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1.
1980s-2010s中国陆地生态系统土壤碳储量的变化   总被引:6,自引:2,他引:4  
徐丽  于贵瑞  何念鹏 《地理学报》2018,73(11):2150-2167
土壤作为陆地生态系统有机碳库的主体,在全球碳循环中起着重要作用。然而,当前区域土壤有机碳储量的变化情况及其碳源/汇功能仍然不清楚。利用中国1980s (1979-1985年)第二次土壤普查数据,同时收集整理2010s(2004-2014年)已发表的有关中国土壤有机碳储量(0~20 cm和0~100 cm)的文献数据,综合评估了1980s-2010s中国土壤有机碳储量的变化情况,并分析森林、草地、农田和湿地等生态系统土壤碳源/汇功能;同时结合现有的中国植被碳储量变化研究,进一步探讨了1980s-2010s中国陆地生态系统的碳源/汇效应。研究发现:① 1980s-2010s中国土壤(0~100 cm)有机碳储量净增长3.04±1.65 Pg C,增长速率为0.101±0.055 Pg C yr-1,其中表层土壤(0~20 cm)的碳汇效应明显;② 森林土壤是固碳主体,净增长2.52±0.77 Pg C,而草地和农田土壤增长有限,分别为0.40±0.78和0.07±0.31 Pg C;③ 湿地有机碳储量净减少0.76±0.29 Pg C;④ 中国陆地生态系统的碳汇效应较强,总碳汇量相当于同期(1980-2009年)化石燃料和水泥生产排放CO2总量的14.85%~27.79%。随着中国森林和草地生态系统植被和土壤的进一步保护、恢复和重建,中国陆地生态系统具有较大的碳汇潜力,在未来全球碳平衡中将发挥更大的作用。  相似文献   

2.
The National Forest Inventory (NFI) is an important resource for estimating the national carbon balance (These data were unpublished data, and we could only obtain the data before 2008 through data search by now). Based on the data from sample plots, the literature, and NFI, as well as the relationships between volume, biomass, annual litterfall and soil respiration of different forest types, the net ecosystem production (NEP), changes in forest biomass carbon storage (△Cbiomass) and non-respiratory losses (NR) of China’s forests during 1999-2008 were estimated, and the forest soil carbon sequestration (△Csoil) was assessed according to the carbon balance principle of the forest ecosystem (△Csoil = NEP - NR - Cbiomass). The results showed that the total NEP, Cbiomass, NR and △Csoil values for China’s forests were 157.530, 48.704, 31.033 and 77.793 Tg C yr-1 respectively, and average NEP, △Cbiomass, NR, and △Csoil values were 101.247, 31.303, 19.945 and 49.999 g C m-2 yr-1 respectively. There were large spatial differences in forest soil carbon sequestration in different parts of China. The forest soil in Jiangxi, Hunan, Zhejiang, Fujian, Anhui, Shanxi, Shaanxi, Guangxi and Liaoning served as carbon sources and the carbon released was about 25.507 Tg C yr-1. The other 22 provinces served as carbon sinks and the average carbon sequestration by forest soil came to 103.300 Tg C yr-1. This research established a method for evaluating soil carbon sequestration by China’s forests based on the NFI, which is a useful supplement to current statistical data-based studies on the forest ecosystem carbon cycle, and can promote comparable studies on forest soil carbon sequestration with consistent research methods at the regional scale.  相似文献   

3.
中国喀斯特关键带岩石风化碳汇评估及其生态服务功能   总被引:7,自引:2,他引:5  
喀斯特地区的岩石风化固碳被认为是全球遗漏碳汇之一,中国喀斯特地区的分布面积达344万km2,目前对其岩溶碳汇缺乏精确、系统的评估,对碳汇产生的机制仍存在争议。本文通过对喀斯特地区碳汇研究的回顾,详细介绍了适用于喀斯特地区固碳速率的估算方法,并对喀斯特地区的岩石风化碳汇进行再评估,然后将地球关键带科学概念引入喀斯特生态系统,阐述喀斯特关键带碳汇研究对生态系统服务和功能的意义。研究结果表明,中国喀斯特地区每年因岩溶作用产生的碳汇为4.74 Tg C yr-1,未来中国需要加强岩石—土壤—水体—生物—大气复杂交互系统的基础数据收集,以明确各界面碳通量,对喀斯特关键带碳汇进行多尺度、多方法、全方位联合评估,在改善喀斯特生态系统功能、科学管理区域和国家碳收支及全球变化研究等方面为政府和学者提供参考。  相似文献   

