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Impact of trace element supplementation on mesophilic anaerobic digestion of food waste using Fe-rich inoculum

机译:用Fe富含Fe富含Fe富含含量的痕量细胞对食物垃圾嗜嗜酸性厌氧消化的影响

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摘要

Trace elements (TEs) play an indispensable role in enhancing the stability of anaerobic digestion (AD) of food waste (FW). Significant research on AD of FW with TE supplementation has been conducted with low Fe content inoculum. However, the use of Fe-rich inoculum is inevitable due to chemical phosphorous removal from wastewater in North America. We conducted comprehensive mesophilic batch tests to investigate the effect of TEs (Fe, Ni, Co, Se, and Mo) on FW digestion inoculated with Fe-rich sludge (≥?1000?mg Fe?L_(?1)). This paper presents the impact of supplementing various concentrations of TEs on specific methanogenic activity (SMA), maximum specific methane production rate (SMPR~(max)), and apparent hydrolysis rate constant ( K ~(h)). The addition of TEs adversely impacted methanogenic activity by 20 to 58% in the SMA tests. The effects of individual and mixed supplementation of TEs on the SMPR~(max)and K ~(h)during FW digestion were negligible; exceptions include Fe, Mo, and Co. Final soluble TE concentrations were 10–29% of the initial soluble TEs. The high Fe concentration in the inoculum reduces the bioavailable fraction of added TEs via coprecipitation. Contrary with many literature reports indicating the need to supplement TE to improve FW digestion efficiency, with Fe-rich sludges, FW digestion does not require TE supplementation.
机译:微量元素(TES)在提高食物废物(FW)的厌氧消化(AD)的稳定性方面发挥不可或缺的作用。通过低Fe含量接种物进行了对Te补充的FW AD的显着研究。然而,由于北美废水的化学磷去除,使用Fe-富含的接种物是不可避免的。我们进行了综合的培养基批量试验,以研究TES(Fe,Ni,Co,Se,Se和Mo)对富含Fe污泥的FW消化的影响(≥1000μlFeα1_(α1))。本文介绍了补充各种浓度TES对特定甲状腺活性(SMA)的影响,最大特异性甲烷生产率(SMPR〜(MAX))和表观水解率常数(K〜(H))。在SMA试验中,将TE的添加受到20至58%的不利影响。在FW消化期间,个体和混合补充TES对SMPR〜(MAX)和K〜(H)的影响可忽略不计;例外包括Fe,Mo,Co.最终可溶性Te浓度为初始可溶性TES的10-29%。接种物中的高Fe浓度通过共沉淀来减少添加的TES的生物可利用部分。与许多文献报告相反,表明需要补充TE以提高FW消化效率,用FE丰富的污泥,FW消化不需要补充。

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