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Decision Support for the Construction of Farm-Scale Biogas Digesters in Developing Countries with Cold Seasons

机译:发展中国家在寒冷季节建设农场规模沼气池的决策支持

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Biogas production is a clean renewable energy source that can improve lives in developing countries. However, winter temperatures in some areas are too low to enable enough biogas production in small unheated digesters to meet the energy requirements of households. Low-cost, high yield reactors adapted to the local climate are needed in those situations. A decision-support model was developed to assist in the design of biogas reactors capable of meeting households’ year-round energy needs. Monthly biogas production relative to household energy needs was calculated for the scenario of suburban Hanoi, Vietnam. Calculations included pig number, slurry (manure water mixture) dilution, retention time and biogas/solar heating. Although using biogas to heat the digester increased biogas production, it did not lead to an energy surplus, particularly with the 1:9 slurry dilution rate commonly used on pig farms. However, at a 1:3 slurry dilution, the use of solar heating to provide 90% and biogas 10% of the heat required to heat the digester to 35 °C improved the biogas production by 50% compared to psychrophilic production. The energy needs of an average five-person family throughout the year required 17 fattening pigs. This model can establish the best solution for producing sufficient energy throughout the year.
机译:沼气生产是一种清洁的可再生能源,可以改善发展中国家的生活。但是,某些地区的冬季温度过低,无法在小型未加热的沼气池中产生足够的沼气,无法满足家庭的能源需求。在这些情况下,需要适应当地气候的低成本,高产量的反应堆。开发了决策支持模型,以协助设计能够满足家庭全年能源需求的沼气反应堆。针对越南河内郊区的情景,计算了与家庭能源需求相关的每月沼气产量。计算包括生猪数量,泥浆(肥料水混合物)稀释,保留时间和沼气/太阳能加热。尽管使用沼气加热消化池可以增加沼气的产生,但并没有导致能源过剩,特别是在养猪场通常采用1:9的稀浆稀释率的情况下。但是,在以1:3的比例稀释泥浆时,使用太阳能加热将沼气池加热到35°C所需热量的90%和沼气的10%,与嗜温性生产相比,沼气的产量提高了50%。一个普通的五口之家全年的能源需求需要17头育肥猪。该模型可以为全年生产足够的能源建立最佳解决方案。

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