首页> 外文期刊>American Journal of Plant Sciences >Culturing of Autoflocculating Microalgal Consortium in Continuous Raceway Pond Reactor
【24h】

Culturing of Autoflocculating Microalgal Consortium in Continuous Raceway Pond Reactor

机译:连续水道池反应器中自絮凝微藻财团的培养

获取原文
       

摘要

The goal of this study was to develop a self-settling microalgal consortium in raceway pond reactor (RPR). Experiments were carried out with cultures that developed without additional seeding, but naturally promoted by process conditions in a raceway pond reactor. The changes in microalgal communities and total biomass under nitrogen and phosphorous limitations were studied in both batch and continuous systems. At the steady state batch had the population of 46% Euglena sp., 16% Closterium sp., 14% Chlorella sp., 14% Scenedesmus sp. and 10% Ankistrodesmus sp. with a maximum biomass of 900 mg/L. In order to get self-settling microalgal consortium, the operation was changed to continuous continuous mode with the aid of a specially designed settler for daily harvest and recycling of the biomass. Grazing fauna could be controlled by managing reduced liquid and solid retention time. At steady-state condition, an autofloculating and self-settling consortium was developed which had mainly Fragilaria sp., Scenedesmus sp., and filamentous Ulothrix sp. The maximum biomass concentration obtained was 140 mg/L. The presence of neutral lipid droplets in the consortium was identified by staining with Nile Red. Development of the lipid rich consortium could be a suitable method for producing biofuel.
机译:这项研究的目的是在水道池反应器(RPR)中建立一个自沉降微藻联合体。实验是在没有额外接种的情况下培养出来的,但是通过在跑道池反应器中的工艺条件自然促进了培养。在分批和连续系统中,研究了氮和磷限制下微藻群落和总生物量的变化。在稳态状态下,种群的种群为46%的Euglena sp。,16%的Closterium sp。,14%的Chlorella sp。,14%的Scenedesmus sp.。和10%的Ankistrodesmus sp。最大生物量为900 mg / L。为了获得自沉降的微藻类财团,借助专门设计的沉降器,每天进行生物质的回收和再循环,将操作更改为连续连续模式。放牧动物可以通过减少液体和固体的滞留时间来控制。在稳态条件下,建立了一个自絮凝和自沉降的财团,该财团主要有Fragilaria sp。,Scenedesmus sp。和丝状Ulothrix sp.。获得的最大生物质浓度为140 mg / L。通过用尼罗红染色鉴定了财团中中性脂滴的存在。开发富含脂质的财团可能是生产生物燃料的合适方法。

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