首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Performance of purifying anaerobic fermentation slurry using microalgae in response to various LED light wavelengths and intensities
【24h】

Performance of purifying anaerobic fermentation slurry using microalgae in response to various LED light wavelengths and intensities

机译:响应各种LED光波长和强度,使用微藻纯化厌氧发酵浆的性能

获取原文
获取原文并翻译 | 示例
           

摘要

Anaerobic fermentation slurry (AFS) is a type of high-pollution load wastewater that can cause water eutrophication and algal blooms. The current study focused on the response of microalgae nutrient removal efficiency to various light-emitting diode light wavelengths and intensities. RESULTS: The microalgae Chlorella vulgaris was able to remove nutrients from AFS effectively. Furthermore, only moderate light intensities (800, 1300, 1800, and 2300μmolm~(-2)s~(-1)) were required to culture C. vulgaris and induce nutrient removal. Exposure to higher light intensities produced greater dry weight (DW) biomass and achieved higher nutrient removal efficiencies. The order of light wavelengths based on the DW biomass yield of C. vulgaris was red>white>yellow>blue. The order of light wavelengths, according to the nutrient removal efficiencies reached by C. vulgaris, was red>white>yellow>blue. Red light was also the light wavelength with the best economic efficiency for nutrient removal. CONCLUSION: In this study, red light was used as the optimum light wavelength. Furthermore, the optimum light intensity range was from 1300 to 1800μmolm~(-2)s~(-1) when both nutrient removal and economic efficiencies were considered. Moreover, the optimum treatment time was determined to be 120h.
机译:厌氧发酵浆(AFS)是一种高污染负荷废水,可引起水体富营养化和藻华。当前的研究集中在微藻营养物去除效率对各种发光二极管光波长和强度的响应上。结果:微藻小球藻能够有效地从AFS中去除营养。此外,仅需要适度的光照强度(800、1300、1800和2300μmolm〜(-2)s〜(-1))即可培养寻常梭菌并诱导营养去除。暴露在较高的光照强度下会产生更大的干重(DW)生物量,并实现更高的养分去除效率。基于寻常小球藻DW生物量产量的光波长顺序为红色>白色>黄色>蓝色。根据寻常小球藻达到的养分去除效率,光波长的顺序为红色>白色>黄色>蓝色。红光也是去除营养物具有最佳经济效率的光波长。结论:在这项研究中,红光被用作最佳光波长。同时考虑营养去除和经济效益,最佳光照强度范围为1300〜1800μmolm〜(-2)s〜(-1)。此外,最佳治疗时间被确定为120h。

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