针对生物质中Cl和碱金属含量高的特点,研究生物质与煤混燃过程中Hg的氧化机制。使用化学热力学软件Chemical Equilibrium with Applications(CEA)建立C/H/O/N/S/Cl/K/Na模型,分析碱金属元素K、Na与非金属元素Cl和S的反应,发现1100K以下Cl仍然主要以HCl形式存在,SO2的含量逐渐减少,碱金属主要以碱金属硫酸盐(A2SO4)的形式存在,这对Hg的氧化反应变得更为有利,同时随着生物质的添加,这种趋势更为明显。同时使用动力学软件Chemkin4.1构建了Hg/C/H/O/N/S/Cl/K/Na的化学和气相平衡模型,进一步研究了生物质与煤混燃过程中对Hg氧化的影响。计算结果表明,生物质与煤之比越高,对Hg的氧化越有利,生物质中高含量的Cl是促进Hg氧化最主要的因素,而K、Na的存在对Hg的氧化有进一步的促进作用,这进一步证实了热力学计算结果。
Structure characteristics about activated carbon fibers (ACF) and polyimide (P84) doped ACF modified by HNO3 solution were studied to apply in mercury removal in coal-fired flue gases. The P84, which was always used in the non-woven fabric for bag filter, was intermingled with polyacrylonitrile-based ACF (PAN-ACF) in the weight ratio of 1∶1 in order to make the doped ACF with P84 (doped-ACF-P84). Then the doped-ACF-P84 fibers were modified by HNO3 solution. The structure and morphology of doped-ACF-P84 were characterized and compared with those of ACF and doped-ACF-P84 modified by HNO3solution. The results show that the modified doped-ACF-P84 fibers have almost the same pore structure and specific surface area comparing with the original one. However, contrasted with the original PAN-ACF, the doped-ACF-P84 fibers modified by HNO3 solution have more oxygen-containing groups used for mercury removal. In particular, they have more lactone and carboxyl groups.