CN108219870A - 一种节能环保型生物燃料及其制备方法 - Google Patents
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Abstract
本发明属于生物燃料技术领域,具体涉及一种节能环保型生物燃料,包括以下重量份的组分:加氢轻质煤焦油40‑50份、厨余食用油30‑40份、生物乙醇35‑55份、MTBE10‑15份、辛醇5‑10份、甲缩醛5‑10份、N‑苯基‑N‑仲丁基苯二胺10‑15份。本发明所述的节能环保型生物燃料各组分相互配合,燃烧充分彻底、燃烧热值高,燃料热值可达43000kJ/kg,且具有较好的抗腐蚀性能。
Description
技术领域
本发明属于生物燃料技术领域,具体涉及一种节能环保型生物燃料及其制备方法。
背景技术
生物燃料泛指由生物质组成或萃取的固体、液体或气体燃料,可以替代由石油制取的汽油和柴油,是可再生能源开发利用的重要方向。生物燃料的研究发展取得了很大的成绩,特别是以粮食为原料的燃料乙醇生产,已初步形成规模。然而现有技术中的生物燃料具有热值低、油耗大、动力小的缺点,不利于生物燃料的推广应用。
技术方案
为解决上述问题,本发明提供了一种,具体技术方案如下。
一种节能环保型生物燃料,包括以下重量份的组分:加氢轻质煤焦油40-50份、厨余食用油30-40份、生物乙醇35-55份、MTBE10-15份、辛醇5-10份、甲缩醛5-10份、N-苯基-N-仲丁基苯二胺10-15份。
作为优选,所述的节能环保型生物燃料还包括5-10份助燃剂,所述助燃剂为重量比为1:2:3的己醚、异丙醚、甲基叔丁基醚。
作为优选,所述的节能环保型生物燃料还包括3-5份稳定剂,所述稳定剂为重量比为2:3的二叔丁基对甲酚和异丁胺。
作为优选,所述的节能环保型生物燃料还包括5-8份抗爆剂,所述抗爆剂为甲基环二烯三羰基锰。
作为优选,所述的节能环保型生物燃料包括以下重量份的组分:加氢轻质煤焦油40份、厨余食用油40份、生物乙醇35份、MTBE15份、辛醇5份、甲缩醛10份、N-苯基-N-仲丁基苯二胺10份、助燃剂5份、抗爆剂8份、稳定剂5份。
作为优选,所述的节能环保型生物燃料包括以下重量份的组分:加氢轻质煤焦油40-50份、厨余食用油30-40份、生物乙醇35-55份、MTBE10-15份、辛醇5-10份、甲缩醛5-10份、N-苯基-N-仲丁基苯二胺10-15份、助燃剂10份、抗爆剂5份、稳定剂3份。
作为优选,所述的节能环保型生物燃料包括以下重量份的组分:加氢轻质煤焦油40-50份、厨余食用油30-40份、生物乙醇35-55份、MTBE10-15份、辛醇5-10份、甲缩醛5-10份、N-苯基-N-仲丁基苯二胺10-15份、助燃剂8份、抗爆剂6份、稳定剂4份。
本发明还公开了上述节能环保型生物燃料的制备方法,具体方案如下。
节能环保型生物燃料的制备方法,包括以下步骤:在常温常压条件下,将加氢轻质煤焦油、厨余食用油、生物乙醇加入配置器中混合均匀,然后加入辛醇、甲缩醛混合均匀,再依次加入MTBE、N-苯基-N-仲丁基苯二胺、助燃剂、抗爆剂、稳定剂混合均匀;然后将上述混好的原料通过防爆离心泵循环混合2-3h,然后静置1h,即得到所述环保型醇基生物燃料。
有益效果
