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量化商业热解消化物中的可溶性顽固性化合物。

Quantification of soluble recalcitrant compounds in commercial thermal hydrolysis digestates.

机构信息

Cambi Group AS, Asker, Norway.

Department of Chemistry, Biotechnology and Food Sciences, Norwegian University of Life Sciences, Ås, Norway.

出版信息

Water Environ Res. 2020 Nov;92(11):1948-1955. doi: 10.1002/wer.1351. Epub 2020 May 19.

DOI:10.1002/wer.1351
PMID:32363700
Abstract

Solid residues such as primary sludge (PS), waste activated sludge (WAS), and food waste (FW) can be stabilized through anaerobic digestion (AD). Application of the thermal hydrolysis process (THP) prior to AD results in several benefits in AD and dewatering. However, soluble recalcitrant compounds associated with Maillard reactions have been identified after THP which can impact downstream processes and water discharge limits. In this study, the soluble colloidal chemical oxygen demand, color, ultraviolet absorbance at 254 nm and dissolved organic nitrogen in seven full-scale THP facilities were quantified and compared. The THP substrate influenced the concentration of soluble melanoidin-associated compounds in the digestates. THP implementation in five water resource recovery facilities (WRRFs) was modeled and found to give a 3-8 mg/L increase on the water effluent COD concentration depending on the PS/WAS ratio. The results provide novel information useful in planning new WRRFs and optimization of existing facilities. PRACTITIONER POINTS: High amounts of WAS in substrate resulted in higher concentrations of CODsc, color and dissolved organic nitrogen in the digestate. Food waste treated at 145°C showed equal or lower concentrations of all components compared with sludge operated at 165°C. Installation of THP will increase the COD concentration in the water effluent of a water resource recovery facility. The characteristics of the THP substrate are important to consider in cost/benefit analysis when planning the installation of THP.

摘要

固体残渣,如原污泥(PS)、废活性污泥(WAS)和食物垃圾(FW),可以通过厌氧消化(AD)进行稳定化处理。在 AD 之前应用热水解工艺(THP)会带来 AD 和脱水方面的多项益处。然而,THP 后会产生与美拉德反应相关的可溶性难降解化合物,这可能会影响下游工艺和水排放限制。在本研究中,对七个全规模 THP 设施中的可溶胶体化学需氧量、颜色、254nm 紫外吸光度和溶解有机氮进行了定量和比较。THP 底物会影响消化物中可溶性类黑素相关化合物的浓度。在五个水资源回收设施(WRRF)中模拟了 THP 的实施情况,发现 THP 的实施会使水出水 COD 浓度增加 3-8mg/L,具体取决于 PS/WAS 比例。结果提供了新的有用信息,有助于规划新的 WRRF 和优化现有设施。

从业者要点

底物中高含量的 WAS 会导致消化物中 CODsc、颜色和溶解有机氮的浓度升高。在 145°C 下处理的食物垃圾与在 165°C 下运行的污泥相比,所有成分的浓度相等或更低。

THP 的安装会增加水资源回收设施水出水中的 COD 浓度。在规划 THP 安装时,THP 底物的特性对于成本/效益分析很重要。

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