CN112175681A - 一种节能新型液体燃料 - Google Patents

一种节能新型液体燃料 Download PDF

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CN112175681A
CN112175681A CN202010968841.7A CN202010968841A CN112175681A CN 112175681 A CN112175681 A CN 112175681A CN 202010968841 A CN202010968841 A CN 202010968841A CN 112175681 A CN112175681 A CN 112175681A
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胡锐智
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Shenzhen Chengjin Energy Co ltd
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Abstract

本发明公开了一种节能新型液体燃料,包括:主燃料甲醇100‑120份、助溶剂2‑3份、引燃剂10‑15份、双氧水1‑2份、水10‑20份、分散剂7‑10份、防腐剂0.5‑0.8份、二茂铁0.5‑1份、甲苯2‑5份、废酒精5‑10份、棕榈油酸甲酯5‑10份。本发明有益效果是:本发明的液体燃料本添加剂组分简单,具有促进液体燃料的燃烧充分和提高液体燃料热量利用率的作用,燃烧后无废气排放,无残渣、残液,可以减少燃烧时产生的煤烟,通过添加废酒精,使得废酒精充当引燃剂,减少其他引燃剂的使用,可以有效的利益资源,减少资源的浪费,节省了生产成本。

Description

一种节能新型液体燃料
技术领域
本发明涉及保健饮料技术领域,特别涉及一种节能新型液体燃料。
背景技术
现有中小型锅炉主要以煤炭、汽油等燃料为主,餐饮业则主要以煤炭、汽油、石油液化气以及其它一些杂质油品为燃料,不仅使用成本高,而且难以完全燃料,对于城镇家庭来讲固然不错,但不便于在广大的农村使用推广,对于经营性服务行业和农村就存在着成本高的问题了。因此,以甲醇为主的经营性燃料等替补燃料就应运而生。甲醇是一种理想的燃料,即可以从煤化工中获得,也可以从一些化工副产品中获得,其燃烧产物是水和二氧化碳,没有其它有害,随着经济发展越来越快迅速,能源需求量节节高升,能源匮乏程度也日趋严重,尤其我国是贫油富煤的国家,能源进口达到60%以上,严重超过能源警戒线,特别是近几年,我国工业生产中大量使用煤和燃料油,导致雾霾天气日趋严重,对人们的生存环境和身心健康造成严重伤,目前,可供人们使用的液体燃料大多是汽油和柴油,但是由于汽油和柴油资源紧张,价格逐年增高,为此,人们急切需要一种新的液体燃料能尽快产生,以解决目前所存在的能源或资源紧张等问题。
发明内容
本发明的主要目的在于提供一种节能新型液体燃料,可以有效解决背景技术中可供人们使用的液体燃料大多是汽油和柴油,但是由于汽油和柴油资源紧张,价格逐年增高,目前所存在的能源或资源紧张等问题。
为实现上述目的,本发明采取的技术方案为:
一种节能新型液体燃料,其特征在于,包括:主燃料甲醇100-120份、助溶剂2-3份、引燃剂10-15份、双氧水1-2份、水10-20份、分散剂7-10份、防腐剂0.5-0.8份、二茂铁0.5-1份、甲苯2-5份、废酒精5-10份、棕榈油酸甲酯5-10份。
优选的,主燃料甲醇110份、助溶剂2份、引燃剂12份、双氧水1份、水15份、分散剂8份、防腐剂0.7份、二茂铁0.7份、甲苯3份、废酒精8份、棕榈油酸甲酯7份。
一种节能新型液体燃料,其特征在于,液体燃料的制备方法包括以下步骤:
S1、水和主燃料甲醇混合,在常温常压条件下,把水和主燃料甲醇混合在一起,通过搅拌设备进行混合,得到第一混合液;
S2、加入引燃剂,在常温常压条件下,把引燃剂加入第一混合液,通过搅拌设备进行混合,得到第二混合液;
S3、加入分散剂,在常温常压条件下,把分散剂加入第二混合液,通过搅拌设备进行混合,得到三混合液;
S4、加入二茂铁,在常温常压条件下,把二茂铁加入第三混合液,通过搅拌设备进行混合,得到第四混合液;
S5、加入甲苯、双氧水和助溶剂,在常温常压条件下,把甲苯、双氧水和助溶剂加入第四混合液,通过搅拌设备进行混合,得到第五混合液;
S6、加入防腐剂、棕榈油酸甲酯和废酒精,在常温常压条件下,把防腐剂、棕榈油酸甲酯和废酒精加入第五混合液,通过搅拌设备进行混合,得到第六混合液;