(1)本发明所述的节能环保型生物燃料采用加氢轻质煤焦油、厨余食用油、生物乙醇作为主燃组分,燃烧完全彻底,燃烧热值高,更加环保; MTBE是优良的汽油高辛烷值添加剂和抗爆剂,可以提高燃料的抗爆指数,降低其敏感度,增加安全性;辛醇、甲缩醛作为助溶剂加入,可以使各组分互溶;N-苯基-N-仲丁基苯二胺能够在金属的表面形成保护膜,隔离了腐蚀物质与金属表面的接触,从而可以起到防止燃烧对金属的腐蚀,增强了燃料的抗腐蚀性能;助燃剂的加入,可以大大提高燃料的热值;加入稳定剂可保证燃料在使用过程中的质量稳定;抗爆剂的主要作用是抗爆,可大幅提高燃料的安全性。
(2)本发明所述的节能环保型生物燃料各组分相互配合,燃烧充分彻底、燃烧热值高,燃料热值可达43000kJ/kg,且具有较好的抗腐蚀性能。因此本发明提供的节能环保型生物燃料作为高效、环保的替代燃料具有较大的发展潜力和重要的经济效益、社会价值。本发明所述的节能环保型生物燃料的制备方法,制作工艺简单,不需要加压加温,易于操作,可大规模生产。
具体实施方式
实施例1
一种节能环保型生物燃料,包括以下重量份的组分:
作为优选,所述的节能环保型生物燃料包括以下重量份的组分:加氢轻质煤焦油40份、厨余食用油40份、生物乙醇35份、MTBE15份、辛醇5份、甲缩醛10份、N-苯基-N-仲丁基苯二胺10份、助燃剂5份、抗爆剂8份、稳定剂5份。所述助燃剂为重量比为1:2:3的己醚、异丙醚、甲基叔丁基醚。所述稳定剂为重量比为2:3的二叔丁基对甲酚和异丁胺。所述抗爆剂为甲基环二烯三羰基锰。所述节能环保型生物燃料的热值为42000kJ/kg。
所述节能环保型生物燃料的制备方法,包括以下步骤:在常温常压条件下,将加氢轻质煤焦油、厨余食用油、生物乙醇加入配置器中混合均匀,然后加入辛醇、甲缩醛混合均匀,再依次加入MTBE、N-苯基-N-仲丁基苯二胺、助燃剂、抗爆剂、稳定剂混合均匀;然后将上述混好的原料通过防爆离心泵循环混合2-3h,然后静置1h,即得到所述环保型醇基生物燃料。
实施例2
一种节能环保型生物燃料,包括以下重量份的组分:
加氢轻质煤焦油40-50份、厨余食用油30-40份、生物乙醇35-55份、MTBE10-15份、辛醇5-10份、甲缩醛5-10份、N-苯基-N-仲丁基苯二胺10-15份、助燃剂10份、抗爆剂5份、稳定剂3份。
所述助燃剂为重量比为1:2:3的己醚、异丙醚、甲基叔丁基醚。所述稳定剂为重量比为2:3的二叔丁基对甲酚和异丁胺。所述抗爆剂为甲基环二烯三羰基锰。所述节能环保型生物燃料的热值为41000kJ/kg。
所述节能环保型生物燃料的制备方法,包括以下步骤:在常温常压条件下,将加氢轻质煤焦油、厨余食用油、生物乙醇加入配置器中混合均匀,然后加入辛醇、甲缩醛混合均匀,再依次加入MTBE、N-苯基-N-仲丁基苯二胺、助燃剂、抗爆剂、稳定剂混合均匀;然后将上述混好的原料通过防爆离心泵循环混合2-3h,然后静置1h,即得到所述环保型醇基生物燃料。
实施例3
一种节能环保型生物燃料,包括以下重量份的组分:
加氢轻质煤焦油40-50份、厨余食用油30-40份、生物乙醇35-55份、MTBE10-15份、辛醇5-10份、甲缩醛5-10份、N-苯基-N-仲丁基苯二胺10-15份、助燃剂8份、抗爆剂6份、稳定剂4份。所述助燃剂为重量比为1:2:3的己醚、异丙醚、甲基叔丁基醚。所述稳定剂为重量比为2:3的二叔丁基对甲酚和异丁胺。所述抗爆剂为甲基环二烯三羰基锰。所述节能环保型生物燃料的热值为43000kJ/kg。
