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首页> 外文期刊>Bioprocess and Biosystems Engineering >Comparison of Chlorella vulgaris and cyanobacterial biomass: cultivation in urban wastewater and methane production
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Comparison of Chlorella vulgaris and cyanobacterial biomass: cultivation in urban wastewater and methane production

机译:小球藻和蓝藻生物质的比较:城市废水中的耕种和甲烷生产

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摘要

Anaerobic digestion of microalgae is hampered by its complex cell wall. Against this background, cyanobacteria cell walls render this biomass as an ideal substrate for overcoming this drawback. The aim of the present study was to compare the growth of two cyanobacteria (Aphanizomenon ovalisporum and Anabaena planctonica) and a microalga (Chlorella vulgaris) in urban wastewater when varying the temperature (22, 27 and 32 degrees C). Cyanobacterial optimal growth for both strains was attained at 22 A degrees C, while C. vulgaris did not show remarkable differences among temperatures. For all the microorganisms, ammonium removal was higher than phosphate. Biomass collected was subjected to anaerobic digestion. Methane yield of C. vulgaris was 184.8 mL CH4 g COD in(-1) while with A. ovalisporum and A. planctonica the methane production was 1.2- and 1.4-fold higher. This study showed that cyanobacteria growth rates could be comparable to microalgae while presenting the additional benefit of an increased anaerobic digestibility.
机译:微藻的厌氧消化被其复杂的细胞壁所阻碍。在这种背景下,蓝细菌细胞壁使该生物质成为克服该缺点的理想底物。本研究的目的是在温度(22、27和32摄氏度)变化时,比较城市污水中两种蓝藻细菌(卵圆隐孢子虫和扁平藻)和微藻(小球藻)的生长。两种菌株的蓝藻菌最佳生长均在22 A的温度下实现,而普通梭菌在温度之间没有显示出明显的差异。对于所有微生物,铵的去除率均高于磷酸盐。收集的生物质经过厌氧消化。在(-1)中寻常型梭状芽胞杆菌的甲烷产量为184.8 mL CH4 g COD,而椭圆形孢菌和扁平苔藓的甲烷产量分别高1.2倍和1.4倍。这项研究表明,蓝藻的生长速率可以与微藻媲美,同时还具有增加厌氧消化率的优势。

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