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Hydrothermal carbonisation of raw and dewatered paunch waste: Experimental observations, process modelling and techno-economic analysis

机译:原料和脱水的水热碳化污水浪费:实验观察,过程建模和技术经济分析

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In this study, dewatered and raw paunch waste, with 15 and 3 wt% total solids respectively, generated at abattoirs was hydrothermally carbonised under subcritical water conditions. Higher solids content was found to produce higher hydrochar yield (i.e. 53% for 15 wt% compared to 33.5% for 3 wt%) at similar operating conditions of 10 bar and 240 degrees C for 5 min. The morphological differences were noted via Scanning Electron Microscopy (SEM) in the hydrochar samples, and the surface area for processing raw paunch waste was found to be 68.1 m2 g-1 compared to 10.8 m2 g-1 in case of dewatered paunch waste. The light bio-oil was mostly composed of phenolic compounds while the heavy bio-oil mainly contained long chain fatty acids and their esters. Following the experimental work, a full-scale ASPEN Plus process model was developed for a typical abattoir generating 27 tonne dry paunch waste per day. Pre-heater and hydrochar dryer contributed to 73% and 57% of the total energy for processing raw and dewatered paunch waste, respectively, because of the high moisture content of the feedstock and hydrochar. After the equipment sizing and estimation of capital and operating costs, the discounted cash flow analysis was performed using the Nth-Plant financing assumptions. It was concluded that treating dewatered paunch waste is preferable as it: needed a smaller reactor i.e. lower overall initial investment, was less sensitive to bio-oil price, and improved the net present value over a period of 30 years to $2.8 MM. Besides the liquid hourly speed velocity, its commercial viability is highly sensitive to internal rate of return and existence of hydrochar dryer.
机译:在该研究中,分别在Abattir中产生了15和3wt%的总固体,在亚临核水条件下脱水和3wt%的总固体。发现更高的固体含量以产生更高的氢碳产率(即15wt%,而15wt%,相比3wt%3wt%)在10巴的类似操作条件下,240℃5分钟。通过扫描电子显微镜(SEM)在羟基丙烯样品中的扫描电子显微镜(SEM)注意,并且在脱水的PAUMIND废物的情况下,发现加工原始休闲废物的表面积为68.1m 2 G-1。光生物油主要由酚类化合物组成,而重型生物油主要含有长链脂肪酸及其酯。在实验工作之后,为典型的Abattoir每天产生27吨干休眠浪费,开发了全面的Aspen Plus过程模型。预热器和氢乙烯干燥器由于原料和氢乙酸的高水分含量,分别为加工原料和脱水的PAUNCOND废物的总能量的73%和57%。在设备规模和估算资本和运营成本之后,使用Nth-Plant融资假设进行折扣现金流量分析。得出结论:治疗脱水休闲废物是优选的:需要较小的反应器,即降低总体初始投资,对生物油价较低,并将净目前的净值改善为30岁至2.8毫米。除了液体小时速度速度之外,其商业活力对于水干燥器的内部返回和存在性高度敏感。

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