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首页> 外文期刊>American Journal of Biochemistry and Biotechnology >KINETICS OF THIN LAYER DRYING OF POULTRY MANURE
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KINETICS OF THIN LAYER DRYING OF POULTRY MANURE

机译:家禽粪便薄层干燥的动力学

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摘要

The poultry industry is one of the largest and fastest growing sectors of livestock production in the world. The estimated 2010 world flock was over 18 billion birds with a yearly manure output of 22 million tonnes. Storage and disposal of raw poultrymanure has become an environmental problem because of the associated air, water and soil pollution. Environmental and health problems such as odor and pathogens that may arise during and after land application of raw manure can be eliminated by drying.Dried manure can be utilized as a soil conditioner to improve soil tilth and reduce the problems associated with soil compaction and as a feed for ruminants because of its high nitrogen content. The aim of this study was to investigate the kinetics of thin layer drying of poultry manure and evaluate the effects of drying with heated air on the chemical and biological properties of manure. The effects of temperature and depth of manure layer were evaluated. The profile of the moisture content of poultrymanure followed an exponential decay curve. The moisture decay constant was affected by the drying temperature and the depth of the manure layer. At the three temperature levels studied, the time required to dry poultry manure in 1 cm-deep layer was theleast, followed by 2 and 3 cm-deep layers, respectively. The diffusion coefficient increased with both temperature and depth of drying layer, but did not show a linear increase with either variable. The optimum depth for drying manure (at which the highest drying effectiveness occurred) was 3 cm. Drying manure at 40-60°C resulted in the loss of 44-55% of the total Kjeldahl nitrogen, with losses increasing with both the temperature and depth of manure. The pH of the manure decreased from the initial value of 8.4 before drying to about 6.6 after drying. The odor analysis indicated that dried poultry manure did not have an offensive odor. Drying achieved 65.3 and 69.3% reductions in odor intensity and offensiveness, respectively. Reductions in the numberof bacteria, mold/yeast and E.coli were 65-99, 74-99 and 99.97% respectively. The greatest reductions in microbial population occurred at the highest temperatures (60°C) and the thinest manure depths (1 cm). Heated air drying of poultry manure at temperatures between 40 and 60°C was effective in killing pathogens and removing odor.
机译:家禽业是世界上最大,发展最快的畜牧业之一。据估计,2010年世界鸡群超过180亿只,年粪便产量为2200万吨。由于相关的空气,水和土壤污染,未加工的家禽粪便的存储和处置已成为环境问题。可以通过干燥来消除在环境和健康方面的问题,例如在粪便施用土地期间和之后可能产生的气味和病原体。干燥粪肥可以用作土壤改良剂,以改善土壤的倾角并减少与土壤压实有关的问题,并且氮含量高,因此适合反刍动物饲料。这项研究的目的是研究家禽粪便的薄层干燥动力学,并评估用热风干燥对粪便的化学和生物学特性的影响。评估温度和肥料层深度的影响。家禽粪便的水分含量曲线遵循指数衰减曲线。水分衰减常数受干燥温度和肥料层深度的影响。在所研究的三个温度水平下,在1 cm深的层中干燥家禽粪便所需的时间最少,其次分别是2 cm和3 cm深层。扩散系数随温度和干燥层深度的增加而增加,但在任一变量下均未显示线性增加。最佳的干燥肥料深度(发生最高干燥效果)为3 cm。在40-60°C下干燥肥料会导致凯氏氮总量减少44-55%,并且损失随肥料温度和深度的增加而增加。肥料的pH值从干燥前的初始值8.4降低到干燥后的约6.6。气味分析表明,干燥的家禽粪便没有令人讨厌的气味。干燥分别减少了65.3%和69.3%的气味强度和令人讨厌的气味。细菌,霉菌/酵母和大肠杆菌的减少分别为65-99、74-99和99.97%。在最高温度(60°C)和最薄肥料深度(1 cm)下,微生物种群的减少最大。在40至60°C的温度下对家禽粪便进行热风干燥可有效杀死病原体并去除异味。

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