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用于改善处理畜禽废水混合营养代谢的最佳温度和光照强度

Optimal Temperature and Light Intensity for Improved Mixotrophic Metabolism of Treating Livestock Wastewater.

作者信息

Lee Tae-Hun, Jang Jae Kyung, Kim Hyun-Woo

机构信息

Department of Environmental Engineering and Soil Environment Research Center, Chonbuk National University, Jeonju 54896, Republic of Korea.

Energy and Environmental Engineering Division, National Institute of Agricultural Science, Rural Development Administration, Jeonju 54875, Republic of Korea.

出版信息

J Microbiol Biotechnol. 2017 Nov 28;27(11):2010-2018. doi: 10.4014/jmb.1707.07007.

Abstract

Mixotrophic microalgal growth gives a great premise for wastewater treatment based on photoautotrophic nutrient utilization and heterotrophic organic removal while producing renewable biomass. There remains a need for a control strategy to enrich them in a photobioreactor. This study performed a series of batch experiments using a mixotroph, , to characterize optimal guidelines of mixotrophic growth based on a statistical design of the experiment. Using a central composite design, this study evaluated how temperature and light irradiance are associated with CO capture and organic carbon respiration through biomass production and ammonia removal kinetics. By conducting regressions on the experimental data, response surfaces were created to suggest proper ranges of temperature and light irradiance that mixotrophs can beneficially use as two types of energy sources. The results identified that efficient mixotrophic metabolism of for organics and inorganics occurs at the temperature of 30-40°C and diurnal light condition of 150-200 μmol E·m·s. The optimal specific growth rate and ammonia removal rate were recorded as 0.51/d and 0.56/h on average, respectively, and the confirmation test verified that the organic removal rate was 105 mg COD·l·d. These results support the development of a viable option for sustainable treatment and effluent quality management of problematic livestock wastewater.

摘要

混合营养微藻生长为基于光自养营养物利用和异养有机物去除同时产生可再生生物质的废水处理提供了一个很好的前提。仍然需要一种控制策略来在光生物反应器中富集它们。本研究使用一种混合营养生物进行了一系列批次实验,以基于实验的统计设计来表征混合营养生长的最佳准则。使用中心复合设计,本研究评估了温度和光照强度如何通过生物质生产和氨去除动力学与二氧化碳捕获和有机碳呼吸相关联。通过对实验数据进行回归分析,创建了响应面,以建议混合营养生物可以有益地用作两种能源的温度和光照强度的适当范围。结果表明,该混合营养生物对有机物和无机物的高效混合营养代谢发生在30-40°C的温度和150-200 μmol E·m·s的昼夜光照条件下。最佳比生长速率和氨去除速率平均分别记录为0.51/d和0.56/h,验证试验证实有机去除率为105 mg COD·l·d。这些结果支持为有问题的畜牧废水的可持续处理和出水质量管理开发一种可行的选择。

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