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Investigation of innovative and conventional pyrolysis of ligneous and herbaceous biomasses for biochar production

机译:用于生物炭生产的木质和草本生物质的创新性和常规热解研究

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In this work three biomasses, two ligneous (rubberwood and eucalyptus) and one herbaceous (Phragmites austrails), were fed to three different pyrolysis reactors: the Jiggled Bed Reactor (JBR) and a Mechanically Fluidized Reactor (MFR), working in slow batch pyrolysis mode, and a Bubbling Bed Reactor (BBR) operating as a continuous fast pyrolysis process. The obtained biochars were successively physically activated in the batch JBR. The research had three objectives: 1. Investigate biochar production through two different pyrolysis routes (slow-intermediate batch vs fast-continuous) and three different reactor designs (MFR vs BBR vs JBR); 2. Analyze the efficiency of biochar physical activation processes performed through JBR reactor; 3. Compare activated biochars to evaluate whether an herbaceous feedstock may be effective as ligneous biomasses. The results of the study disclosed a good validation of the performances of the JBR. In detail, the two-step JBR process (bio-char production + activation) resulted in the highest yields. Secondly, it returned analogous values of surface area (385 m(2) g(-1)) and micro-pores area (283 m(2) g(-1)) respectively, compared to the BBR and the MFR. Thirdly, micro-pore volume (0.13 cm(3) g(-1)) and pore size (21 angstrom) were similar to the values obtained with both the MFR and the BBR. Finally, the overall results demonstrated that Phragmites australis can be employed for the production of biochar and activated carbon, showing a behavior similar to ligneous biomasses.
机译:在这项工作中,将三种生物质(两种木质素(橡胶木和桉树)和一种草本生物质(芦苇))供入三个不同的热解反应器:摇床反应器(JBR)和机械流化反应器(MFR),以缓慢的间歇热解方式工作鼓泡床反应器(BBR)作为连续快速热解过程运行。将获得的生物炭在批料JBR中依次进行物理活化。该研究具有三个目标:1.通过两种不同的热解途径(慢速中批与快速连续)和三种不同的反应器设计(MFR,BBR,JBR)研究生物炭的生产; 2.分析通过JBR反应器进行的生物炭物理活化过程的效率; 3.比较活化的生物炭,以评估草本原料作为木质生物质是否有效。研究结果表明,JBR的性能得到了很好的验证。详细地说,两步JBR工艺(生物炭生产+活化)产生了最高的产量。其次,与BBR和MFR相比,它分别返回了表面积(385 m(2)g(-1))和微孔面积(283 m(2)g(-1))的相似值。第三,微孔体积(0.13 cm(3)g(-1))和孔径(21埃)与MFR和BBR所获得的值相似。最后,总体结果表明,芦苇可用于生产生物炭和活性炭,表现出类似于木质生物质的行为。

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