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Effect of organic compounds on dry anaerobic digestion of food and paper industry wastes

机译:有机化合物对食品和造纸工业废弃物厌氧消化的影响

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摘要

Effects of antimicrobial compounds on dry anaerobic digestion (dry-AD) processes were investigated. Four compounds with known inhibition effects on traditional wet digestion, i.e. car-3-ene, hexanal, 1-octanol and phenol were selected and investigated at concentrations of 0.005%, 0.05% and 0.5%. Food waste (FW) and Paper waste (PW) were used as model substrates, all assays were running with the substrate to inoculum ratio of 1:1 (VS basis) corresponding to 15% TS in reactors. Generally, increasing concentrations of inhibitors resulted in decreasing methane yields with a few exceptions; in all these specific cases, long, lag phase periods (60 days) were observed. These adaptation periods made possible for the microbial systems to acclimatize to otherwise not preferred conditions leading to higher methane yields. Comparing the effects of the four different groups, phenols had the highest inhibitory effects, with no methane production at the highest amount added, while the lowest effects were obtained in cases of car-3-ene. Furthermore, the results showed that adding inhibitors up to a certain concentrations can repair the balance in AD process, slowing down the degradation steps, hence making it possible for the methanogens to produce a higher amount of methane. This phenomenon was not observed in case of PW, which is already a slow degradable substrate in its nature.
机译:研究了抗微生物化合物对干燥厌氧消化(干燥AD)过程的影响。选择并在0.005%,0.05%和0.5%的浓度下选择具有已知对传统湿消解的抑制效果的四种具有已知抑制作用的化合物,并在0.005%,0.05%和0.5%的浓度下进行研究。使用食物废物(FW)和纸废物(PW)作为模型底物,所有测定均用基材运行到与反应器中的15%TS相对应的1:1(基于基础)的接种比。通常,增加浓度的抑制剂导致甲烷产量减少一些例外;在所有这些特定的情况下,观察到滞后期(60天)。微生物系统可以使微生物系统适应以其他方式不优选的条件,导致甲烷产率较高。比较四种不同基团的效果,酚具有最高的抑制作用,没有甲烷产生的最高量,而在汽车-3-eNE的情况下获得的最低效果。此外,结果表明,将抑制剂添加到某种浓度可以修复广告过程中的平衡,降低降解步骤,因此使甲烷化能够产生较高量的甲烷。在PW的情况下未观察到这种现象,其在其性质上已经是缓慢可降解的基材。

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