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1.稻谷清理 2砻谷 3碾米和成品整理 4副产品整理
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In specifying refrigeration equipment the function of the equipment must be absolutely clear. Refrigeration equipment is always used to control tem- perature. Either the meat passing through the process is to be maintained it its initial temperature, for example as in a refrigerated store or a packing operation, or the temperature of the meat is to be reduced, for example in a blast freezer. These two functions
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ad Publishing Limited, Abington Hall, Abington Published in North America by CRC Press LLC, 2000 Corporate Blvd, NW Boca Raton fL 33431. US First published 2002, Woodhead Publishing Ltd and CRC Press LLC o The University of Bristol 2002 The authors have asserted their moral rights
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第一节 引言 第二节 水和冰的物理性质 ◼ 高熔点(0℃)、高沸点(100℃) ◼ 介电常数高 ◼ 表面张力高 ◼ 热容和相转变热焓高 熔化焓、蒸发焓、升华焓 ◼ 密度低(1 g/cm3) ◼ 凝固时的异常膨胀率 ◼ 粘度正常(1 cPa·s) ◼ 水和冰的热导率和热扩散的比较 第三节 水分子 第四节 水分子的缔合 ◼ O-H键具有极性 ◼ 不对称的电荷分布 ◼ 偶极距 ◼ 分子间吸引力 ◼ 强烈的缔合倾向 ◼ 形成三维氢键 ◼ 四面体结构 ◼ 解释水的不寻常性质 氢键供体 氢键受体 第五节 冰的结构 ◼ 水分子通过四面体之间的作用力结晶 ◼ O-O核间最相邻距离为0.276nm ◼ O-O-O键角约109°(四面体角109°28′) ◼ 冰的六面体晶格结构 ◼ 在C轴是单折射,其它方向是双折射 ◼ 结晶对称性:六方晶系的六方形双锥体组 ◼ 溶质的种类和数量影响冰结晶的结构 第六节 水的结构 ◼ 水的结构模型 ➢混合式 ➢填隙式 ➢连续式 ◼ 液态水通过氢键而缔合 ◼ 氢键程度取决于温度 ◼ 冰转变为水时,密度净增加 第七节 水-溶质相互作用 第八节 水分活度和相对蒸汽压
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Contents Part 1 Refrigeration and meat quality 1 Microbiology of refrigerated meat 1.1 Factors affecting the refrigerated shelf-life of meat 1.1.1 Initial microbial levels 1.1.2 Temperature
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342 Index bowl chopping 178, 179 and chilling 73-4 brittleness of frozen meat 180 and conditioning 74-5 bulk storage rooms 224 and freezing 76 and frozen storage 76-8 80-1 live animal factors 73 calpain-tenderness model 5
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Meat is chilled immediately after slaughter. Most of the subsequent opera- tions in the cold chain are designed to maintain the temperature of the meat Cooking is a very common operation in the production of many meat products and operators appreciate the importance of rapidly cooling the cooked product. However, any handling such as cutting, mixing or tumbling will add heat to the meat and increase its temperature. A secondary cooling
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It is often stated by those in the meat and refrigeration industries that 'anyone can measure a temperature. Many millions of measurements are made of both meat and environmental temperatures in the meat industry. However, in many cases the measurements made are an unreliable guide to the effectiveness of the refrigeration process. Even when the correct tem- peratures have been obtained the data are often poorly analysed and rarely acted upon
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Since the mid-1980s there has been a considerable increase in legislation defining maximum temperatures during the production, distribution and retailing of chilled food. However, as soon as the food is purchased by the consumer, it is outside of any of these legislative requirements. Increasingly food poisoning incidents have been found to be due to mishandling of food in the home with insufficient refrigeration or cooling being the most fre
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Theoretically, there are clear differences between the environmental con- ditions required for cooling, which is a heat removal/'temperature reduction process, and those required for storage where the aim is to maintain a set product temperature. However, in many air-based systems, cooling and storage take place in the same chamber and even where two separate facil- ities are used, in many cases not all the required heat is removed in the
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