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Enhanced Anaerobic Performances of Kitchen Wastes in a Semi-Continuous Reactor by EDTA Improving the Water-Soluble Fraction of Fe

机译:通过EDTA改善Fe的水溶性分数,在半连续反应器中增强了厨房废物的Anaerobic表演

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摘要

The addition of Fe2+ is considered an effective method for increasing methane production, but the added Fe2+ may not be absorbed by anaerobic microorganisms due to complex chemical reactions. In this study, ethylenediaminetetraacetic acid (EDTA) was used as a ligand of Fe2+ (EDTA-Fe) to promote the dissolution of Fe, and the anaerobic performances of kitchen wastes (KWs) in a semi-continuous reactor were studied. The results indicated that the biogas yields and methane contents were enhanced to 594−613 mL·g−1VSadd·d−1 and 63.6−64.4% at an organic loading rate (OLR) of 2.5 gVSadd·L−1·d−1 due to EDTA-Fe addition. Simultaneously, the EDTA-Fe was more effective than Fe2+ in preventing the acidification of KWs with a high OLR (5.0 gVSadd·L−1·d−1). In addition, the sequential extraction results showed that the water-soluble fraction of Fe in the R3 (EDTA-Fe addition) was 1.49-fold of that in the R2 with Fe2+ addition. The contents of coenzymes F420 and F430 were also improved 1.09 and 1.11 times, respectively. Mechanism analysis confirmed that the EDTA enhanced methane production and operational stability by promoting the dissolution of Fe and maintaining a high content of water-soluble Fe.
机译:添加Fe2 +被认为是增加甲烷生产的有效方法,但由于复杂的化学反应,添加的Fe2 +可能不会被厌氧微生物吸收。在该研究中,使用乙二胺四乙酸(EDTA)作为Fe2 +(EDTA-Fe)的配体,以促进Fe的溶解,并研究了厨房废物(KWS)的厌氧性能。结果表明,在2.5 GVSADD·L-1·D-1的有机加载速率(OLR),沼气产量和甲烷含量增强至594-613ml·G-1Vsadd·D-1和63.6-64.4%到EDTA-FE添加。同时,EDTA-Fe比Fe2 +更有效,防止用高OLR酸化KW(5.0GVSADD·L-1·D-1)。此外,序贯提取结果表明,R3(EDTA-Fe添加)中的Fe的水溶性分数为1.49倍,在R 2中用Fe2 +加入。辅酶F420和F430的含量也分别提高1.09和1.11倍。机制分析证实,EDTA通过促进Fe的溶解并保持高含量的水溶性Fe,增强了甲烷的产生和操作稳定性。

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