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水力停留时间和碳负荷率对藻类产生的影响。

Influence of hydraulic retention time and carbon loading rate on the production of algae.

机构信息

Department of Chemical Engineering, Faculty of Chemical Sciences & Technologies, Universidad de Castilla La Mancha, Campus Universitario s/n, 13071 Ciudad Real, Spain.

Department of Chemical Engineering, Faculty of Chemical Sciences & Technologies, Universidad de Castilla La Mancha, Campus Universitario s/n, 13071 Ciudad Real, Spain.

出版信息

J Biotechnol. 2018 Sep 20;282:70-79. doi: 10.1016/j.jbiotec.2018.07.012. Epub 2018 Jul 7.

Abstract

This paper is focused on the assessment of the production of algae in batch bioreactors. Hydraulic retention time, carbon loading rate and light color were the inputs of the study and algae production the main output. Bioreactors were operated in semi-continuous mode and tests lasted two months, more than two times the period required to meet a steady-state response. This steady-state was verified with plateau responses in both, soluble parameters and suspended solids. Results points out the great relevance of temperature. Likewise, they show that green light improves the production of algae, as well as long HRT and high CLR. Maximum production rates attained were in the range 4-14 mg d L. The ratio COD /TSS for this biofuel was almost constant (3.13 mg COD mg TSS) but the quality of the product obtained in terms of the Mean Oxidation State of Carbon is completely different. Longer HRT leads to lower MOSC and hence to potentially more valuable fuels.

摘要

本文专注于评估批量生物反应器中的藻类生产。水力停留时间、碳加载率和光色是研究的输入,而藻类生产是主要输出。生物反应器以半连续模式运行,测试持续了两个月,超过了达到稳定响应所需的时间的两倍。通过可溶性参数和悬浮固体的稳定响应来验证这种稳定状态。结果表明温度非常重要。同样,它们表明绿光可以提高藻类的产量,以及长水力停留时间和高碳加载率。达到的最大产量范围在 4-14mgdL之间。对于这种生物燃料,COD/TSS 比值几乎保持不变(3.13mgCODmgTSS),但就获得的产品的碳平均氧化态而言,情况完全不同。较长的水力停留时间会导致 MOSC 降低,从而产生更有价值的燃料。

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