S7、静置和过滤,在步骤S6完成后,将得到的第六混合液静置一段时间,静置结束后,对第六混合进行过滤;
S8、罐装和检测,在步骤S7完成后,将得到的滤液罐装,取小样检验合格,即制得液体燃料。
优选的,所述步骤S1~S6,搅拌设备的搅拌速度为100-200r/min。
优选的,所述步骤S2中引燃剂为丙酮,所述步骤S3中分散剂为乙醇,所述步骤S3中助溶剂为异丁醇。
优选的,所述步骤S7中静置时间为七个小时。
优选的,所述步骤S8中通过罐装机对得到的燃料进行罐装,且所述罐装机上设置计数器。
与现有技术相比,本发明具有如下有益效果:包含燃料甲醇100-120份、助溶剂2-3份、引燃剂10-15份、双氧水1-2份、水10-20份、分散剂7-10份、防腐剂0.5-0.8份、二茂铁0.5-1份、甲苯2-5份、废酒精5-10份、棕榈油酸甲酯5-10份,本发明的液体燃料本添加剂组分简单,具有促进液体燃料的燃烧充分和提高液体燃料热量利用率的作用,燃烧后无废气排放,无残渣、残液,可以减少燃烧时产生的煤烟,通过添加废酒精,使得废酒精充当引燃剂,减少其他引燃剂的使用,可以有效的利益资源,减少资源的浪费,节省了生产成本。
附图说明
图1为本发明一种节能新型液体燃料的工艺流程示意图。
具体实施方式
为使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体实施方式,进一步阐述本发明。
实施例1
一种节能新型液体燃料,包括:主燃料甲醇100-120份、助溶剂2-3份、引燃剂10-15份、双氧水1-2份、水10-20份、分散剂7-10份、防腐剂0.5-0.8份、二茂铁0.5-1份、甲苯2-5份、废酒精5-10份、棕榈油酸甲酯5-10份。
采用如下质量分数的原料制成:主燃料甲醇110份、助溶剂2份、引燃剂12份、双氧水1份、水15份、分散剂8份、防腐剂0.7份、二茂铁0.7份、甲苯3份、废酒精8份、棕榈油酸甲酯7份。
一种节能新型液体燃料,其特征在于,液体燃料的制备方法包括以下步骤:
S1、水和主燃料甲醇混合,在常温常压条件下,把水和主燃料甲醇混合在一起,通过搅拌设备进行混合,得到第一混合液;
S2、加入引燃剂,在常温常压条件下,把引燃剂加入第一混合液,通过搅拌设备进行混合,得到第二混合液;
S3、加入分散剂,在常温常压条件下,把分散剂加入第二混合液,通过搅拌设备进行混合,得到三混合液;
S4、加入二茂铁,在常温常压条件下,把二茂铁加入第三混合液,通过搅拌设备进行混合,得到第四混合液;
S5、加入甲苯、双氧水和助溶剂,在常温常压条件下,把甲苯、双氧水和助溶剂加入第四混合液,通过搅拌设备进行混合,得到第五混合液;
S6、加入防腐剂、棕榈油酸甲酯和废酒精,在常温常压条件下,把防腐剂、棕榈油酸甲酯和废酒精加入第五混合液,通过搅拌设备进行混合,得到第六混合液;
S7、静置和过滤,在步骤S6完成后,将得到的第六混合液静置一段时间,静置结束后,对第六混合进行过滤;
S8、罐装和检测,在步骤S7完成后,将得到的滤液罐装,取小样检验合格,即制得液体燃料。
其中,步骤S1~S6,搅拌设备的搅拌速度为100-200r/min;步骤S2中引燃剂为丙酮,步骤S3中分散剂为乙醇,步骤S3中助溶剂为异丁醇;步骤S7中静置时间为七个小时;步骤S8中通过罐装机对得到的燃料进行罐装,且罐装机上设置计数器。
需要说明的是,本发明为一种节能新型液体燃料,制备时,在常温常压条件下,把水和主燃料甲醇混合在一起,通过搅拌设备进行混合,得到第一混合液,在常温常压条件下,把引燃剂加入第一混合液,引燃剂为丙酮,通过搅拌设备进行混合,得到第二混合液,把分散剂加入第二混合液,分散剂为乙醇,通过搅拌设备进行混合,得到三混合液,把二茂铁加入第三混合液,通过搅拌设备进行混合,得到第四混合液,在常温常压条件下,把甲苯、双氧水和助溶剂加入第四混合液,助溶剂为异丁醇,通过搅拌设备进行混合,得到第五混合液,在常温常压条件下,把防腐剂、棕榈油酸甲酯和废酒精加入第五混合液,通过搅拌设备进行混合,得到第六混合液,在步骤S6完成后,将得到的第六混合液静置一段时间,静置时间为七个小时,静置结束后,对第六混合进行过滤,在步骤S7完成后,通过罐装机对得到的燃料进行罐装,且罐装机上设置计数器,取小样检验合格,即制得液体燃料。其中,步骤S1~S6,搅拌设备的搅拌速度为100-200r/min。
显然,上述实施例仅仅是为清楚地说明所作的举例,而并非对实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而由此所引伸出的显而易见的变化或变动仍处于本发明创造的保护范围之中。

