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Bio-treatment of maize processing wastewater using indigenous microorganisms

机译:使用本土微生物的玉米加工废水生物处理

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Wastewater arising from maize processing industry is rich in proteins, amino acids, carbohydrates and nitrogenous compounds. Discharging of such wastewaters to the main water bodies without proper treatment creates environmental risks. The present research aimed to reduce maize processing wastewater contaminants by indigenous microorganisms. Industrial wastewater samples of maize processing factory at 10th of Ramadan city, Egypt were collected. The chemical and microbiological characteristics of samples were evaluated. An in vitro batch experiment was conducted in triplicates using 5?L Erlenmeyer flasks enriched with 2?L of the maize processing wastewater and incubated under shaking ambient conditions at 120?rpm for 30 d. Another 2?L Erlenmeyer flask was enriched with 2?L of the wastewater sample, and incubated under static ambient conditions, used as control. The biodegradation of nitrogenous and organic compounds was followed up by measuring Total Kjeldahl Nitrogen (TKN), Biochemical Oxygen Demand (BOD), Chemical Oxygen Demand (COD), Dissolved Oxygen (DO) and pH. The biomass growth rate was monitored by counting the viable bacterial cells (TBC) and fungal cells. The concentration of TKN, BOD and COD was reduced from 2330, 9000 and 12,000?mg?L??1 to 420, 220 and 430?mg?L??1, respectively. DO concentrations were ranged between 6 to 12?mg?L??1 and the pH value was elevated from 6.9 to 9.3. TBC was elevated from 2?×?106 to 4?×?1010?CFU?mL??1, while the yeast count was reduced from 12?×?106 to 2.2?×??104?CFU?mL??1. Microbial identification by Analytical Profile Index?(API) profiling kits indicated that Saccharomyces cerevisiae, Bacillus subtilis, Bacillus amyloliquefaciens, and Bacillus licheniformis are the strains involved in bio-treatment.
机译:由玉米加工行业产生的废水富含蛋白质,氨基酸,碳水化合物和含氮化合物。在没有适当的治疗的情况下向主要水体排出这种废水产生环境风险。本研究旨在通过土着微生物减少玉米加工废水污染物。收集了埃及斋月市10日玉米加工厂的工业废水样本。评估样品的化学和微生物特征。使用5μl的富含玉米加工废水的5μlErlenmeyer烧瓶的三种含量进行三种体外批次实验,并在120℃下在摇动环境条件下孵育30d。另外2?L Erlenmeyer烧瓶富含2·L废水样品,并在静态环境条件下培养,用作对照。通过测量总KjeldaHL氮(TKN),生物化学需氧量(BOD),化学需氧量(COD),溶解氧(DO)和pH来进行含氮和有机化合物的生物降解。通过计数活细菌细胞(TBC)和真菌细胞来监测生物质生长速率。 TKN,BOD和COD的浓度分别从2330,9000和12,000×mg?1〜420,220和430?mg?l ?? 1。浓度的范围在6至12?mg?1〜12之间,并且pH值从6.9升至9.3。 TBC从2?×106到4?×1010?CFU?mlΔ1,而酵母计数从12?×106到2.2?××10〜4?CFU?ml'm1。通过分析剖面指数进行微生物鉴定?(API)分析试剂盒表明,酿酒酵母酿酒酵母,枯草芽孢杆菌,芽孢杆菌和芽孢杆菌是生物处理中涉及的菌株。

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