首页> 外文期刊>Biomass & bioenergy >Process simulation and techno-economic assessment of Salicornia sp. based jet fuel refinery through Hermetia illucens sugars-to-lipids conversion and HEFA route
【24h】

Process simulation and techno-economic assessment of Salicornia sp. based jet fuel refinery through Hermetia illucens sugars-to-lipids conversion and HEFA route

机译:Salicornia sp的过程模拟与技术经济评估。 基于JET燃料炼油厂通过Hermetia患病糖衣糖 - 对脂质转换和HEFA路线

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Succulent halophyte Salicornia sp. was characterized to evaluate its suitability for biorefinery, as soil salin-ization is seen as a major agricultural issue and the demand for biofuel is increasing. Green fractionation of biomass approach was chosen, with liquid and solid fractions of the biomass considered separately. Soxhlet extractions were used to separate different biochemical groups from the pulp, and the lignocellulosic residue was hydrothermally pretreated, enzymatically hydrolyzed, mixed with an existing agricultural feedstock, and fed to black soldier fly larvae (BSFL) for sugars-to-lipids conversion. The ASTM approved route of hydroprocessed esters and fatty acids (HEFA) was applied using in silico study of processing BSFL lipids to sustainable jet fuel, using SuperPro Designer and Aspen HYSYS. Simulations and techno-economic assessment showed, with the applied process routes, inputs and production rates, the biorefinery process will be profitable in 7 years, with a biomass input flow rate of over 60 ton h~(-1) Salicomia sp. with decreasing payback time as the biomass input flow rate increases. Therefore, Salicomia sp. feedstock and sugars-to-lipids conversion method for biorefinery and liquid fuel production can function as a feasible biorefinery process with a normalized CO_2-e reduction of HEFA-SPK of 95.5% compared to similar fossil fuels.
机译:多汁嗜睡salicornia sp。由于土壤盐素 - 释放因子被视为一个重大的农业问题,生物燃料的需求增加,其特征是评估其生物遗产的适用性,因为生物燃料的需求正在增加。选择生物质方法的绿色分馏,用分别考虑的生物质的液体和固体部分。 Soxhlet萃取用于将不同的生物化学基团与纸浆分离,并且木质纤维素残留物水热预处理,酶促水解,与现有的农用原料混合,并喂给黑士兵飞幼虫(BSFL)用于糖 - 脂质转化。使用Superpro Designer和Aspen Hysys,在Silico研究中使用Simerco研究,使用Superpro Designer和Aspen Hysys来应用加工BSFL脂质的Silico研究。模拟和技术经济评估显示,随着应用的流程路线,投入和生产率,生物熟练工程将在7年内有利可图,生物质输入流量超过60吨〜(-1)Salicomia SP。随着生物质输入流量的增加,减少投资回收时间。因此,Salicomomia sp。用于生物料理和液体燃料生产的原料和糖 - 脂质转化方法可以作为可行的生物灌注过程,与相似的化石燃料相比,95.5%的HEFA-SPK的归一化CO_2-E减少。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号