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Characteristics of algal-bacterial aerobic granular sludge treating real wastewater: Effects of algal inoculation and alginate-like exopolymers recovery.

机构信息

Department of Chemical and Environmental Engineering, Malaysia-Japan International Institute of Technology (MJIIT), Universiti Teknologi Malaysia, Jalan Sultan Yahya Petra, 54100, Kuala Lumpur, Malaysia.

Department of Chemical and Environmental Engineering, Malaysia-Japan International Institute of Technology (MJIIT), Universiti Teknologi Malaysia, Jalan Sultan Yahya Petra, 54100, Kuala Lumpur, Malaysia; UTM International, Aras 8, Menara Razak, Jalan Sultan Yahya Petra, 54100, Kuala Lumpur, Malaysia.

出版信息

Chemosphere. 2023 Jul;329:138595. doi: 10.1016/j.chemosphere.2023.138595. Epub 2023 Apr 4.

Abstract

Limited information is available on the characteristics of algal-bacterial aerobic granular sludge (AGS) treating real wastewater, especially on its alginate-like exopolymers (ALE) production. In addition, the effect of target microalgae species inoculation on the system performance has not been fully understood. This study aimed to reveal the effect of microalgae inoculation on the characteristics of algal-bacterial AGS and its ALE production potential. Two photo-sequencing batch reactors (PSBR) were employed, namely R1 with activated sludge and R2 with Tetradesmus sp. and activated sludge being inoculated, respectively. Both reactors were fed with locally sourced municipal wastewater and operated for 90 days. Algal-bacterial AGS were successfully cultivated in both reactors. No significant difference was observed between the performances of R1 and R2, reflecting that the inoculation of target microalgae species may not be crucial for the development of algal-bacterial AGS when treating real wastewater. Both reactors achieved an ALE yield of about 70 mg/g of volatile suspended solids (VSS), indicating that a substantial amount of biopolymer can be recovered from wastewater. Interestingly, boron was detected in all the ALE samples, which might contribute to granulation and interspecies quorum sensing. The enrichment of lipids content in ALE from algal-bacterial AGS treating real wastewater reveals its high resource recovery potential. Overall, the algal-bacterial AGS system is a promising biotechnology for simultaneous municipal wastewater treatment and resource (like ALE) recovery.

摘要

关于利用藻菌好氧颗粒污泥(AGS)处理实际废水的特性方面,信息有限,尤其是关于其类似海藻酸盐的胞外聚合物(ALE)的生产方面。此外,目标微藻接种对系统性能的影响尚未得到充分了解。本研究旨在揭示微藻接种对藻菌 AGS 特性及其 ALE 生产潜力的影响。采用了两个光序批式反应器(PSBR),即分别接种活性污泥的 R1 和接种 Tetradesmus sp. 和活性污泥的 R2。两个反应器均以当地来源的城市废水为进水进行运行,运行时间为 90 天。在两个反应器中均成功培养了藻菌 AGS。R1 和 R2 的性能没有明显差异,这表明在处理实际废水时,接种目标微藻物种对于藻菌 AGS 的发展可能并不关键。两个反应器的 ALE 产率均约为 70mg/g 挥发性悬浮固体(VSS),表明可以从废水中回收大量生物聚合物。有趣的是,所有 ALE 样品中均检测到了硼,这可能有助于颗粒形成和种间群体感应。从藻菌 AGS 处理实际废水的 ALE 中富集的脂质含量表明其具有很高的资源回收潜力。总体而言,藻菌 AGS 系统是一种很有前途的同时处理城市废水和资源(如 ALE)的生物技术。

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