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Performance of Biodrying Process based on Temperature Profile and Cumulation
Journal of Physics: Conference Series Pub Date : 2020-09-17 , DOI: 10.1088/1742-6596/1625/1/012040
B Zaman 1 , M A Budihardjo 1 , S M M Yasmin 1 , Purwono 2
Affiliation  

The biodrying process of solid waste is an approach to the use of biomass energy, where solid waste is dried using the heat generated from aerobic degradation of organic matter. Temperature profile and cumulation of the solid waste biodrying process are the success factors in drying solid waste. The reactor used is made of plywood with dimensions of (30 30 100) cm equipped with a heat sink using Thermoshield Universal to minimize heat loss. Aeration discharge at the biodrying process reactor is 0.023 m3/kg/h. The results showed a maximum temperature of 61C produced from the bottom layer of the biodrying reactor (addition of 6 l / min air flow) on the first day at 10:00 pm. Cumulation temperature in the bottom layer of the biodrying reactor for 21 days of research reached 186.9C. This value is a source of heat generated from the decomposition of waste under aerobic conditions. Based on the three layers, it can be concluded that the bottom layer produces higher temperature cumulation than the top or middle layer. This research can be a reference for determining temperature monitoring points and knowing Temperature cumulation generated from the waste decomposition process using biodrying technology.



中文翻译:

基于温度分布和累积的生物干燥过程性能

固体废物的生物干燥过程是一种利用生物质能的方法,其中利用有机物好氧降解产生的热量对固体废物进行干燥。固体废物生物干燥过程的温度曲线和累积是干燥固体废物的成功因素。所使用的反应器由尺寸为 (30 30 100) cm 的胶合板制成,配备了使用 Thermoshield Universal 的散热器,以最大限度地减少热损失。生物干燥工艺反应器的曝气排放量为 0.023 m 3/公斤/小时。结果显示,在第一天晚上 10:00,生物干燥反应器底层产生的最高温度为 61C(添加 6 l/min 气流)。经过21天的研究,生物干燥反应器底层的累积温度达到了186.9℃。该值是有氧条件下废物分解产生的热源。基于这三层,可以得出结论,底层比顶层或中间层产生更高的温度累积。本研究可为确定温度监测点和了解利用生物干燥技术的废物分解过程产生的温度累积提供参考。

更新日期:2020-09-17
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