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选取贵州百花湖入湖支流麦西河为对象,研究了上覆水—孔隙水—沉积物体系氮的形态差异,结果表明:麦西河上覆水中,以硝态氮(NO-3-N)为主,氨态氮(NH+4-N)次之,亚硝态氮(NO-2-N)最低;孔隙水中,溶解无机氮中以NH+4-N为主, NO-3-N次之, NO-2-N最低;沉积物中,总氮(TN)的含量为1110.67~4413.16mg/kg;固定态铵含量为34.56~170.05mg/kg,占TN的1.47%~6.25%;可交换态氮以NH+4-N为主, NO-3-N次之, NO-2-N最低。孔隙水NH+4-N是上覆水NH+4-N的2.65~19.51倍,上覆水NO-3-N是孔隙水NO-3-N的7.14~20.43倍。沉积物TN与孔隙溶解水无机氮(DIN)、孔隙水NH+4-N、沉积物可交换态氮和沉积物可交换性NH+4-N呈显著正相关;在沉积物中,可交换性NO-3-N与可交换性NH+4-N及可交换态氮呈显著正相关,可交换性NH+4-N与可交换态氮呈极显著正相关;孔隙水溶解无机氮与孔隙水NH+4-N呈极显著正相关。麦西河不同介质中氮的迁移关系则表现为:由于浓度梯度,上覆水中的NO-3-N扩散到孔隙水中,进而累积到沉积物中;沉积物的可交换性NH+4-N,进入孔隙水,最终扩散到上覆水中。   相似文献   
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百花湖水体氮的空间分布研究   总被引:2,自引:1,他引:1  
初步探讨了百花湖水体中氮的空间分布特征,并分析了氮及溶解氧(DO)的相关性。对8个站位的表层、4m、8m及12m水体中总氮、氨氮、硝酸盐氮、亚硝酸盐氮及溶解氧进行了测定。结果表明,百花湖水体中总氮的平均含量为1.18mg/L,氨氮的平均含量为0.144mg/L,硝酸盐氮的平均含量为0.20mg/L,亚硝酸盐氮的平均含量为0.018mg/L。百花湖入湖口附近的1号采样点总氮、氨氮和硝酸盐氮的平均浓度都较其它采样点高。分析表明百花湖中DO浓度与硝酸盐氮和亚硝酸盐氮呈负相关,相关系数分别为-0.629、-0.724。   相似文献   
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The bioavailability of five divalent cationic heavy metals(Pb,Cd,Cu,Zn and Ni) in 10 superficial sediment samples from Baihua Lake was assessed based on the molar ratio of simultaneously extracted metals(SEMs) to acid volatile sulfide(AVS).Atomic absorption spectrometry(AAS) and X-ray powder diffraction(XRD) were used to determine the heavy metal concentrations and examine the mineralogy of the crystalline phases,respectively.The AVS loadings in sediments from Baihua Lake ranged from 64.30 to 350.08 μmol/g(dry weight).The corresponding SEM levels for the sampling sites varied from 1.770 to 14.660 μmol/g.The molar ratio of SEMs to AVS ranged from 0.014 to 0.084 with a mean value of 0.034.The XRD analysis also confirmed the presence of some metal sulfides in sediments from Baihua Lake.The SEMs/AVS ratios for all sampling sites were significantly lower than 1.0,indicating that AVS in the sediments was sufficient to bind the five heavy metals;thus,these heavy metals are currently not significantly bioavailable to benthic organisms.Comparing the SEMs results to published guideline values for metal toxicity to benthic organisms in sediments,however,suggests that Zn and Ni pose a risk at some sampling locations in Baihua Lake.  相似文献   
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