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首页> 外文期刊>The Science of the Total Environment >Assessing iron and aluminum-based coagulants for odour and pathogen reductions in sludge digesters and enhanced digestate dewaterability
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Assessing iron and aluminum-based coagulants for odour and pathogen reductions in sludge digesters and enhanced digestate dewaterability

机译:评估铁和铝基混凝剂,以减少污泥消化池中的气味和病原体并增强消化液的脱水能力

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Anaerobic digestion (AD) is an effective way of recovering energy and nutrients from organic waste. However, several issues including the production of corrosive, highly odorous and toxic volatile sulfur compounds (VSCs) in digester biogas, and long digestion times to achieve sufficient pathogen reductions can limit its wider adoption. In this study, Kemira~(™) PIX-311 (ferric chloride), PAX XL-6 (aluminum chloride hydroxide sulfate), and PAX XL-19 (polyaluminum chlorohydrate) were added to the digester feeds to evaluate the effects on digester stability, organic removal, VSCs formation in digester headspace, pathogen removal and sludge dewaterability. After preliminary dose trials, two different doses of PIX-311, PAX XL-19, and a 1:1 mixture of PIX-311 and PAX XL-19 were selected. PAX XL-6 was removed from further study as dosing significantly increased VSC levels and the PAX XL-6 dosed digester exhibited signs of instability. During the total operation period of 100 days, addition of PIX-311, PAX XL-19, a combination of PIX-311, PAX XL-19 at concentrations of 4000 and 4500 mg/kg total solids (TS) to digester feed did not lead to process instability. Biogas yields of all metal added digesters were similar to that of the control (no metal addition) digester. PIX-311 achieved up to a 93% reduction in biogas VSCs, 82% better fecal coliform inactivation and exhibited improved dewaterability over the control digester. The PAX XL-19 dosed digester showed modest reductions in biogas VSC concentrations, pathogen levels and improved dewaterability versus the control. Metal addition can be an effective way to control odours from VSCs, pathogens and to improve dewaterability during AD.
机译:厌氧消化(AD)是从有机废物中回收能量和养分的有效方法。但是,一些问题包括在消化池沼气中产生腐蚀性,高气味和有毒的挥发性硫化物(VSC),以及较长的消化时间以实现充分的病原菌减少,这会限制其广泛采用。在这项研究中,将Kemira〜(TM)PIX-311(氯化铁),PAX XL-6(硫酸氯化氢铝)和PAX XL-19(聚氯化氢铝)添加到消化池饲料中,以评估对消化池稳定性的影响。 ,有机物去除,消化池顶部空间中VSC的形成,病原体去除和污泥脱水性。经过初步剂量试验后,选择了两种不同剂量的PIX-311,PAX XL-19以及1:1的PIX-311和PAX XL-19混合物。由于剂量显着增加了VSC水平,PAX XL-6已从进一步研究中删除,并且PAX XL-6剂量的消化池显示出不稳定的迹象。在100天的总运行期间,没有向消化池饲料中添加浓度为4000和4500 mg / kg的PIX-311,PAX XL-19,PIX-311,PAX XL-19的组合导致过程不稳定。所有添加金属的消化池的沼气产量均与对照(不添加金属)消化池的沼气产量相似。 PIX-311的沼气VSC降低了93%,粪大肠菌灭活率提高了82%,与对照消化器相比,脱水性得到了改善。与对照相比,PAX XL-19剂量消化池显示沼气VSC浓度,病原体水平适度降低,并且脱水性提高。添加金属是控制VSC,病原体气味和改善AD期间脱水性的有效方法。

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