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解析基于海藻酸钠的可生物降解絮凝剂在废活性污泥厌氧发酵中的双重作用:脱水性能和降解性能。

Deciphering the Dual Roles of an Alginate-Based Biodegradable Flocculant in Anaerobic Fermentation of Waste Activated Sludge: Dewaterability and Degradability.

机构信息

Center of Wastewater Resource Recovery, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, China.

出版信息

Environ Sci Technol. 2024 Aug 13;58(32):14282-14292. doi: 10.1021/acs.est.4c05971. Epub 2024 Jul 31.

DOI:10.1021/acs.est.4c05971
PMID:39083369
Abstract

Biodegradable flocculants are rarely used in waste activated sludge (WAS) fermentation. This study introduces an alginate-based biodegradable flocculant (ABF) to enhance both the dewatering and degradation of WAS during its fermentation. Alginate was identified in structural extracellular polymeric substances (St-EPS) of WAS, with alginate-producing bacteria comprising ∼4.2% of the total bacterial population in WAS. Owing to its larger floc size, higher contact angle, and lower free energy resulting from the Lewis acid-base interaction, the addition of the prepared ABF with a network structure significantly improved the dewaterability of WAS and reduced capillary suction time (CST) by 72%. The utilization of ABF by an enriched alginate-degrading consortium (ADC) resulted in a 35.5% increase in the WAS methane yield owing to its higher hydrolytic activity on both ABF and St-EPS. Additionally, after a 30 day fermentation, CST decreased by 62% owing to the enhanced degradation of St-EPS (74.4%) and lower viscosity in the WAS + ABF + ADC group. The genus , comprising 12% of ADC, used alginate lyase (EC 4.2.2.3) and pectate lyase (EC 4.2.2.2 and EC 4.2.2.9) to degrade alginate and polygalacturonate in St-EPS, respectively. Therefore, this study introduces a new flocculant and elucidates its dual roles in enhancing both the dewaterability and degradability of WAS. These advancements improve WAS fermentation, resulting in higher methane production and lower CSTs.

摘要

可生物降解的絮凝剂在废活性污泥(WAS)发酵中很少使用。本研究引入了一种基于海藻酸盐的可生物降解絮凝剂(ABF),以增强 WAS 在发酵过程中的脱水和降解。海藻酸盐在 WAS 的结构细胞外聚合物物质(St-EPS)中被鉴定出来,在 WAS 中的总细菌种群中,产海藻酸盐的细菌约占 4.2%。由于其较大的絮体尺寸、较高的接触角和较低的自由能,源于路易斯酸碱相互作用,具有网络结构的所制备 ABF 的添加显著改善了 WAS 的脱水性能,使毛细吸水时间(CST)降低了 72%。由于 ABF 和 St-EPS 的水解活性更高,富集的海藻酸盐降解联合体(ADC)对 ABF 的利用使 WAS 的甲烷产量增加了 35.5%。此外,经过 30 天的发酵,由于 St-EPS 的降解增强(74.4%)和 WAS+ABF+ADC 组中较低的粘度,CST 降低了 62%。属,占 ADC 的 12%,使用海藻酸盐裂解酶(EC 4.2.2.3)和果胶裂解酶(EC 4.2.2.2 和 EC 4.2.2.9)分别降解 St-EPS 中的海藻酸盐和聚半乳糖醛酸。因此,本研究引入了一种新的絮凝剂,并阐明了其在增强 WAS 的脱水和降解性能方面的双重作用。这些进展改善了 WAS 发酵,提高了甲烷产量并降低了 CSTs。

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