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Treatability Study of a Seafood-Processing Wastewater

机译:海鲜加工废水的可处理性研究

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The unique characteristics of seafood-processing wastewater require a treatability study be performed. Wastewater from seafood-processing contains high concentrations of nitrogen and suspended solids along with large volumes of wastewater. This treatability study was undertaken using a 10 L per day, bench-scale, modified Ludzack-Ettinger (MLE) process that was designed, constructed, and operated for approximately eight (8) months. Influent and effluent data collected on the system included: chemical oxygen demand (COD), total suspended solids (TSS), total Kjeldahl nitrogen (TKN), ammonia nitrogen, nitrite nitrogen, nitrate nitrogen, total nitrogen (TN), pH, total phosphorus (TP), dissolved oxygen (DO), alkalinity, and temperature. All analyses were performed in accordance with Standard Methods. Influent characteristics ranged from 892 to 7470 mg/L COD, 36 to 1037 mg/L TKN, 70 to 3450 mg/L TSS, and 39 to 86 mg/L TP. Mean cell residence time (MCRT) served as the primary control parameter with average MCRTs of 5.3, 6.4, 8.5, and 30.9 days observed during the study. Biokinetic coefficients determined at 25℃ during the study included a yield coefficient (Y) of 0.42 mg TSS/mg COD and an endogenous decay coefficient (k_d) of 0.22 days~(-1). The average, overall observed specific nitrification rate (SNR) and average observed specific denitrification rate (SDNR) was 0.084 days~(-1) and 0.051 days~(-1), respectively. UV-Vis spectroscopy was found to have a potential for characterizing the biological treatment process. The MLE is an effective method of biologically treating a seafood-processing wastewater.
机译:海鲜加工废水的独特特征需要进行可处理性研究。海鲜加工产生的废水中含有高浓度的氮和悬浮固体以及大量废水。这项可治疗性研究是使用每天10升的台式规模改良Ludzack-Ettinger(MLE)工艺进行的,该工艺设计,制造和运行了大约八(8)个月。在系统上收集的进水和出水数据包括:化学需氧量(COD),总悬浮固体(TSS),凯氏定氮(TKN),氨氮,亚硝酸盐氮,硝酸盐氮,总氮(TN),pH,总磷(TP),溶解氧(DO),碱度和温度。所有分析均按照标准方法进行。进水特性范围为892至7470 mg / L COD,36至1037 mg / L TKN,70至3450 mg / L TSS和39至86 mg / L TP。平均细胞停留时间(MCRT)作为主要控制参数,研究期间观察到平均MCRT为5.3、6.4、8.5和30.9天。研究期间在25℃下测定的生物动力学系数包括0.42 mg TSS / mg COD的产量系数(Y)和0.22天〜(-1)的内生衰减系数(k_d)。平均,总体观察到的比硝化率(SNR)和平均观察到的比硝化率(SDNR)分别为0.084天〜(-1)和0.051天〜(-1)。发现紫外可见光谱法具有表征生物处理过程的潜力。 MLE是一种生物处理海鲜加工废水的有效方法。

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