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POTENTIAL OF SEWAGE SLUDGE AS ENERGY RECOVERY VIA GASIFICATION PROCESS

机译:污水污泥的潜力作为通过气化过程的能量回收

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Sewage sludge is a valuable resource and of considerable interest which has recently been exploited for its potential as an energy recovery. Sewage sludge gasification is an alternative and promising approach to find a continuous and reliable resource of disposal of the constant supply of sewage sludge, hence it is the attractive way of handling waste management. It is important to move towards the development of a sustainable energy solution to fulfil the present and future energy requirements and reduce the dependency on non-renewable resources. Therefore, the main aim of this study was to investigate the characteristics of sewage sludge collected from Gadong wastewater treatment plant to ensure its possibility for gasification conversion process. Proximate analysis, ultimate analysis, heating value and Energy Dispersive X-Ray Analysis (EDX) were performed. Results showed that the sewage sludge contains 2.70 wt. % moisture contents, 36.9 wt. % volatile matter, 63.0 wt. % ash contents and 7.77 wt. % fixed carbon with a heating value of 8.04 MJ/kg. Thermogravimetric and derivative thermogravimetric (TGA and DTG) analyses were examined to investigate the decomposition behaviour of sewage sludge under nitrogen (N_2) and oxygen (O_2) conditions at heating rates of 50.00°C to 900.00°C at 10.00°C/min for both conditions. The TG/DTG curves were compared to provide an inclusive description of the three different stages of thermal decomposition in all conditions. The overall conclusion based on experimental studies is that the characteristics and thermal analyses of sewage sludge are suitable as an energy recovery feedstock for the gasification process.
机译:污水污泥是一个有价值的资源,并且最近被剥削了其作为能源恢复的潜力。污水污泥气化是一种替代和有希望的方法,可以找到一种持续可靠的处置污水污泥供应的资源,因此是处理废物管理的有吸引力的方式。重要的是为了实现可持续能源解决方案,以满足现在和未来的能源需求,减少对不可再生资源的依赖性。因此,本研究的主要目的是探讨从饼通废水处理厂收集的污水污泥的特点,以确保其气化转化过程的可能性。进行近分析,终极分析,加热值和能量分散X射线分析(EDX)。结果表明,污水污泥含有2.70重量%。 %水分含量,36.9重量%。 %挥发物质,63.0重量%。 %灰分含量和7.77重量%。 %固定碳,加热值为8.04 mJ / kg。检查热量升降和衍生物热重度(TGA和DTG)分析,以研究氮气(N_2)和氧气(O_2)条件下的污水污泥的分解行为,加热速率为50.00℃至900.00℃,适用于10.00°C / min状况。比较TG / DTG曲线,以提供所有条件中的热分解的三个不同阶段的包容性描述。基于实验研究的整体结论是,污水污泥的特性和热分析适合作为气化过程的能量回收原料。

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