首页> 外文期刊>RSC Advances >Influence of process conditions on pretreatment of microalgae for protein extraction and production of biocrude during hydrothermal liquefaction of pretreated Tetraselmis sp
【24h】

Influence of process conditions on pretreatment of microalgae for protein extraction and production of biocrude during hydrothermal liquefaction of pretreated Tetraselmis sp

机译:工艺条件对预处理Tetraselmis sp液化液化过程中微藻蛋白提取和生物粗产物生产的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Direct conversion of microalgae to advanced biofuels with hydrothermal liquefaction (HTL) is an attractive option which has drawn attention in recent years. The presence of heteroatoms in the resultant biocrude, energy input and the process water has been a long-term concern. In this study, the pretreatment of microalgae biomass for protein extraction was conducted prior to HTL for biocrude production. The impact of operating conditions on both the pretreatment and hydrothermal liquefaction steps was investigated. Following HTL using the pretreated algae with an initial solid content of 16% w/w for 30 min at 310 degrees C, the biocrude yield was 65 wt%, which was more than a 50% improvement in yield as compared to HTL of untreated algae under the same reaction conditions. To achieve a similar biocrude yield using the untreated algae required a much higher reaction temperature of 350 degrees C. Using recycled process water as reaction media led to a 25 wt% higher biocrude yield. HTL of pretreated algae led to 32-46% nitrogen reduction in resultant biocrude. The biocrude had a higher heating value (HHV) of 28 MJ kg(-1) to 34 MJ kg(-1). A maximum of 15 wt% protein extract was obtained during pretreatment at 150 degrees C, 20 min. A similar energy input was required in biocrude production from the untreated route and the combined pretreatment and HTL.
机译:通过水热液化(HTL)将微藻直接转化为高级生物燃料是一种有吸引力的选择,近年来受到了关注。长期存在的问题是最终的生物原油,能量输入和工艺用水中是否存在杂原子。在这项研究中,先进行微藻生物质的蛋白质提取预处理,然后再进行HTL进行生物粗品生产。研究了操作条件对预处理和水热液化步骤的影响。在310摄氏度下使用初始固含量为16%w / w的预处理藻类进行HTL 30分钟后,其生物粗品产率为65 wt%,与未经处理的藻类的HTL相比,其产率提高了50%以上在相同的反应条件下为了使用未处理的藻类获得相似的生物粗品产量,需要更高的350℃反应温度。使用循环工艺水作为反应介质导致生物粗品产量提高25 wt%。预处理藻类的HTL导致最终生物粗品中的氮减少32-46%。该生物原油的热值(HHV)为28 MJ kg(-1)至34 MJ kg(-1)。在150摄氏度,20分钟的预处理期间,最多可获得15 wt%的蛋白质提取物。从未经处理的路线以及预处理和HTL的组合生产生物原油需要类似的能量输入。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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