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污泥预处理方法用于先进厌氧消化的能量可行性和生命周期评估。

Energy feasibility and life cycle assessment of sludge pretreatment methods for advanced anaerobic digestion.

机构信息

Department of Civil Engineering, Indian Institute of Technology Roorkee 247667, India.

Department of Hydro and Renewable Energy, Indian Institute of Technology Roorkee 247667, India.

出版信息

Bioresour Technol. 2022 Aug;357:127345. doi: 10.1016/j.biortech.2022.127345. Epub 2022 May 21.

Abstract

Energy sustainability is one of the critical parameters to be studied for the successful application of pretreatment processes. This study critically analyzes the energy efficiency of different energy-demanding sludge pretreatment techniques. Conventional thermal pretreatment of sludge (∼5% total solids, TS) produced 244 mL CH/gTS, which could result in a positive energy balance of 2.6 kJ/kg TS. However, microwave pretreatment could generate only 178 mL CH/gTS with a negative energy balance of -15.62 kJ/kg TS. In CAMBI process, the heat requirements can be compensated using exhaust gases and hot water from combined heat and power, and electricity requirements are managed by the use of cogeneration. The study concluded that <100 ℃ pretreatment effectively enhances the efficiency of anaerobic digestion and shows positive energy balance over microwave and ultrasonication. Moreover, microwave pretreatment has the highest global warming potential than thermal and ultrasonic pretreatments.

摘要

能源可持续性是预处理过程成功应用需要研究的关键参数之一。本研究对不同能耗污泥预处理技术的能源效率进行了严格分析。常规的污泥热预处理(总固体含量约为 5%,TS)产生 244 毫升 CH/gTS,可使 TS 的正能量平衡达到 2.6 千焦/千克。然而,微波预处理只能产生 178 毫升 CH/gTS,能量平衡为负-15.62 千焦/千克 TS。在 CAMBI 工艺中,可以使用热电联产产生的废气和热水来补偿热能需求,并且通过热电联产来管理电力需求。研究得出结论,<100℃的预处理可有效提高厌氧消化的效率,并在微波和超声处理方面表现出正的能量平衡。此外,微波预处理的全球变暖潜能比热和超声预处理更高。

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