Department of Chemical Engineering, University of Benin, Benin, Nigeria.
Environ Monit Assess. 2010 Oct;169(1-4):607-17. doi: 10.1007/s10661-009-1200-6. Epub 2009 Nov 13.
The method of temporal moment solutions (MOM) for one-dimensional convective-dispersive solute transport involving linear equilibrium sorption and first-order degradation for time pulse sources has been applied to analyze experimental data from a soil microcosm reactor. Estimation of the pore water velocity V for a nonreactive solute was aided by the use of only the first normalized moment while the dispersion coefficient D, first-order degradation rate constant lambda, and the retardation factor R were estimated using both first and second normalized moments. These transport and degradation parameters were compared to those obtained by a transport model using a nonlinear least square curve-fitting program CXTFIT (version 2.0). Results obtained showed that the MOM fits the breakthrough curve with tailing better than the CXTFIT. The initial estimates of these parameters aided the reduction of the dimensionality of the search process of the non- steady-state model. A residual concentration of 1.12E-5 and 1.48 mg/l for naphthalene and 7.67E-4 and 1.61 mg/l for anthracene, in the axial and radial directions, respectively, suggests the preference of naphthalene during the biodegradation process. The surface concentration as depicted using three-dimensional plots showed that there is occlusion of the aromatics (naphthalene and anthracene) within the soil micropores, thereby limiting their bioavailability and in the long run increasing their toxicity.
时间矩方法(MOM)用于分析涉及线性平衡吸附和一阶降解的一维对流弥散溶质运移,该方法用于分析土壤微柱反应器中的实验数据。使用仅第一归一化矩可以估计无反应性溶质的孔隙水速度 V,而使用第一和第二归一化矩可以估计弥散系数 D、一阶降解速率常数 λ 和阻滞因子 R。这些传输和降解参数与使用非线性最小二乘曲线拟合程序 CXTFIT(版本 2.0)的传输模型得到的参数进行了比较。结果表明,MOM 比 CXTFIT 更能拟合具有拖尾的突破曲线。这些参数的初始估计有助于减少非稳态模型搜索过程的维数。萘在轴向和径向方向上的残留浓度分别为 1.12E-5 和 1.48 mg/l,蒽的残留浓度分别为 7.67E-4 和 1.61 mg/l,表明在生物降解过程中萘具有优先性。使用三维图描绘的表面浓度表明,芳烃(萘和蒽)在土壤微孔内被封闭,从而限制了它们的生物利用度,并在长期内增加了它们的毒性。