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首页> 外文期刊>Environmental Technology >Urban wastewater photobiotreatment with microalgae in a continuously operated photobioreactor: growth, nutrient removal kinetics and biomass coagulation-flocculation
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Urban wastewater photobiotreatment with microalgae in a continuously operated photobioreactor: growth, nutrient removal kinetics and biomass coagulation-flocculation

机译:在连续运行的光生物反应器中用微藻对城市废水进行光生物处理:生长,营养去除动力学和生物质凝结絮凝

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摘要

The aim of this study was to investigate the growth, nutrient removal and harvesting of a natural microalgae bloom cultivated in urban wastewater in a bubble column photobioreactor. Batch and continuous mode experiments were carried out with and without pH control by means of CO2 dosage. Four coagulants (aluminium sulphate, ferric sulphate, ferric chloride and polyaluminium chloride (PAC)) and five flocculants (Chemifloc CM/25, FO 4498SH, cationic polymers Zetag (Z8165, Z7550 and Z8160)) were tested to determine the optimal dosage to reach 90% of biomass recovery. The maximum volumetric productivity obtained was 0.11gSSL(-1)d(-1) during the continuous mode. Results indicated that the removal of total dissolved nitrogen and total dissolved phosphorous under continuous operation were greater than 99%. PAC, Fe-2(SO4)(3) and Al-2(SO4)(3) were the best options from an economical point of view for microalgae harvesting.
机译:这项研究的目的是研究气泡塔光生物反应器中城市废水中种植的天然微藻水华的生长​​,营养去除和收获。在有和没有pH值控制的情况下,通过CO2剂量进行分批和连续模式实验。测试了四种凝结剂(硫酸铝,硫酸铁,氯化铁和聚氯化铝(PAC))和五种絮凝剂(Chemifloc CM / 25,FO 4498SH,阳离子聚合物Zetag(Z8165,Z7550和Z8160)),以确定达到的最佳剂量90%的生物质回收率。在连续模式下,获得的最大体积生产率为0.11gSSL(-1)d(-1)。结果表明,连续运行下总溶解氮和总溶解磷的去除率大于99%。从经济角度出发,PAC,Fe-2(SO4)(3)和Al-2(SO4)(3)是收获微藻的最佳选择。

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