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High-load anaerobic co-digestion of cheese whey and liquid fraction of dairy manure in a one-stage UASB process: limits in co-substrates ratio and organic loading rate

机译:一阶段UASB工艺中的高负荷厌氧消化干酪乳清和乳化粪便的液体部分:共底物比例和有机负载率的限制

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摘要

Cheese whey is considered an important pollutant in dairy wastewaters and an environmental problem to solve. This study aimed to develop a treatment process that combines the advantages of co-digesting cheese whey with manure and the short hydraulic retention time of a high-load anaerobic treatment system by using liquid fractions of dairy manure as a co-substrate. The proposed co-digestion process consists of a one-stage UASB reactor with an external settler and effluent recycling for alkalinity supplementation. Under a constant hydraulic retention time of 2.2 days and increasing proportion of cheese whey in the feed, the system demonstrated stable operation up to a 75% cheese whey fraction in the feed, with an applied organic loading rate of 19.4 kg COD m−3 d−1, obtaining a 94.7% COD removal and a volumetric methane production rate of 6.4 m3 CH4 m−3 d−1. Critical biomass washout was experienced when the cheese whey fraction in the feed was 85%. Operation at a constant 60% cheese whey fraction in the feed mixture enabled stable operation under an organic loading rate of 28.7 kg COD m−3 d−1 and 1.3 days HRT, with 95.1% COD removal and a volumetric methane production rate of 9.5 m3 CH4 m−3 d−1. This new high-load co-digestion method proposed is a promising solution for areas where cheese factories and intensive livestock farming are responsible for environmental pollution caused by unsuitable cheese whey and manure management practices.
机译:奶酪乳清被认为是乳制品废水中的重要污染物,也是一个需要解决的环境问题。这项研究旨在开发一种处理方法,该方法结合了共同消化奶酪乳清和粪肥的优点,以及通过使用液态乳制品粪便作为辅助基质,实现了高负荷厌氧处理系统的水力停留时间短的优点。拟议的共消化工艺包括一个带外部沉降器的UASB反应器和废水回收利用,用于补充碱度。在2.2天的恒定水力停留时间和进料中奶酪乳清的比例不断增加的情况下,该系统显示出稳定的运行,直至进料中奶酪乳清的含量达到75%,有机负荷率为19.4 kg COD m-3 d -1,获得94.7%的COD去除率和6.4 m3 CH4 m-3 d-1的甲烷生成量。当进料中的奶酪乳清含量为85%时,会经历关键的生物质冲洗。在进料混合物中以恒定的60%干酪乳清含量运行时,可以在有机负载量28.7 kg COD m-3 d-1和1.3天HRT的情况下稳定运行,COD去除率达95.1%,甲烷的生产量为9.5 m3 CH4 m-3 d-1。提出的这种新的高负荷共消化方法对于奶酪工厂和集约化畜牧业因不合适的奶酪乳清和粪肥管理做法造成环境污染的地区是一种很有前途的解决方案。

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