水热炭化温度和时间对鸡粪生物质炭性质的影响

    Effect of hydrothermal carbonization temperature and time on characteristics of bio-chars from chicken manure

    • 摘要: 水热炭化被认为是极具潜力的安全处置与资源化利用鸡粪的技术措施之一。该研究将鸡粪在190和260℃水热炭化处理不同时间(1、6和12 h),收集并测定固体产物生物质炭特性,目的在于了解水热炭化反应温度和时间对鸡粪生物质炭特性的影响。结果表明,鸡粪经过水热炭化处理后,46%~56%的干物质转化为生物质炭,C、P质量分数分别增加了5%和59%以上,而H、O、N、K质量分数则分别降低了9%~18%、26%~65%、19%~37%和92%~97%。表面电荷量降低,pH值依变性也减弱,其中有效阳离子交换量降低了50%~90%。生物质炭中1~5 μm孔隙显著减少,主要形成1和100 μm左右的孔隙。总体来看,水热炭化反应温度越高,反应时间越长,这些指标提高或降低的幅度越大,生物质炭的炭化程度越高;比起反应时间,反应温度对生物质炭性质的影响更大。该文还讨论了鸡粪生物质炭作为土壤调理剂的应用价值与潜力,研究结果可为鸡粪生物质炭在土壤改良等方面的应用提供基础数据。

       

      Abstract: Abstract: Hydrothermal carbonization is a thermochemical process for converting organic compounds into carbon-rich products, in water. It has attracted much attention as a promising large scale application, due to increasing demand for efficient biomass conversion technologies. Meanwhile, the bio-chars can be used as innovative nanometer material, adsorbent, solid fuel source and soil conditioner. The research data in literatures showed that the bio-chars as soil amendment affect soil physical, chemical, biological properties, crop production, and soil carbon sequestration. The tested feedstocks for manufacturing bio-char include poplar wood, olive residues, water hyacinth, digested maize silage, sugar beet and so on, but there has been little research on chicken manure. The main property of bio-char largely depends on the temperature and duration of hydrothermal carbonization treatment. Furthermore, bio-char properties primarily decide its application and benefits to soil, plant and environment. It is thus fundamental and necessary to investigate the bio-char characteristics prior to its application as a soil amendment. In this study, the fresh chicken manure was hydrothermally treated at 190 ℃ and 260 ℃ for 1, 6 and 12 h, respectively. The collected solid products were determined for the physical and chemical properties. The aim was to investigate the changes of properties with reaction temperature and duration. The results showed that the hydrothermal carbonization treatment led to the increases of C and P contents by more than 5% and 59%, respectively. But the process decreased of H, O, N and K contents by 9%-18%, 26%-65%, 19%-37% and 92%-97%, respectively. Both the amount of surface charge and its correlation with pH values in the medium were reduced after hydrothermal carbonization treatment. As a result, the effective cation exchange capacity was decreased by 50%-90%. Meanwhile, the hydrothermal carbonization facilitated the 1 and 100 μm pore structure development with a decrease in 1-5 μm pore volume. Overall, the higher reaction temperature and longer residence time caused greater changes in above indexes and higher degree of carbonization of bio-chars. The temperature had the larger impact on properties of bio-chars than reaction duration. In this paper, we also discussed the potential value of chicken manure bio-char as a soil conditioner. Our research result from this study can provide basic data for the application of chicken manure bio-char in improving soil fertility.

       

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