首页> 外文期刊>Separation and Purification Technology >A cost-effective strategy for marine microalgae separation by electro-coagulation-flotation process aimed at bio-crude oil production: Optimization and evaluation study
【24h】

A cost-effective strategy for marine microalgae separation by electro-coagulation-flotation process aimed at bio-crude oil production: Optimization and evaluation study

机译:针对生物粗制油的电凝-浮选工艺分离海洋微藻的经济有效策略:优化和评估研究

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

Microalgae as the third generation of biomass sources for biofuel production has a promising future, but its economic challenges have not been resolved yet. One of the major challenges in order to practical implementation of biofuel production is separation of microalgae from culture medium, since this step devotes a significant part of the energy and time consumption. Although various methods have been reported for harvesting, electro-coagulation-flotation (EC) method was preferred due to the simplicity and capability of process scale up. In this study, the effect of three parameters, i.e., initial pH, electric current density and duration on microalgae separation efficiency and operating costs, as the response variables, was investigated by applying "Response Surface Methodology" (RSM) technique. It was revealed that duration was the most effective parameter on the microalgae separation efficiency, as well as the operational costs, wherein high efficiency was resulted in long duration. On the other hand, the high amount of electric current density caused to high coagulation, flotation rates, and also high power consumption. Although the pH of solution had a little impact on operating cost compared to the duration and current density, the natural condition, pH = 6, was recommended. In optimal point; current density = 1.6 mA/cm(2) for 17.65 mm, deprived of demanding to adjust pH, the microalgae separation efficiency was obtained 96.8%. Since the EC is a substitute for CC (chemical coagulation), its performance was evaluated on microalgae separation efficiency. The results demonstrated that the optimal coagulant concentration and pH was 450 mg/l and 8 respectively. At the optimal conditions, microalgae separation efficiency was resulted in 85%. Consequently, due to less sensitivity to pH changes, more flexibility and lower cost, the EC was introduced as a more efficient technology than CC Technology. All of these benefits recommend this method as the promising technique of microalgae harvesting in large-scale. (C) 2015 Elsevier B.V. All rights reserved.
机译:微藻作为用于生产生物燃料的第三代生物质来源具有广阔的前景,但其经济挑战尚未解决。实际实施生物燃料生产的主要挑战之一是将微藻类从培养基中分离出来,因为该步骤耗费了大量能源和时间。尽管已报道了各种收获方法,但由于工艺简单易行且能够按比例放大,因此首选电凝浮选(EC)方法。在该研究中,通过使用“响应表面方法”(RSM)技术研究了三个参数即初始pH,电流密度和持续时间对微藻分离效率和操作成本的影响,作为响应变量。结果表明,持续时间是影响微藻分离效率和运营成本的最有效参数,高效率导致持续时间长。另一方面,高电流密度导致高凝结,浮选速率以及高功率消耗。尽管与持续时间和电流密度相比,溶液的pH值对运行成本的影响很小,但建议使用自然条件,pH = 6。在最佳点电流密度= 1.6 mA / cm(2)for 17.65 mm,无需调节pH值,微藻分离效率为96.8%。由于EC可以替代CC(化学混凝),因此可以根据微藻分离效率评估其性能。结果表明,最佳混凝剂浓度和pH分别为450 mg / l和8。在最佳条件下,微藻的分离效率为85%。因此,由于对pH变化的敏感性较低,灵活性更大,成本更低,因此EC引入的技术比CC Technology更为有效。所有这些好处都建议将此方法作为大规模收获微藻的有前途的技术。 (C)2015 Elsevier B.V.保留所有权利。

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