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Concerning operational aspects in supercritical water gasification of kraft black liquor

机译:关于牛皮纸黑液超临界水气化的操作方面

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Kraft Black Liquor (KBL) is an aqueous solution of lignin residues, hemicelluloses and inorganic chemicals produced during the pulping process. It is sometimes classified as waste even if this definition is wrong in most of the cases where the BL is reutilized (recovered) by using it as fuel in recovery boilers. In this process, the pulping chemicals are recovered and sent again to the cooking process of wood. BL has more than half of the energy content of the inlet wood. KBL is generally used as an energy source although recovery boilers are still quite thermally inefficient compared to coal or gas fired power producing ones. Among the various solutions, supercritical water gasification (SCWG) enables bio-fuels and value products to be obtained from KBL The present study deals with the KBL SCWG by using a plug-flow reactor operating continuously at 250 bar pressure and variable temperatures in the range 500-700 degrees C. The objective was to identify the experimental conditions that lead to the development of operational problems and to document them accurately. In this study, real time visualization of online measurements has been conducted by means of the LabView software. In order to highlight the differences in behavior, tests were conducted on two different substrates, the sucrose and KBL. Results a highlight how tests were carried out without problems at 500 degrees C resulting in total gas yield of 18.31 g-mol/kg(feed), consisting mainly of H-2 (7.87 g-mol/kg(feed)), CO2 (5.84 g-mol/kg(feed)), H2S (2.29 g-mol/kg(feed)) and CH4 (1.96 g-mol/kg(feed)). On the contrary, in the case of KBL SCWG the test was interrupted at 600 degrees C because of salt deposits and consequent clogging in the entrance of the reactor. The LabView software showed particularly rapid pressure drops which were not addressed to technical problems in the layout. However, the recording of the pressure drop was only the final symptom of this occurrence. The saline content in the investigated inlet KBL also suggested the need of a pre-treatment for the removal of the inlet salts in the case where a non-catalytic reactor would be used. (C) 2018 Elsevier Ltd. All rights reserved.
机译:卡夫黑液(KBL)是在制浆过程中产生的木质素残留物,半纤维素和无机化学品的水溶液。即使在大多数通过将BL作为回收锅炉中的燃料进行再利用(回收)的情况下,即使此定义错误,有时也将其分类为废物。在此过程中,制浆化学品被回收并再次送至木材的蒸煮过程。 BL的能量含量是进口木材的一半以上。尽管回收锅炉与燃煤或燃气发电锅炉相比在热效率方面仍然很低,但KBL通常被用作能源。在各种解决方案中,超临界水气化(SCWG)能够从KBL获得生物燃料和有价值的产品。本研究通过使用在250 bar压力和可变温度范围内连续运行的活塞流反应器来处理KBL SCWG。 500-700摄氏度。目标是确定导致操作问题发展的实验条件,并准确记录下来。在这项研究中,已经通过LabView软件对在线测量进行了实时可视化。为了突出行为上的差异,对蔗糖和KBL这两种不同的底物进行了测试。结果突出显示了如何在500摄氏度下毫无问题地进行测试,从而使总气体产量为18.31 g-mol / kg(进料),主要由H-2(7.87 g-mol / kg(进料)),CO2( 5.84 g-mol / kg(进料)),H2S(2.29 g-mol / kg(进料))和CH4(1.96 g-mol / kg(进料))。相反,在KBL SCWG的情况下,由于盐的沉积和随之而来的反应器入口堵塞,测试在600摄氏度下中断。 LabView软件显示出特别快速的压降,但并未解决布局中的技术问题。但是,压降的记录只是这种情况的最后征兆。在将使用非催化反应器的情况下,所研究的进口KBL中的盐含量也表明需要进行预处理以去除进口盐。 (C)2018 Elsevier Ltd.保留所有权利。

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