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污泥浮选,其在颗粒污泥上流反应器中的成因与控制。

Sludge flotation, its causes and control in granular sludge upflow reactors.

机构信息

Department of Civil and Environmental Engineering, Chinese National Engineering Research Center for Control and Treatment of Heavy Metal Pollution, and Water Technology Center, The Hong Kong University of Science and Technology, Hong Kong, China.

Wastewater Treatment Laboratory, FYT Graduate School, The Hong Kong University of Science and Technology, Guangzhou, China.

出版信息

Appl Microbiol Biotechnol. 2018 Aug;102(15):6383-6392. doi: 10.1007/s00253-018-9131-1. Epub 2018 Jun 3.

Abstract

Sludge flotation is a commonly reported and long-standing issue hindering not only the widespread implementation of upflow anaerobic sludge bed (UASB)-type bioreactors in wastewater treatment but also the development of novel anaerobic/anoxic treatment processes such as anammox, partial denitrification, and biological sulfate reduction. This review attempts to address the instability of UASB-type bioreactors due to sludge flotation. Possible causes of sludge flotation are classified into intrinsic and extrinsic ones. Extrinsic causes include substrate overloading, inappropriate carbon source, overloading of proteins or oils, insufficient reactor mixing, a low temperature, and a low pH. These unfavorable extrinsic conditions can lead to unexpected intrinsic changes in sludge granules, including high gas production, formation of hollow space inside the granules, filamentous bacterial overgrowth, inappropriate production of extracellular polymeric substances, and development of an adhesive granule surface. These intrinsic changes can increase the flotation potential of sludge through reducing the granule density and promoting gas entrapment. To control the sludge flotation problem, both preventive and corrective strategies are summarized. Preventive strategies include maintaining a temperature of 30-35 °C and a pH of 7-9, preventing substrate overloading, providing sufficient nutrients and multiple carbon sources in the influent, applying pre-acidification, and enhancing reactor mixing. If the causes of a sludge flotation incident cannot be identified quickly, corrective strategies including breaking up floating granules and dosing with chemicals such as Fe and surfactants can be applied to suppress the flotation problem.

摘要

污泥浮升是一个常见且长期存在的问题,不仅阻碍了上流式厌氧污泥床(UASB)型生物反应器在废水处理中的广泛应用,也阻碍了新型厌氧/缺氧处理工艺如厌氧氨氧化、部分反硝化和生物硫酸盐还原的发展。本综述试图解决 UASB 型生物反应器因污泥浮升而导致的不稳定问题。污泥浮升的可能原因分为内在原因和外在原因。外在原因包括底物超负荷、不合适的碳源、蛋白质或油脂超负荷、反应器混合不足、温度低和 pH 值低。这些不利的外在条件会导致污泥颗粒发生意想不到的内在变化,包括产气量增加、颗粒内部形成中空空间、丝状菌过度生长、不合适的胞外聚合物产生以及粘性颗粒表面的形成。这些内在变化会通过降低颗粒密度和促进气体夹带来增加污泥的浮升潜力。为了控制污泥浮升问题,总结了预防和纠正策略。预防策略包括保持温度在 30-35°C 和 pH 值在 7-9、防止底物超负荷、在进水口提供充足的营养物质和多种碳源、应用预酸化以及增强反应器混合。如果不能快速确定污泥浮升事件的原因,则可以应用纠正策略,包括打碎浮升颗粒和投加 Fe 和表面活性剂等化学物质来抑制浮升问题。

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