تعیین ترکیبات شیمیایی و انرژی قابل سوخت و ساز ضایعات کارخانجات ماکارونی و لپه پاککنی در سطوح مختلف
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Abstract:
Based on the official statistics of industries and mines organization about 1000 tons of waste of spaghetti in spaghetti- producing plants, and around 7500 tons of waste in chickpea pre-cleaning plants are produced annually in the East Azarbayjan province. In order to determine chemical composition and metabolizable energy of the above mentioned waste, at first classified random sampling from 10% of plants was performed. Then amount of dry matter, crude protein, crude fiber, ether extract, NDF, ADF, and gross energy were measured according to AOAC (1990) procedures. The amounts of crude protein, crude fiber, ether extract, NDF and ADF, for spagettti waste were, 12/7, 0/2 , 2/4 , 1/7 and 0/1 percent, respectively, and for chickpea pre-cleaning were 30/2 , 17/8 , 8/7 , 32/3 and 22/4 percent, respectively. The waste of spaghetti was mixed with basal diet with the ratios of 0, 15, 30, 45, 60, 75, 90, and 100%. The waste of pre-cleaning chickpea was mixed with basal diet with the ratios of 15% and 45%. Then, in order to determine different kinds of metabolizable energy (AME, AMEn, TME, TMEn) of waste, 30 grams of mixed feed were force-fed to 4 adult Leghorn-type roosters, according to the method described by Sibbald. The amount of AMEn of spaghetti waste in different levels was 2915, 3535, 3937, 3643, 3728, 3671, 3687 and 3717 Kcal/kg, respectively and the amount of AMEn of metabolizable energy of checkpea pre-cleaning in two levels was 2677 and 2279 Kcal/kg, respectively. Statistical analysis showed that there were significant differences between AMEn of wastes. There were significant differences between amount and kinds of metabolizable energy in different levels. The highest amount of AME was observed to be in 30% ratio of spaghetti waste relation to basal diet. There were significant differences between amount of metabolizable energy of checkpea pre-cleaning in two levels. The highest amount of AME was observed to be in 15% ratio of checkpea pre-cleaning waste related to basal diet.
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تعیین ترکیبات شیمیایی و انرژی قابل سوخت و ساز ضایعات کارخانجات ماکارونی و لپه پاک کنی در سطوح مختلف
بر اساس آمار رسمی سازمان صنایع و معادن در استان آذربایجان شرقی سالیانه مقدار 1000 تن ضایعات در کارخانجات تهیه ماکارونی و مقدار7500 تن ضایعات در کارخانجات لپه پاک کنی تولید می شود. برای تعیین ترکیبات شیمیایی و انرژی قابل سوخت و ساز این ضایعات، ابتدا از 10% کارخانجات بر اساس روش نمونه گیری تصادفی طبقه بندی شده، نمونه برداری به عمل آمد. سپس مقادیر ماده خشک، پروتئین خام، الیاف خام، چربی خام، دیواره...
full textتعیین ترکیب شیمیایی و انرژی قابل سوخت و ساز ضایعات کارخانجات ماکارونی، رشته، بیسکویت، پفک ، لپه پاک کنی و بوجاری لپه
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تعیین ترکیبات شیمیایی و انرژی قابل سوخت وساز پودر ضایعات کشتارگاهی طیور
هدف از انجام این آزمایش بررسی تعیین مقدار انرژی قابل سوخت و ساز حقیقی تصحیح شده بر اساس نقطه صفر تعادل نیتروژن (TMEn) و ترکیبات شیمیایی پودر ضایعات کشتارگاهی طیور (PBPM) و ارتباط ترکیبات شیمیایی با TMEn در خروس بالغ بود . برای تعیین ارزش غذایی PBPM تعداد 30 نمونه تازه از کشتارگاههای مختلف کشور تهیه شد. ماده خشک، انرژی خام، چربی خام، پروتئین خام، خاکستر و کل نیتروژن فرار (TVN) نمونه ها مطابق رو...
full textتعیین ترکیب شیمیایی و انرژی قابل سوخت و ساز ظاهری و حقیقی ارقام مختلف جو در جوجههای گوشتی
This study was conducted to determine chemical composition and evaluated apparent metabolisable energy (AME) and true metabolisable energy (TME) values of five Iranian barley cultivars. Basal diet contained corn soybean and in each of the test diets barley was substituted for 30% of corn and soybean fractions. The study was carried out in 3 experiments. In experiment 1, metabolisable energy (ME...
full textتعیین ترکیب شیمیایی و انرژی قابل سوخت و ساز ظاهری و حقیقی ارقام مختلف جو در جوجههای گوشتی
This study was conducted to determine chemical composition and evaluated apparent metabolisable energy (AME) and true metabolisable energy (TME) values of five Iranian barley cultivars. Basal diet contained corn soybean and in each of the test diets barley was substituted for 30% of corn and soybean fractions. The study was carried out in 3 experiments. In experiment 1, metabolisable energy (ME...
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Journal title
volume 12 issue 43
pages 349- 358
publication date 2008-04
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