4.
The priming effect is well acknowledged in soil systems but the effect of nitrogen (N) fertilization remains elusive. To explore how N modifies the priming effect in soil organic matter (SOM), one in situ experiment with 13C labeled glucose addition (0.4 mg C g-1 soil, 3.4 atom % 13C) was conducted on soil plots fertilized with three gradients of urea (0, 4 and 16 g N m-2 yr-1). After glucose addition, the soil CO2 concentration and phospholipid fatty acid (PLFA) were measured on day 3, 7, 21 and 35. The study found that N fertilization decreased soil CO2, PLFA and the fungi to bacteria ratio. Glucose triggered the strongest positive priming in soil at 0 g N m-2 yr-2, meanwhile N fertilization decreased SOM-derived CO2. Soil at 4 g N m-2 yr-2 released the largest amount of glucose-derived carbon (C), likely due to favorable nutrient stoichiometry between C and N. Stable microbial community biomass and composition during early sampling suggests “apparent priming” in this grassland. This study concludes that N fertilization inhibited soil priming in semi-arid grassland, and shifted microbial utilization of C substrate from SOM to added labile C. Diverse microbial functions might be playing a crucial role in soil priming and requires attention in future N fertilization studies.  相似文献   

5.
1980s-2010s内蒙古草地表层土壤有机碳储量及其变化   总被引:1,自引:1,他引:0  
戴尔阜  翟瑞雪  葛全胜  吴秀芹 《地理学报》2014,69(11):1651-1660
以我国内蒙古草原为研究区域,结合1982-1988年第二次土壤普查资料以及2011-2012年实地考察数据,构建了基于遥感数据和土壤数据的区域表层土壤有机碳储量估算方法,对研究区1980s和2010s表层土壤有机碳储量、空间分布特征及其变化进行研究,结果表明:(1) 1980s、2010s内蒙古草地表层土壤 (0~20 cm) 有机碳储量分别为2.05 Pg C、2.17 Pg C,土壤有机碳密度约为3.48 kg C·m-2、3.69 kg C·m-2,其空间分布上呈现从草甸草原、典型草原、荒漠草原逐渐降低的特征;(2) 1982-2012年间,内蒙古草地表层土壤有机碳储量略有增加,但增加幅度较小,其中草甸草原和典型草原表层土壤有机碳储量增加,荒漠草原则表现为减少。研究结果将为研究区因地制宜地采取固碳措施,实现草地可持续管理提供科学参考。  相似文献   

6.
区域耕层土壤有机碳(Soil Organic Carbon, SOC)调查是明确全球土壤碳储量和认识土壤碳循环的重要任务。利用甘肃省1980s、2000s、2020s等3个时期的耕层土壤调查数据,通过计算耕层土壤有机碳密度(Soil Organic Carbon Density,SOCD),估算了甘肃省耕层有机碳储量。结果显示:(1)1980s、2000s、2020s甘肃省耕层SOC储量分别为97.68、109.14、123.13 Tg,近40年固碳总量约为25.45 Tg,固碳速率为0.012±0.01 kg·m-2·a-1,说明当前的农田管理措施有利于研究区耕地土壤长期固碳;40年间河西绿洲灌区、黄土高原区和陇南山地区耕层SOC储量呈增加趋势,甘南高原呈下降趋势。(2)从不同土壤类型来看,黄棕壤固碳速率最大,栗钙土最小。(3)近40年间甘肃省耕层SOC储量总体呈递增趋势,化肥、有机肥施用量以及秸秆还田量的持续增加,提高了作物归还量,进而增加了耕层有机物质含量,最终促进了耕层SOC的累积。  相似文献   

7.
Soil carbon sequestration and potential has been a focal issue in global carbon research. Under the background of global change, the estimation of the size as well as its change of soil organic carbon(SOC) storage is of great importance. Based on soil data from the second national soil survey and field survey during 2011–2012, by using the regression method between sampling soil data and remote sensing data, this paper aimed to investigate spatial distribution and changes of topsoil(0–20 cm) organic carbon storage in grasslands of Inner Mongolia between the 1980 s and 2010 s. The results showed that:(1) the SOC storage in grasslands of Inner Mongolia between the 1980 s and 2010 s was estimated to be 2.05 and 2.17 Pg C, with an average density of 3.48 and 3.69 kg C·m–2, respectively. The SOC storage was mainly distributed in the typical steppe and meadow steppe, which accounted for over 98% of the total SOC storage. The spatial distribution showed a decreased trend from the meadow steppe, typical steppe to the desert steppe, corresponding to the temperature and precipitation gradient.(2) SOC changes during 1982–2012 were estimated to be 0.12 Pg C, at 7.00 g C·m–2·yr–1, which didn't show a significant change, indicating that SOC storage in grasslands of Inner Mongolia remained relatively stable over this period. However, topsoil organic carbon showed different trends of carbon source/sink during the past three decades. Meadow steppe and typical steppe had sequestered 0.15 and 0.03 Pg C, respectively, served as a carbon sink; while desert steppe lost 0.06 Pg C, served as a carbon source. It appears that SOC storage in grassland ecosystem may respond differently to climate change, related to vegetation type, regional climate type and grazing intensity. These results might give advice to decision makers on adopting suitable countermeasures for sustainable grassland utilization and protection.  相似文献   

