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府河-白洋淀硝酸盐来源判定及迁移转化规律 被引量:14
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作者 梁慧雅 翟德勤 +2 位作者 孔晓乐 袁瑞强 王仕琴 《中国生态农业学报》 CSCD 北大核心 2017年第8期1236-1244,共9页
近年来白洋淀流域内经济高速发展、人口增加,生活污水排放量增大,严重威胁府河和白洋淀水质,其中硝酸盐浓度过高引发的水体富营养化是河流系统面临的重要难题。以白洋淀和唯一一条常年有水的入淀河流——府河为研究对象,结合水化学、水... 近年来白洋淀流域内经济高速发展、人口增加,生活污水排放量增大,严重威胁府河和白洋淀水质,其中硝酸盐浓度过高引发的水体富营养化是河流系统面临的重要难题。以白洋淀和唯一一条常年有水的入淀河流——府河为研究对象,结合水化学、水中氢氧同位素(δ~2H、δ^(18)O)和硝酸盐氮同位素(δ^(15)N)的方法 ,分析2008—2016年水化学特征和水化学类型变化,明确府河-白洋淀淀区硝酸盐污染来源以及沿程迁移转化规律,为其水质富营养化管理提供参考。研究结果表明:府河2008年硝酸盐δ^(15)N值>10‰,2014年硝酸盐δ^(15)N值的变化范围是2.07‰~18.49‰,府河硝酸盐主要来自于保定市和沿府河村落的生活污水;但2009年硝酸盐δ^(15)N值的变化范围是-3.7‰~4‰,府河硝酸盐主要来源于工业废水。白洋淀淀区2008年和2014年硝酸盐δ^(15)N值的变化范围分别是5.8‰~11.7‰和3.31‰~12.53‰,2009年δ^(15)N值的变化范围是-3.8‰~0.7‰,说明府河的生活污水和工业废水是白洋淀淀区硝酸盐的主要来源。2008—2014年Cl^-和SO_4^(2-)浓度比例逐渐减小,工业废水和生活污水的排入受到控制;2009年因工业废水的排放NO3-浓度超过50 mg·L^(-1),2014年和2016年NO_3^-浓度未超标;控制硝酸盐浓度变化的主要因素是降水稀释、外源输入及反硝化脱氮作用,当溶解氧(DO)小于2 mg·L^(-1)时,硝酸盐的减少主要受反硝化作用影响。 展开更多
关键词 府河-白洋淀流域 水质 水体富营养化 硝酸盐 氢氧同位素 氮同位素 水化学特征
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Response of Vegetation Cover Change to Drought at Different Time-scales in the Beijing-Tianjin Sandstorm Source Region,China
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作者 CAO Bo kong xiaole +3 位作者 WANG Yixuan LIU Hang PEI Hongwei SHEN Yan-Jun 《Chinese Geographical Science》 SCIE CSCD 2021年第3期491-505,共15页
Dominated by an arid and semiarid continental climate,the Beijing-Tianjin Sandstorm Source Region(BTSSR)is a typical ecologically fragile region with frequently occurring droughts.To provide information for regional v... Dominated by an arid and semiarid continental climate,the Beijing-Tianjin Sandstorm Source Region(BTSSR)is a typical ecologically fragile region with frequently occurring droughts.To provide information for regional vegetation protection and drought prevention,we assessed the relations between vegetation cover change(measured by the Normalized Difference Vegetation Index,NDVI)and the Standardized Precipitation Evapotranspiration Index(SPEI)at different time-scales,in different growth stages,in different subregions and for different vegetation types based on the Pearson's correlation coefficient in the BTSSR from 2000 to 2017.Results showed that 88.19%of the vegetated areas experienced increased NDVI in the growing season;48.3%of the vegetated areas experi-enced significantly increased NDVI(P<0.05)and were mainly in the south of the BTSSR.During the growing season,a wetter climate contributed to the increased vegetation cover from 2000 to 2017,and NDVI anomalies were closely related to SPEI.The maximum correlation coefficient in the growing season(Rmax)was significantly positive(P<0.05)in 97.84%of the total vegetated areas.In the vegetated areas with significantly positive Rmax,pixels with short time-scales(1-3 mon)accounted for the largest proportion(33.9%).The sensitivity of vegetation to the impact of drought rose first and then decreased in the growing season,with a peak in July.Compared with two subregions in the south,subregions in the north of the BTSSR were more sensitive to the impacts of drought variations,especially in the Xilingol Plateau and Wuzhumuqin Basin.All four major vegetation types were sensitive to the effects of drought variations,especially grasslands.The time-scales of the most impacting droughts varied with growth stages,regions,and vegetation types.These results can help us understand the relations between vegetation and droughts,which are important for ecological restoration and drought prevention. 展开更多
关键词 vegetation cover change standardized precipitation evapotranspiration index(SPEI) ecological restoration drought prevention Beijing-Tianjin Sandstorm Source Region(BTSSR)Citation:CAO Bo KONG Xiaole WANG Yixuan LIU Hang
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