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首页> 外文期刊>Journal of Environmental Management >Drying characteristics of faecal sludge from different on-site sanitation facilities
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Drying characteristics of faecal sludge from different on-site sanitation facilities

机译:来自不同现场卫生设施的粪便污泥的干燥特性

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Drying is one of the treatment techniques used for the dual purpose of safe disposal and energy recovery of faecal sludge (FS). Limited data are available regarding the FS drying process. In this paper the drying properties of FS were investigated using samples from ventilated improved pit (VIP) latrines and urine diversion dry toilets (UDDT) and an anaerobic baffle reactor (ABR) from a decentralized wastewater treatment systems. Moisture content, total solids content, volatile solids content, water activity, coupled theimogravimetry & differential thermal analysis (TGA-DTA) and calorific value tests were used to characterize FS drying. Drying kinetics and water activity measured at different moisture content during drying (100 ℃) were similar for the samples from different on-site sanitation facilities. Experimental heat of drying results revealed that FS requires two to three times that of the latent heat of vaporization of water for drying. Drying temperature was more significant than the sludge source in determining the final volatile solids content of the dried samples. This was reinforced by the dynamic TGA that showed considerable thermal degradation (2-11% dry solid mass) near 200 ℃. Below 200 C, the calorific value of the dried samples exhibited no significant difference. The average calorific values of VIP, UDDT and ABR samples at 100 ℃ were 14.78, 15.70,17.26 MJAg dry solid, respectively. This suggests that the fuel value of FS from the aforementioned sanitation facilities will not be significantly affected by drying temperature below 200 ℃. Based on this study, the most suitable temperature for drying of FS for a solid fuel application was found to be 150 ℃.
机译:干燥是用于粪便污泥(FS)安全处置和能量回收的双重目的的处理技术之一。关于FS干燥过程的数据有限。在本文中,使用来自通风改进坑(VIP)厕所和尿分流干厕(UDDT)的样品以及来自分散废水处理系统的厌氧挡板反应器(ABR)来研究FS的干燥特性。使用水分,总固体含量,挥发性固体含量,水活度,热重分析和差热分析(​​TGA-DTA)以及热值测试来表征FS干燥。来自不同现场卫生设施的样品在干燥过程中(100℃)在不同水分含量下的干燥动力学和水分活度相似。干燥结果的实验​​热表明,FS需要干燥的水汽化潜热的2到3倍。在确定干燥样品的最终挥发性固体含量时,干燥温度比污泥源更为重要。动态TGA在200℃附近显示出相当大的热降解(2-11%干固体质量),从而加强了这一点。在200℃以下,干燥样品的热值没有显示出显着差异。 100℃下VIP,UDDT和ABR样品的平均热值分别为14.78、15.70、17.26 MJAg干固体。这表明干燥温度低于200℃不会明显影响上述卫生设施中的FS燃料值。根据这项研究,发现用于固体燃料应用的FS干燥的最合适温度为150℃。

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