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Combined Pretreatment by Ultrasound and Struvite Precipitation of Raw Substrates: A Strategy to Overcome C/N Ratio Unbalance in Nitrogen-Rich Anaerobic Co-Digestion Systems

机译:原料底物的超声和稳定沉淀的结合预处理:克服富含氮厌氧共消化系统中C / N比不平衡的策略

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摘要

The present study aimed to optimize the struvite chemical precipitation process in nitrogen-rich anaerobic co-digestion systems. Struvite precipitation experiments were carried out using a mixture of cattle slurry liquid fraction and sewage sludge, with and without ultrasound pretreatment. Marine salt or MgCl2 were used as magnesium source in NH4+:Mg2+ stoichiometric proportions of 1:1.5 and 1:3. Under the tested conditions, ammonium nitrogen and orthophosphate were removed from the mixed liquor with a maximum observed efficiency of 43% and 92%, respectively, when the ultrasound treatment was applied prior to struvite precipitation, using MgCl2 as source of magnesium (NH4+:Mg2+ of 1:3). The operating time was 40 min. Different pretreatments were tested prior to the biomethanization experiments, struvite precipitation, ultrasound, or a combination of both pretreatments. The application of ultrasound (with an energy input of 218 kJ L−1) and struvite precipitation (NH4+:Mg2+ of 1:3) increased the methane content in the biogas by 82% and reduced hydraulic retention time by 28%, when compared to the anaerobic co-digestion assays without pretreatment. The hydrolytic pretreatment increased the bioavailability of nitrogen by 5%, thus enhancing the removal efficiency of ammonium nitrogen by 20%. Consequently, an increase in the carbon to nitrogen ratio was observed, favoring the methanogenesis process.
机译:本研究旨在优化富氮混合厌氧消化系统鸟粪石化学沉淀过程。鸟粪石沉淀实验均使用牛的混合物浆料液体馏分和污水污泥,有和没有超声预处理。海洋盐或MgCl 2的用作在NH4 +镁源:Mg 2+的1化学计量比例:1.5和1:3。下的测试条件下,氮铵和正被从混合液体中除去具有分别为43%和92%时,观察到的最大效率,在超声波治疗之前鸟粪石沉淀施加,使用氯化镁作为镁源(NH 4 +:Mg2 +的的1:3)。操作时间为40分钟。不同的预处理之前biomethanization实验,鸟粪石沉淀,超声,或两者预处理的组合进行了测试。超声波的应用(具有218千焦L-1的能量输入)和鸟粪石沉淀(NH 4 +:1的Mg2 +:3)由82%增加沼气中的甲烷含量,并与当由28%减少水力停留时间厌氧共消化测定无需预处理。水解预处理5%增加的氮的生物利用度,因此由20%提高氮铵的去除效率。因此,增加了碳对氮的比例,观察到,有利于产甲烷过程。

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