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Evaluation of the thermal and environmental stability of switchgrass biochars by Py-GC-MS

机译:用Py-GC-MS评价柳枝bio生物炭的热和环境稳定性

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摘要

Flash pyrolysis GC-MS (Py-GC-MS) was applied to the characterisation of 35 biochars synthesised from switchgrass with a bench scale reactor at different temperatures (400-700 ℃) and residence times (1-20 min). Py-GC-MS data were compared with the molar hydrogen to carbon ratios (H/C) taken as an index of the charring intensity along with other parameters. O/C ratios and biochar yields were directly correlated with H/C ratios, while ash, total carbon and pH were inversely correlated. A weak inverse correlation was found between polycyclic aromatic hydrocarbon (PAH) concentrations and H/C. The intensity and variety of pyrolysis products in the pyrograms decreased with decreasing H/C ratios, so that pyrograms of highly carbonised biochars (H/C < 0.4) were principally characterised by benzene, pyrrole, toluene, C_2-benzenes, benzonitrile, benzofuran, naphthalene, diphenyl, phenanthrene. These compounds were taken as representative of a highly carbonised, but thermally labile portion of biochar. Their relative abundance (% charred) with respect to pyrolysis products representative of weakly charred lignocelluloses was linearly correlated with H/C (R= -0.93). Good correlations were found between specific pyrolysis product ratios and H/C ratios. Four selected biochars were mixed with soil and subjected to short respiration rate experiments (220 days). Biochars with a moderate (H/C ~ 0.6) and high (H/C ~ 0.4) degree of carbonisation produced different pyrograms, but exhibited the same degradation rates, with a much lower conversion into CO_2 than the weakly carbonised sample (H/C ~ 1.5) characterised by a high proportion of hemicellulose/cellulose markers in the pyrolysate.
机译:应用快速热解GC-MS(Py-GC-MS)表征了用台式规模反应器在不同温度(400-700℃)和停留时间(1-20分钟)下从柳枝synthesized合成的35种生物炭。将Py-GC-MS数据与氢碳摩尔比(H / C)以及作为其他参数的炭化强度指标进行比较。 O / C比和生物炭产量与H / C比直接相关,而灰分,总碳和pH值呈负相关。发现多环芳烃(PAH)浓度与H / C之间存在弱的反相关关系。随着H / C比的降低,热解图中的热解产物的强度和种类降低,因此高度碳化的生物炭(H / C <0.4)的热解图主要由苯,吡咯,甲苯,C_2-苯,苄腈,苯并呋喃,萘,联苯,菲。这些化合物被认为是生物炭的高度碳化但热不稳定的部分的代表。它们相对于代表弱炭化木质纤维素的热解产物的相对丰度(%炭化)与H / C线性相关(R = -0.93)。在特定的热解产物比率和H / C比率之间发现良好的相关性。将四种选定的生物炭与土壤混合,并进行短时呼吸速率实验(220天)。具有中等碳化度(H / C〜0.6)和高碳化度(H / C〜0.4)的生物炭产生不同的热解图,但降解速率相同,与弱碳化样品(H / C)相比,转化为CO_2的比例要低得多〜1.5)的特征是在热解产物中半纤维素/纤维素标记物的比例很高。

著录项

  • 来源
    《Journal of Analytical & Applied Pyrolysis》 |2014年第11期|239-247|共9页
  • 作者单位

    C.I.R.I. Energia eAmbiente and C.I.R.S.A., Ravenna Campus, Laboratori di Scienze Ambientali, Universita di Bologna, via S. Alberto 163, 48123-I Ravenna, Italy;

    C.I.R.I. Energia eAmbiente and C.I.R.S.A., Ravenna Campus, Laboratori di Scienze Ambientali, Universita di Bologna, via S. Alberto 163, 48123-I Ravenna, Italy;

    C.I.R.I. Energia eAmbiente and C.I.R.S.A., Ravenna Campus, Laboratori di Scienze Ambientali, Universita di Bologna, via S. Alberto 163, 48123-I Ravenna, Italy,Dipartimento di Chimica G. Ciamician, Universita di Bologna, via Selmi 2,40126 Bologna, Italy;

    C.I.R.I. Energia eAmbiente and C.I.R.S.A., Ravenna Campus, Laboratori di Scienze Ambientali, Universita di Bologna, via S. Alberto 163, 48123-I Ravenna, Italy,Dipartimento di Chimica G. Ciamician, Universita di Bologna, via Selmi 2,40126 Bologna, Italy;

    C.I.R.I. Energia eAmbiente and C.I.R.S.A., Ravenna Campus, Laboratori di Scienze Ambientali, Universita di Bologna, via S. Alberto 163, 48123-I Ravenna, Italy,Dipartimento di Chimica G. Ciamician, Universita di Bologna, via Selmi 2,40126 Bologna, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Py-GC-MS; Black carbon; Biochar; Molecular markers; Thermal stability;

    机译:py-GC-MS;黑炭;生物炭分子标记热稳定性;

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