College of Resources and Environment Science, Anhui Science and Technology University, Fengyang, 233100, China.
College of Resources and Environment Science, Anhui Science and Technology University, Fengyang, 233100, China.
Chemosphere. 2020 Jul;251:126335. doi: 10.1016/j.chemosphere.2020.126335. Epub 2020 Feb 28.
Pyrolysis of biomass with phosphate compound is a promising method to improve biochar characteristics. However, how phosphate compound affects the three components of biomass during the biochar formation is still unclear. In this study, a typical phosphate compound, calcium dihydrogen phosphate (Ca(HPO)), was premixed with cellulose, hemicellulose, and lignin reagent, at the ratio of 20% (w/w) for biochar production through pyrolysis, aiming to investigate the effects of Ca(HPO) addition on biochar formation. Results show that, with Ca(HPO) additions, carbon retention of biochars from cellulose (MCBC) and hemicellulose (MHBC) increased by 63.4% and 48.3%, respectively, but that of lignin (MLBC) decreased by 6.7% due to the reactions between lignin and Ca(HPO). Moreover, the stable carbon proportion in the biochar decreased by 10.2% for MCBC, almost unchanged for MHBC, and increased by 6.15% for MLBC based on the potassium dichromate oxidation. During the pyrolysis process, Ca(HPO) addition fixed more volatile and/or labile carbon in biochar, resulting in greater carbon retention. Declined carbon stability of biochar might be caused by the inhibited formation of aromatic-C, evidenced by the Fourier transform infrared spectroscopy analysis. This study highlights the importance and potential mechanisms of calcium dihydrogen phosphate influencing the carbon retention and stability of biochar derived from three biomass components.
生物质与磷酸盐化合物共热解是一种提高生物炭特性的有前途的方法。然而,磷酸盐化合物在生物炭形成过程中如何影响生物质的三个组分仍不清楚。在这项研究中,采用典型的磷酸盐化合物磷酸二氢钙(Ca(HPO)),与纤维素、半纤维素和木质素试剂以 20%(w/w)的比例预混合,通过热解生产生物炭,旨在研究 Ca(HPO)添加对生物炭形成的影响。结果表明,添加 Ca(HPO)后,纤维素(MCBC)和半纤维素(MHBC)生物炭的碳保留率分别增加了 63.4%和 48.3%,而木质素(MLBC)的碳保留率却下降了 6.7%,这是因为木质素与 Ca(HPO)之间发生了反应。此外,基于重铬酸钾氧化,MCBC 中稳定碳的比例下降了 10.2%,MHBC 几乎不变,MLBC 增加了 6.15%。在热解过程中,Ca(HPO)的添加固定了更多的挥发性和/或不稳定的碳在生物炭中,导致更高的碳保留率。生物炭碳稳定性的下降可能是由于芳族-C 的形成受到抑制,这一点可以通过傅里叶变换红外光谱分析得到证明。本研究强调了磷酸二氢钙对三种生物质组分来源的生物炭碳保留和稳定性的重要性和潜在机制。