Li Bao, Ding Shi-Ming, Fan Cheng-Xin, Zhong Ji-Cheng, Zhao Bin, Yin Hong-Bin, Zhang Lu
State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China.
Huan Jing Ke Xue. 2008 Jan;29(1):114-20.
NH4(+)-N and PO4(3-)-P release from the sediment of Fubao Bay in Dianchi Lake were simulated using static incubations of intact sediment cores. The results showed that the releasing rates of sediment NH4(+)-N and PO4(3-)-P were 22.941-163.117 mg x (m2 x d)(-1) and 0.90-2.06 mg x (m2 x d)(-1), respectively, with large variation in different sampling areas. The lower releasing rates were associated with declined concentration gradients between sediment pore water and overlying water,which might be related to the high input of sewages in the bay. Using peeper (in situ dialysis membrane samplers) method, concentration gradients of NH4(+)-N and PO4(3-)-P were obtained at the interstitial water-overlying water profiles. Based on calculations using the Fick's First Law,the releasing rates of sediment NH4(+)-N and PO4(3-)-P were estimated at 2.85-81.96 mg x (m2 x d)(-1) and 0.118-0.265 mg x (m2 x d)(-1), respectively. Comparison of the two methods using to estimate the fluxes of sediment NH4(+)-N and PO4(3-)-P, the NH4(+)-N and PO4(3-)-P flux from the calculation using Fick's First Law was lower than that using static incubations. For the whole bay,the area-weighted releasing fluxes of NH4(+)-N and PO4(3-)-P from static incubations were estimated to be (49.9 +/- 8.8) t x a(-1) and (0.79 +/- 0.53) t x a(-1), respectively.
采用完整沉积物柱样静态培养的方法,模拟了滇池福保湾沉积物中NH₄⁺-N和PO₄³⁻-P的释放情况。结果表明,沉积物NH₄⁺-N和PO₄³⁻-P的释放速率分别为22.941 - 163.117 mg·(m²·d)⁻¹和0.90 - 2.06 mg·(m²·d)⁻¹,不同采样区域差异较大。较低的释放速率与沉积物孔隙水和上覆水之间浓度梯度的降低有关,这可能与该湾污水的高输入量有关。采用peeper(原位透析膜采样器)方法,获得了间隙水-上覆水剖面中NH₄⁺-N和PO₄³⁻-P的浓度梯度。基于菲克第一定律进行计算,沉积物NH₄⁺-N和PO₄³⁻-P的释放速率分别估计为2.85 - 81.96 mg·(m²·d)⁻¹和0.118 - 0.265 mg·(m²·d)⁻¹。比较两种用于估算沉积物NH₄⁺-N和PO₄³⁻-P通量的方法,利用菲克第一定律计算得出的NH₄⁺-N和PO₄³⁻-P通量低于静态培养法。对于整个海湾,静态培养法估算的NH₄⁺-N和PO₄³⁻-P的面积加权释放通量分别为(49.9 ± 8.8) t·a⁻¹和(0.79 ± 0.53) t·a⁻¹。