国际标准期刊号: ISSN 2472-0518

石油与天然气研究

开放获取

我们集团组织了 3000 多个全球系列会议 每年在美国、欧洲和美国举办的活动亚洲得到 1000 多个科学协会的支持 并出版了 700+ 开放获取期刊包含超过50000名知名人士、知名科学家担任编委会成员。

开放获取期刊获得更多读者和引用
700 种期刊 15,000,000 名读者 每份期刊 获得 25,000 多名读者

抽象的

Biodiesel: Latest Perspective on Production Technology and Prospects

Yunjan Yang

Since the previous two decades, biodiesel has gained popularity as a possible alternative to fossil diesel. However, one of the primary issues with the industry’s method of producing biodiesel is the inability of homogenous alkali catalysts to be recycled and the waste that is produced as a result of the water washing that follows. Due to their distinctive qualities, including non-volatility, great solubility for a wide range of organic and inorganic compounds, structural tenability, environmental friendliness, and wide liquid temperature range, ionic liquids are one of the finest alternatives to alkali catalysts. However, their use has been constrained by their high viscosity and challenging recovery. To get around these problems, heterogenization of ionic liquids on solid supports has recently been proposed. When it comes to creating sturdy supports with high porosity and specific surface area, nanoporous materials have excelled. The design of ionic liquids deposited on nanoporous materials as catalysts for the manufacture of biodiesel is reviewed in this research. The application of this kind of catalysts for improving reaction conditions was the main focus. Also covered were difficulties and chances for enhancing the entire production process while these catalysts are present. Despite the fact that numerous ionic liquids supported by nanoporous materials produced substantial biodiesel yields, their significantly greater cost in comparison to traditional catalysts remained a considerable obstacle.