所述节能环保型生物燃料的制备方法,包括以下步骤:在常温常压条件下,将加氢轻质煤焦油、厨余食用油、生物乙醇加入配置器中混合均匀,然后加入辛醇、甲缩醛混合均匀,再依次加入MTBE、N-苯基-N-仲丁基苯二胺、助燃剂、抗爆剂、稳定剂混合均匀;然后将上述混好的原料通过防爆离心泵循环混合2-3h,然后静置1h,即得到所述环保型醇基生物燃料。
Claims (8)
1.一种节能环保型生物燃料,其特征在于,包括以下重量份的组分:加氢轻质煤焦油40-50份、厨余食用油30-40份、生物乙醇35-55份、MTBE10-15份、辛醇5-10份、甲缩醛5-10份、N-苯基-N-仲丁基苯二胺10-15份。
2.根据权利要求1所述的节能环保型生物燃料,其特征在于,还包括5-10份助燃剂,所述助燃剂为重量比为1:2:3的己醚、异丙醚、甲基叔丁基醚。
3.根据权利要求2所述的节能环保型生物燃料,其特征在于,还包括3-5份稳定剂,所述稳定剂为重量比为2:3的二叔丁基对甲酚和异丁胺。
4.根据权利要求3所述的节能环保型生物燃料,其特征在于,还包括5-8份抗爆剂,所述抗爆剂为甲基环二烯三羰基锰。
5.根据权利要求4所述的节能环保型生物燃料,其特征在于,包括以下重量份的组分:加氢轻质煤焦油40份、厨余食用油40份、生物乙醇35份、MTBE15份、辛醇5份、甲缩醛10份、N-苯基-N-仲丁基苯二胺10份、助燃剂5份、抗爆剂8份、稳定剂5份。
6.根据权利要求4所述的节能环保型生物燃料,其特征在于,包括以下重量份的组分:加氢轻质煤焦油40-50份、厨余食用油30-40份、生物乙醇35-55份、MTBE10-15份、辛醇5-10份、甲缩醛5-10份、N-苯基-N-仲丁基苯二胺10-15份、助燃剂10份、抗爆剂5份、稳定剂3份。
7.根据权利要求4所述的节能环保型生物燃料,其特征在于,包括以下重量份的组分:加氢轻质煤焦油40-50份、厨余食用油30-40份、生物乙醇35-55份、MTBE10-15份、辛醇5-10份、甲缩醛5-10份、N-苯基-N-仲丁基苯二胺10-15份、助燃剂8份、抗爆剂6份、稳定剂4份。
8.根据权利要求1-7任一所述的节能环保型生物燃料的制备方法,其特征在于,包括以下步骤:在常温常压条件下,将加氢轻质煤焦油、厨余食用油、生物乙醇加入配置器中混合均匀,然后加入辛醇、甲缩醛混合均匀,再依次加入MTBE、N-苯基-N-仲丁基苯二胺、助燃剂、抗爆剂、稳定剂混合均匀;然后将上述混好的原料通过防爆离心泵循环混合2-3h,然后静置1h,即得到所述环保型醇基生物燃料。
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CN108865319A (zh) * | 2018-07-17 | 2018-11-23 | 姚安锦秋核桃果业有限公司 | 一种核桃壳制作的新能源燃料及其制备方法 |
CN111690446A (zh) * | 2020-06-24 | 2020-09-22 | 张兰华 | 一种明火不燃新型能源燃料配方 |
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CN108865319A (zh) * | 2018-07-17 | 2018-11-23 | 姚安锦秋核桃果业有限公司 | 一种核桃壳制作的新能源燃料及其制备方法 |
CN111690446A (zh) * | 2020-06-24 | 2020-09-22 | 张兰华 | 一种明火不燃新型能源燃料配方 |
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