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基于铁的生物炭由废活性污泥衍生而来,可提高用于甲烷生产的合成含盐有机废水的厌氧消化。

Iron-based biochar derived from waste-activated sludge enhances anaerobic digestion of synthetic salty organic wastewater for methane production.

机构信息

College of Environmental Science and Engineering, State Environmental Protection Engineering Center for Pollution Treatment and Control in Textile Industry, Donghua University, Shanghai 201620, China.

College of Environmental Science and Engineering, State Environmental Protection Engineering Center for Pollution Treatment and Control in Textile Industry, Donghua University, Shanghai 201620, China.

出版信息

Bioresour Technol. 2022 Feb;345:126465. doi: 10.1016/j.biortech.2021.126465. Epub 2021 Dec 2.

Abstract

Herein, synthetic iron-based biochar was used in anaerobic digestion of synthetic salty organic wastewater for methane production. The iron-based biochar synthesized at different pyrolysis temperatures improved methane production. An optimal methane production of 551 ± 4.0 mL/L was achieved by adding iron-based biochar prepared at 700℃. The rate of hydrolysis-acidification and methanogenesis was promoted by iron-based biochar as the NaCl concentration was less than 20 g/L. However, the catalytic effect of iron-based biochar on methane production of saline wastewater failed during the NaCl concentration of 40 g/L due to the complete suppression of methanogenesis. Analyzing the methanogenic activity of iron-based biochar modified anerobic systems and characterizing the physical-chemical properties of iron-based biochar demonstrated that the iron oxides and/or zero-valent iron generated on the biochar surface increased methane production. This study highlights the potential benefits of iron-rich sludge-based biochar on enhanced anaerobic digestion and treatment of salty organic wastewater.

摘要

在此,我们使用合成的含铁生物炭来进行合成含盐有机废水的厌氧消化以生产甲烷。在不同热解温度下合成的含铁生物炭可提高甲烷产量。当添加在 700℃下制备的含铁生物炭时,可获得 551±4.0mL/L 的最佳甲烷产量。当 NaCl 浓度小于 20g/L 时,含铁生物炭可促进水解酸化和产甲烷过程。然而,当 NaCl 浓度为 40g/L 时,含铁生物炭对含盐废水产甲烷的催化作用失效,因为这会完全抑制产甲烷作用。分析含铁生物炭改性厌氧系统的产甲烷活性和表征含铁生物炭的物理化学性质表明,生物炭表面生成的铁氧化物和/或零价铁增加了甲烷产量。本研究强调了富含铁的污泥基生物炭在强化厌氧消化和处理含盐有机废水方面的潜在益处。

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