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Comparative Evaluation of Hydrothermal Carbonization and Low Temperature Pyrolysis of Eucommia ulmoides Oliver for the Production of Solid Biofuel

机译:杜仲的热液碳化和低温热解制备固体生物燃料的比较评价。

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摘要

This study evaluates the feasibility of two thermal pretreatments including hydrothermal carbonization (HTC) and low temperature pyrolysis (LTP) on the production of Eucommia ulmoides biochar. The waste wood of Eucommia ulmoides Oliver was pretreated and characterized for fuel applications. The results confirm that both LTP and HTC are promising processes for improving fuel properties. However, for the same char yield, the required temperature for HTC is lower than LTP, as the char yields of H200 and L300 were quite close (66.50% vs. 66.74%). The surface morphology is significantly different between the pyrolytic carbon and the hydrochar. In addition, it was found that the H/C and O/C ratios of H300 were 0.82 and 0.21, respectively, and the H/C and O/C ratios of L340 were 0.77 and 0.22, respectively. They were similar to that of sub-bituminous. Moreover, under the same reaction temperature, hydrochar showed better grindability, hydrophobicity, and reduction in inorganic content. Comparing the integrated combustion characteristic index (S), LTP process had the better performance within the lower temperature under 220 °C while HTC process performed better at temperature higher than 300 °C. The results reveal that HTC has the potential to produce solid carbonized products with better fuel quality.
机译:这项研究评估了两个热预处理在生产杜仲生物炭中的可行性,包括水热碳化(HTC)和低温热解(LTP)。杜仲(Eucommia ulmoides Oliver)的废木材经过预处理,并用于燃料用途。结果证实,LTP和HTC都是改善燃料特性的有前途的过程。但是,对于相同的焦炭产量,HTC所需的温度低于LTP,因为H200和L300的焦炭产量非常接近(66.50%对66.74%)。热解碳和烃的表面形貌明显不同。另外,发现H300的H / C和O / C比分别为0.82和0.21,并且L340的H / C和O / C比分别为0.77和0.22。它们类似于亚沥青。此外,在相同的反应温度下,炭水具有更好的可磨性,疏水性和无机含量的降低。比较综合燃烧特性指标(S),LTP工艺在220 C的低温下性能更好,而HTC工艺在高于300 C的温度下性能更好。结果表明,HTC有潜力生产具有更高燃料质量的固体碳化产品。

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