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Treatment of wastewater from a monosodium glutamate manufacturing plant using successive yeast and activated sludge systems

机译:使用连续的酵母和活性污泥系统处理味精生产厂的废水

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Successive systems using yeast and activated sludge (AS) were developed to treat monosodium glutamate manufacturing wastewater (MSGW). The yeast system allowed over 80% removal of chemical oxygen demand (COD) and a rise of pH from 2.5 to 6.5 on treating MSGW directly (COD 25,000 mg/l and NH_4~+-N 19,000 mg/l). Observation of the microbial community using a scanning electron microscope indicated that the two species of yeast (Candida halophila and Rhodotorula glutinis) were predominant in the biofilm reactor during 2 months of operation. The suspended solids (SS) of effluents from the yeast reactor were mainly composed of yeasts and fermentative bacteria used in glutamate production. This part of SS contained 55.8% protein and 18 amino acids and could be utilized as a source of single cell protein (SCP) as animal food additive. The effluent from the yeast system was fed into the activated sludge system after NH_4~+-N was reduced to a level of 1000 mg/l through air stripping. The activated sludge system could remove 50-70% of the remaining COD further, and the effluent COD and SS were constantly below 1300 and 70 mg/l, respectively. The combined system biologically removed about 95% COD from MSGW, and the COD could be further reduced to below 360 mg/l with coagulation under an FeCl_3 dose of 1400 mg/Fe 1.
机译:开发了使用酵母和活性污泥(AS)的连续系统来处理味精生产废水(MSGW)。通过直接处理MSGW(COD 25,000 mg / l和NH_4〜+ -N 19,000 mg / l),酵母系统可以去除80%以上的化学需氧量(COD),并使pH从2.5升高到6.5。使用扫描电子显微镜对微生物群落的观察表明,在运行2个月的过程中,这两种酵母(嗜盐假单胞菌和Rhodotorula glutinis)在生物膜反应器中占主导地位。酵母反应器中流出物的悬浮固体(SS)主要由用于生产谷氨酸的酵母和发酵菌组成。这部分SS含有55.8%的蛋白质和18个氨基酸,可以用作动物食品添加剂的单细胞蛋白质(SCP)的来源。通过空气汽提将NH_4〜+ -N降至1000 mg / l的水平后,将酵母系统的出水进料到活性污泥系统中。活性污泥系统可以进一步去除50-70%的残留COD,出水的COD和SS分别持续低于1300和70 mg / l。合并后的系统从MSGW生物去除了约95%的COD,并且在1400 mg / Fe 1的FeCl_3剂量下通过凝结可以将COD进一步降低至360 mg / l以下。

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