化学
硫化物
废水
无氧运动
沼气
磷酸盐
铁质
污水处理
厌氧消化
碳酸盐
零价铁
制浆造纸工业
废物管理
化学需氧量
鸟粪石
核化学
废物处理
环境化学
环境科学
工业废水处理
无机化学
硫酸盐还原菌
营养物
能量回收
作者
Ruoyao Yuan,Zhetai Hu,Tao Liu,Min Zheng,Damien J. Batstone,Ruoyao Yuan,Zhetai Hu,Tao Liu,Min Zheng,Damien J. Batstone
标识
DOI:10.1021/acs.est.5c08116
摘要
Mainstream anaerobic wastewater treatment offers major benefits in energy efficiency and energy recovery but faces challenges with limited nutrient removal and low biogas quality, especially due to sulfides that pose safety and corrosion risks. The in situ production and use of ferrous carbonate (FeCO3) emerge as a promising strategy to boost anaerobic treatment by removing sulfides and phosphates while upgrading biogas. Although earlier work has shown that FeCO3 can be generated electrochemically using CO2 from biogas, its impact on anaerobic treatment has not been well-studied. In this study, FeCO3 was dosed into an upflow anaerobic sludge blanket (UASB) reactor at 40, 60, and 100 mg of Fe/L, compared to a control reactor. Dissolved sulfide levels were reduced by over 97%, and H2S was effectively controlled to 100 ppmv at all doses (from 1000 ppmv in the control), with stronger reduction at higher doses. Phosphate removal was also significant, with the highest dose lowering phosphate from 5.0 to 2.5 mg of P/L. X-ray diffraction analysis confirmed that sulfide and phosphate were mainly retained as FeS and Fe3(PO4)2 in the sludge, respectively, offering recovery potential. Additionally, FeCO3 enhanced organic capture, highlighting the FeCO3-loop as a sustainable route to improve the anaerobic wastewater treatment.
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