Claims (7)

1.一种节能新型液体燃料,其特征在于,包括:主燃料甲醇100-120份、助溶剂2-3份、引燃剂10-15份、双氧水1-2份、水10-20份、分散剂7-10份、防腐剂0.5-0.8份、二茂铁0.5-1份、甲苯2-5份、废酒精5-10份、棕榈油酸甲酯5-10份。
2.根据权利要求1所述的一种节能新型液体燃料,其特征在于,采用如下质量分数的原料制成:主燃料甲醇110份、助溶剂2份、引燃剂12份、双氧水1份、水15份、分散剂8份、防腐剂0.7份、二茂铁0.7份、甲苯3份、废酒精8份、棕榈油酸甲酯7份。
3.根据权利要求1所述的一种节能新型液体燃料,其特征在于,液体燃料的制备方法包括以下步骤:
S1、水和主燃料甲醇混合,在常温常压条件下,把水和主燃料甲醇混合在一起,通过搅拌设备进行混合,得到第一混合液;
S2、加入引燃剂,在常温常压条件下,把引燃剂加入第一混合液,通过搅拌设备进行混合,得到第二混合液;
S3、加入分散剂,在常温常压条件下,把分散剂加入第二混合液,通过搅拌设备进行混合,得到三混合液;
S4、加入二茂铁,在常温常压条件下,把二茂铁加入第三混合液,通过搅拌设备进行混合,得到第四混合液;
S5、加入甲苯、双氧水和助溶剂,在常温常压条件下,把甲苯、双氧水和助溶剂加入第四混合液,通过搅拌设备进行混合,得到第五混合液;
S6、加入防腐剂、棕榈油酸甲酯和废酒精,在常温常压条件下,把防腐剂、棕榈油酸甲酯和废酒精加入第五混合液,通过搅拌设备进行混合,得到第六混合液;
S7、静置和过滤,在步骤S6完成后,将得到的第六混合液静置一段时间,静置结束后,对第六混合进行过滤;
S8、罐装和检测,在步骤S7完成后,将得到的滤液罐装,取小样检验合格,即制得液体燃料。
4.根据权利要求3所述的一种节能新型液体燃料,其特征在于,所述步骤S1~S6,搅拌设备的搅拌速度为100-200r/min。
5.根据权利要求3所述的一种节能新型液体燃料,其特征在于,所述步骤S2中引燃剂为丙酮,所述步骤S3中分散剂为乙醇,所述步骤S3中助溶剂为异丁醇。
6.根据权利要求3所述的一种节能新型液体燃料,其特征在于,所述步骤S7中静置时间为七个小时。
7.根据权利要求3所述的一种节能新型液体燃料,其特征在于,所述步骤S8中通过罐装机对得到的燃料进行罐装,且所述罐装机上设置计数器。
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