首页> 外文期刊>The Journal of Applied Poultry Research >Effects of broiler carcass bleed time and scald temperature on poultry processing wastewater.
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Effects of broiler carcass bleed time and scald temperature on poultry processing wastewater.

机译:肉鸡car体放气时间和烫伤温度对家禽加工废水的影响。

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Two experiments were conducted to measure the effects of bleed time and scald temperature on the impact of individual carcasses or groups of carcasses on scalder poultry processing wastewater (PPW). In experiment 1 (24 male broilers) and experiment 2 (120 commercial broilers), birds were randomly assigned to 4 treatment groups: (1) short bleed time/soft scald, (2) short bleed time/hard scald, (3) long bleed time/soft scald, and (4) long bleed time/hard scald (short bleed time=60 s; long bleed time=120 s; soft-scald=50 degrees C; hard-scald=60 degrees C). Birds were electrically stunned, decapitated, and bled for either 60 or 120 s, with the draining blood captured. Carcasses were scalded for 2 min individually (experiment 1) or in groups of 5 carcasses (experiment 2) in scald tanks heated to either 50 or 60 degrees C. Experiment 1 scalder PPW samples were analyzed (mg/L) for chemical oxygen demand (COD), total solids (TS), total suspended solids (TSS), total volatile solids, total Kjeldahl N, and 18 chemical elements. Experiment 2 scalder PPW samples were analyzed for COD, TS, and TSS. A PPW load in grams per kilogram of live weight (g/kglwt) was calculated for each concentration (mg/L) data point. The highest mean loading (g/kglwt) in the scalder PPW samples from experiment 1 was for COD (2.00), followed by TS (1.66), total volatile solids (1.36), TSS (0.42), and total Kjeldahl N (0.24). The highest mean loading (g/kglwt) in the scalder PPW samples from experiment 2 was for TS (3.02), followed by COD (1.62) and TSS (0.61). There was an 82% increase in TS mean loading (g/kglwt) from experiment 1 (i.e., experimental broilers) vs. experiment 2 (i.e., commercial broilers); hence, broiler external cleanliness significantly affected solids loading in scalder PPW.
机译:进行了两个实验,以测量流失时间和烫伤温度对单个屠体或屠体组对烫伤家禽加工废水(PPW)的影响。在实验1(24个雄性肉鸡)和实验2(120个商业肉鸡)中,将家禽随机分为4个处理组:(1)短出血时间/软烫,(2)短出血时间/硬烫,(3)长排气时间/软烫伤,以及(4)排气时间长/硬烫伤(短排气时间= 60 s;长排气时间= 120 s;软烫伤= 50摄氏度;硬烫伤= 60摄氏度)。对鸟进行电击,断头并放血60或120 s,并收集引流的血液。在加热至50或60摄氏度的烫锅中,分别对尸体进行2分钟(实验1)或5具尸体成组(实验2)的氧化皮。对实验1氧化皮PPW样品的化学需氧量(mg / L)进行分析(mg / L)( COD),总固体(TS),总悬浮固体(TSS),总挥发性固体,总凯氏定氮和18种化学元素。实验2压烫机PPW样品的COD,TS和TSS进行了分析。计算每个浓度(mg / L)数据点的PPW负荷,单位为克/千克活重(g / kg lwt )。实验1的烫水机PPW样品中的最高平均负载量(g / kg lwt )是COD(2.00),其次是TS(1.66),总挥发性固体(1.36),TSS(0.42) ,以及凯氏定氮N(0.24)。实验2的烫毛机PPW样品中的最高平均负载量(g / kg lwt )是TS(3.02),其次是COD(1.62)和TSS(0.61)。实验1(即实验性肉鸡)相对于实验2(即商品肉鸡)的TS平均负荷(g / kg )增加了82%;因此,肉鸡的外部清洁度显着影响了压烫机PPW中的固体含量。

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