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首页> 外文期刊>Journal of the Indian Society of Remote Sensing >Response of Vegetation Productivity to Climate Change and Human Activities in the Shaanxi-Gansu-Ningxia Region, China
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Response of Vegetation Productivity to Climate Change and Human Activities in the Shaanxi-Gansu-Ningxia Region, China

机译:中国陕西甘肃宁夏地区植被生产力与气候变化与人类活动的响应

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摘要

Based on the MODIS vegetation net primary productivity (NPP) product data (MOD17A3-NPP) and evapotranspiration (ET) product data (MOD16A3-ET) of 2000-2014, this study adopted linear trend analysis, correlation coefficient, partial correlation coefficient and other mathematical analysis methods to analyse both the temporal-spatial evolution of vegetation NPP in the Shaanxi-Gansu-Ningxia Region (SGNR) in the 15 years, and the influence of meteorological factors (temperature, precipitation and ET) and human activities on its vegetation NPP. The results indicated that (1) from 2000 to 2014 the vegetation annual net primary productivity (ANPP) of the study region significantly increased from 169.06 g C/(m(2) a) to 262.49 g C/(m(2) a), having an annual rate of increase of 4.57 g C/(m(2) a); (2) the increase of ANPP was significant for more than 84% of the study region, and extremely significant for more than 70%; (3) no obvious correlation was detected between ANPP and annual average temperature (AAT), Areas which had a significant positive correlation between ANPP and annual precipitation (AP) were mainly concentrated in arid and semi-arid areas with an AP of less than 400 mm; (4) a significant positive correlation was detected between ANPP and AET in more than 90% of the study region; (5) a gradual improvement in ANPP and a continuous improvement in the ecological environment were identified in SGNR. These improvements were inseparable from the decisive role played by human activities.
机译:基于MODIS植被净初级生产率(NPP)产品数据(MOD17A3-NPP)和蒸散(ET)产品数据(ET)产品数据(ET)的产品数据(Mod16A3-ET),本研究采用了线性趋势分析,相关系数,部分相关系数和其他在15年内分析陕西 - 甘肃宁夏(SGNR)植被NPP植被NPP的时间空间演变的数学分析方法,以及气象因素(温度,降水和et)和人类活动对植被NPP的影响。结果表明(1)从2000年到2014年,研究区域的植被年净初级生产率(ANPP)从169.06g c /(m(2))至262.49g c /(m(2)a)显着增加,年增长率为4.57克/(m(2)a); (2)ANPP的增加对于超过84%的研究区域的显着显着,并且极为显着超过70%; (3)在ANPP和年平均气温(AAT)之间未检测到明显的相关性,ANPP与年降水(AP)之间具有显着正相关的区域主要集中在干旱和半干旱地区,AP少于400毫米; (4)超过90%的研究区的ANPP和AET之间检测到显着的阳性相关性; (5)在SGNR中鉴定了ANPP的逐步改善和生态环境的持续改善。这些改进与人类活动发挥的决定性作用不可分割。

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