常压下,将将氢氧化钠、BHT501、苯并三氮唑、油酸咪唑林、司盘—80、丙三醇、MTBE、石油醚、环己胺、石脑油、碳五、正丁醇、乙酸乙酯混合搅拌后添加乳化剂,再加入甲醇搅拌40min,静置1h后,制成成品,进行灌装即可,制造过程方便,节能环保。
实施例2
由以下体积百分比的组分组成:甲醇999的含量为65%~73%、氢氧化钠的含量为0.004%、BHT501的含量为0.3%、苯并三氮唑的含量为0.1%、油酸咪唑林的含量为0.2%、司盘80的含量为0.2%、丙三醇的含量为0.7%、MTBE的含量为4%、石油醚的含量为5%、环己胺的含量为0.6%、石脑油的含量为9%~17%、碳五的含量为4.801%、正丁醇的含量为2.095%、乙酸乙酯的含量为0.095%。
本实施例中的比例为最佳实施例,并且在河南进行了实验推广,经过百万次车辆的汽车实验应用,检测结果为油耗低,尾气碳含量低,动力强;因此,本发明具有含碳量低的汽油、燃烧充分、节能环保和制造方便的优点。
实验检测数据:
动力性测试:
汽车尾气测试:
实验表明:本发明中的低碳汽油具有含碳量低的汽油、燃烧充分、节能环保和制造方便的优点。
具体实施方式是对本发明的进一步说明而非限制,对本领域普通技术人员来说在不脱离本发明实质内容的情况下对结构做进一步变换,而所有这些变换都应属于本发明所附权利要求的保护范围。
Claims (5)
1.一种低碳汽油及其制备方法,其特征在于:由以下体积百分比的组分组成:甲醇999的含量为65%~73%、氢氧化钠的含量为0.002%~0.007%、BHT501的含量为0.1%~0.6%、苯并三氮唑的含量为0.02%~0.25%、油酸咪唑林的含量为0.05%~0.3%、司盘—80的含量为0.1%~0.4%、丙三醇的含量为0.2%~0.9%、MTBE1%~8%、石油醚的含量为2%~8%、环己胺的含量为0.2%~0.9%、石脑油的含量为9%~17%、碳五的含量为2.801%~8.801%、正丁醇的含量为0.095%~5.095%、乙酸乙酯的含量为0.025%~0.195%。
2.根据权利要求1所述的一种低碳汽油及其制备方法,其特征在于:由以下体积百分比的组分组成:甲醇999的含量为65%、氢氧化钠的含量为0.002%、BHT501的含量为0.1%、苯并三氮唑的含量为0.02%、油酸咪唑林的含量为0.05%、司盘—80的含量为0.1%、丙三醇的含量为0.2%、MTBE的含量为1%、石油醚的含量为2%、环己胺的含量为0.2%、石脑油的含量为9%、碳五的含量为2.801%、正丁醇的含量为0.095%、乙酸乙酯的含量为0.025%。
3.根据权利要求1所述的一种低碳汽油及其制备方法,其特征在于:由以下体积百分比的组分组成:甲醇999的含量为73%、氢氧化钠的含量为0.007%、BHT501的含量为0.6%、苯并三氮唑的含量为0.25%、油酸咪唑林的含量为0.3%、司盘—80的含量为0.4%、丙三醇的含量为0.9%、MTBE的含量为8%、石油醚的含量为8%、环己胺的含量为0.9%、石脑油的含量为17%、碳五的含量为8.801%、正丁醇的含量为5.095%、乙酸乙酯的含量为0.195%。
4.根据权利要求1所述的一种低碳汽油及其制备方法,其特征在于:由以下体积百分比的组分组成:甲醇999的含量为65%~73%、氢氧化钠的含量为0.004%、BHT501的含量为0.3%、苯并三氮唑的含量为0.1%、油酸咪唑林的含量为0.2%、司盘80的含量为0.2%、丙三醇的含量为0.7%、MTBE的含量为4%、石油醚的含量为5%、环己胺的含量为0.6%、石脑油的含量为9%~17%、碳五的含量为4.801%、正丁醇的含量为2.095%、乙酸乙酯的含量为0.095%。
5.根据权利要求1所述的一种低碳汽油及其制备方法,其特征在于:将氢氧化钠、BHT501、苯并三氮唑、油酸咪唑林、司盘—80、丙三醇、MTBE、石油醚、环己胺、石脑油、碳五、正丁醇、乙酸乙酯混合搅拌后添加乳化剂,再加入甲醇搅拌40min,静置1h后,制成成品,进行灌装。
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