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铁活化过硫酸盐氧化促进剩余污泥脱水性能、干燥行为及产甲烷潜力的机理研究。

Mechanistic insights into promoted dewaterability, drying behaviors and methane-producing potential of waste activated sludge by Fe-activated persulfate oxidation.

机构信息

Shanghai Key Lab for Urban Ecological Processes and Eco-Restoration, School of Ecological and Environmental Sciences, East China Normal University, Shanghai, 200241, PR China; Shanghai Waterway Engineering Design and Consulting Co., Ltd, 200000, Shanghai, PR China.

Shanghai Key Lab for Urban Ecological Processes and Eco-Restoration, School of Ecological and Environmental Sciences, East China Normal University, Shanghai, 200241, PR China.

出版信息

J Environ Manage. 2021 Nov 15;298:113429. doi: 10.1016/j.jenvman.2021.113429. Epub 2021 Aug 3.

Abstract

Sludge management represents a critical challenge because of complex compositions and poor dewaterability. Fe-activated persulfate oxidation (Fe/SO) is an effective, and widely investigated method for enhancing sludge dewatering. However, the potential effects of Fe/SO on sludge drying efficiency, anaerobic biodegradation behaviors and potential recycling of sludge residua are not yet well-known. In this study, a new sludge disposal route (step i: enhanced dewatering via Fe/SO, and step ii: drying-incineration or anaerobic digestion) was proposed and appraised comprehensively. Results showed that Fe/SO oxidation destroyed extracellular polymeric substances, lysed sludge cells and enhanced the dewaterability greatly. Capillary suction time and mechanical filtration time at 2.0/1.6 mmol-Fe/SO/g-VS decreased by 88.0% and 79.6%, respectively. Moreover, 89.8% of micro-pollutants (e.g., methylbenzene, ethylbenzene, p-m-xylene and o-xylene) in sludge were removed. Besides, the pretreatment was able to alter sludge drying behaviors and methane-producing potential. Pretreated sludge exhibited faster drying rate and shorter lag-time for methane production. Incineration residua of dewatered sludge could be re-coupled with SO as the conditioner to enhance sludge dewaterability, thereby reducing the chemical input and disposal cost. This study provides a novel, self-sustainable strategy for sludge management, reutilization and final safe disposal.

摘要

污泥管理是一个极具挑战性的问题,因为其成分复杂且脱水性能差。铁激活过硫酸盐氧化(Fe/SO)是一种有效且广泛研究的增强污泥脱水的方法。然而,Fe/SO 对污泥干燥效率、厌氧生物降解行为以及污泥残渣潜在回收利用的潜在影响尚不清楚。在本研究中,提出并全面评估了一种新的污泥处理途径(步骤 i:通过 Fe/SO 增强脱水,步骤 ii:干燥-焚烧或厌氧消化)。结果表明,Fe/SO 氧化破坏了胞外聚合物,裂解了污泥细胞,大大增强了脱水性能。2.0/1.6 mmol-Fe/SO/g-VS 下的毛细吸水时间和机械过滤时间分别降低了 88.0%和 79.6%。此外,污泥中的 89.8%的微量污染物(如甲基苯、乙基苯、对二甲苯和邻二甲苯)被去除。此外,预处理能够改变污泥的干燥行为和产甲烷潜力。经预处理的污泥表现出更快的干燥速率和更短的产甲烷滞后时间。脱水污泥的焚烧残渣可以与 SO 重新结合作为调理剂,以增强污泥的脱水性能,从而减少化学投入和处理成本。本研究为污泥管理、再利用和最终安全处置提供了一种新颖的、自可持续的策略。

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