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Co-digestion of kitchen waste and fruit-vegetable waste by two-phase anaerobic digestion

机译:两相厌氧消化共同消化厨房废物和水果蔬菜废物

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The high salinity and fat contents of kitchen waste (KW) inhibits the effect of two-phase anaerobic digestion system. This research introduces fruit-vegetable Waste (FVW) to alleviate the inhibition effect caused by salinity and fat concentrations, and tries to achieve an optimal addition ratio of FVW, an optimal hydraulic remain time (HRT) of acidogenic-phase reactor and methanogenic-phase reactor. A two-phase anaerobic digestion (AD) system was developed to co-dispose KW and FVW. Four sets of experiments were run with different mass proportions between KW and FVW (25-75, 50-50, 75-25, and 100-0 %m/m). Considering the bio-degradation rate and the acidification degree, the system with 25 % KW had the best performance during the acidogenic phase. When the system was run with 50 % KW, it not only had the best stability performance but also had a bigger capacity to treat KW than the system with 25 % KW. The system with 50 % KW was the best ratio in this two-phase AD system. Co-digestion of KW and FVW by two-phase AD is feasible. The addition of FVW can reduce the inhibition effect caused by salinity and fat concentrations, reduce the HRT, and lead to a higher degree of acidification.
机译:厨房废物(KW)的高盐分和脂肪含量抑制了两相厌氧消化系统的作用。本研究通过引入果蔬废料(FVW)来减轻盐分和脂肪浓度引起的抑制作用,力求达到最佳的FVW添加比例,产酸相反应器和产甲烷相的最佳水力停留时间(HRT)。反应堆。开发了两相厌氧消化(AD)系统来共同处理KW和FVW。在KW和FVW之间以不同的质量比例(25-75、50-50、75-25和100-0%m / m)进行了四组实验。考虑到生物降解率和酸化程度,具有25%KW的系统在产酸阶段的性能最佳。当系统以50%KW运行时,与具有25%KW的系统相比,它不仅具有最佳的稳定性能,而且具有更大的处理KW的能力。在此两相AD系统中,具有50%KW的系统是最佳比率。通过两相AD共消化KW和FVW是可行的。 FVW的添加可以降低由盐度和脂肪浓度引起的抑制作用,降低HRT,并导致更高的酸化程度。

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