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不同组成和特性的污水污泥在不同温度下获得的生物炭老化机制。

Mechanism of aging of biochars obtained at different temperatures from sewage sludges with different composition and character.

机构信息

Department of Radiochemistry and Environmental Chemistry, Institute of Chemical Sciences, Faculty of Chemistry, Maria Curie-Sklodowska University, 3 Maria Curie-Sklodowska Square, 20-031, Lublin, Poland.

Department of Radiochemistry and Environmental Chemistry, Institute of Chemical Sciences, Faculty of Chemistry, Maria Curie-Sklodowska University, 3 Maria Curie-Sklodowska Square, 20-031, Lublin, Poland.

出版信息

Chemosphere. 2022 Jan;287(Pt 3):132258. doi: 10.1016/j.chemosphere.2021.132258. Epub 2021 Sep 14.

Abstract

The aim of this study was to determine the effect of abiotic aging of sewage sludge (SSL)-derived biochars on their physicochemical properties and in consequence on their stability. Biochars produced at 500 or 700 °C from SSLs with a different composition and properties were incubated at different temperatures (-20, 4, 20, 60, and 90 °C) for 6 and 12 months. Pristine and aged biochars were characterized in terms of their composition and properties using a range of complementary methods. The results showed that SSL-derived biochars will not be as stable as previously thought in the long term. The stability of the SSL-derived biochars was closely related to the content and character of C. The biochars that had more C in their composition and, apart from aromatic C, also aliphatic matter/carbon substances deposited in surface pores (i.e. those produced from SSL with a lower initial ash content and a lower degree of aromaticity) were less stable than the biochars with a lower C content and a typically aromatic character of C (i.e. those derived from SSL with a higher initial ash content and a higher degree of aromaticity). Their oxidation led to partial mineralization of aliphatic chains or organic surface film and manifested itself in a greater changes in their properties. The low-temperature biochars (BC-500) with lower aromaticity were found to be more susceptible to oxidation than the high-temperature ones (BC-700) with higher aromaticity. The more aromatic structure of C limited access of O molecules to biochar interior, due to which the processes occurring during aging were concentrated in their surface layer and their properties were less change. It can therefore be concluded that pyrolysis of SSL with higher aromaticity and a lower organic content and higher pyrolysis temperatures will lead to obtaining more stable SSL-derived biochars.

摘要

本研究旨在确定污水污泥(SSL)衍生生物炭的非生物老化对其理化性质的影响,进而影响其稳定性。采用不同组成和性质的 SSL 在 500 或 700°C 下制备生物炭,并在不同温度(-20、4、20、60 和 90°C)下孵育 6 和 12 个月。采用一系列互补方法,根据组成和性质对原始和老化生物炭进行了表征。结果表明,SSL 衍生生物炭在长期内不会像以前认为的那样稳定。SSL 衍生生物炭的稳定性与其 C 的含量和性质密切相关。组成中 C 含量较高且除芳香族 C 外,表面孔隙中还沉积有脂肪族物质/碳物质的生物炭(即那些由初始灰分含量较低且芳香度较低的 SSL 制备的生物炭)比 C 含量较低且具有典型芳香特性的生物炭(即那些由初始灰分含量较高且芳香度较高的 SSL 制备的生物炭)稳定性差。它们的氧化导致脂肪族链或有机表面膜的部分矿化,并表现在其性质发生更大的变化。发现具有较低芳香度的低温生物炭(BC-500)比具有较高芳香度的高温生物炭(BC-700)更容易氧化。C 的芳香结构限制了 O 分子进入生物炭内部的通道,因此老化过程中发生的过程集中在其表面层,其性质变化较小。因此,可以得出结论,较高芳香度、较低有机含量和较高热解温度的 SSL 的热解将导致获得更稳定的 SSL 衍生生物炭。

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