8.
大气氮沉降可能会影响陆地生态系统的碳通量。本文主要目的是探讨在氮素缺乏的草地生态系统中,氮素添加是否会增加CO2通量。本研究于2008和2009生长季进行,采用静态箱-气相色谱法研究CO2通量对氮沉降增加的响应。结果表明,2年的氮素添加并没有显著影响土壤NH4+含量,NO3-含量只是在2009年生长季后期有所增加。高氮处理增加了CO2通量,而低氮处理在2008年抑制了CO2通量,2009年后期增加了CO2通量。而且氮素添加显著增加了地上生物量和根系的生物量。CO2通量与土壤水分、土壤温度的关系并没有因为氮素的添加而改变,但是氮素添加增加了CO2通量对土壤水分和土壤温度的敏感性。这些结果表明,在未来大气氮沉降增加的背景下,呼伦贝尔草甸草原CO2通量有可能会增加。  相似文献   

9.
人工固沙区土壤碳分布及其与土壤属性的关系   总被引:3,自引:0,他引:3  
陈永乐  张志山  赵洋 《中国沙漠》2017,37(2):296-304
选择腾格里沙漠东南缘沙坡头地区不同年代建立的人工固沙林(1964、1981、1990年)及临近的流动沙丘,对0~3.0 m剖面上的土壤进行取样和分析,以探讨固沙植被的建立和发展对土壤碳(有机碳和无机碳)分布的影响及其与土壤属性的关系。结果表明:在流动沙丘建立人工固沙植被近50年后,表层(0~0.1 m)土壤有机碳和无机碳含量均明显增加,土壤有机碳含量为1.95 g·kg-1,是流动沙丘的6.67倍,无机碳含量为4.19 g·kg-1,是流动沙丘的1.46倍。将土壤剖面划分为3层后(0~0.4,0.4~1.0、1.0~3.0 m)分析显示,从流动沙丘到1964年固沙区,土壤有机碳密度显著增加(0.18 kg·m-2到0.52 kg·m-2),且浅层(0~0.4 m)的增加快于深层(1.0~3.0 m);同时,浅层有机碳密度在整个剖面中所占比例显著增加(14.3%到30.4%),而深层减少(64.8%到51.6%)。浅层和深层无机碳密度均有增加趋势,但差异不显著。冗余分析显示,土壤细颗粒含量、水分有效性、总氮含量、总磷含量、pH值和电导率与土壤碳密度关系密切,解释了土壤碳密度86.2%的变异。土壤有机碳密度与土壤细颗粒、总氮总磷含量及水分有效性、电导率极显著正相关(P<0.001);土壤无机碳密度与土壤细颗粒、总磷含量及水分有效性、总氮含量显著正相关(P<0.05)。在1.0~3.0 m和0~3.0 m剖面上,土壤有机碳密度与土壤水分含量分别存在显著和极显著的负相关关系(P<0.05和P<0.01)。  相似文献   

10.
于钊  李奇铮  王培源  蒋齐 《中国沙漠》2022,42(2):215-222
荒漠草地是陆地生态系统的重要组成部分,研究退化和恢复荒漠草地生态系统碳密度的变化特征,是精确评估荒漠草地在全球气候变化中作用的关键,也能为中国碳达峰和碳中和提供数据支撑和理论依据.通过野外调查取样和室内分析,研究了腾格里沙漠南缘天然荒漠草地、重度退化荒漠草地和通过植被建设恢复良好的人工-天然荒漠草地的生态系统碳密度,主...  相似文献   

11.
CO2 emissions to the atmosphere were studied in a fertilized sandy agricultural soil with and without a catch crop sown into the main crop. The catch crop was grown primarily with the purpose to decrease N-leaching but this study also wanted to find out if the catch crop could have an effect in a climate change perspective. Plots with catch crop showed decreased CO2 emissions from the soil. Since previous results have shown that catch crops effectively decrease N-leaching we recommend growing catch crops as an effective measure for helping both the climate and the eutrophication issue. Seasonal variations in CO2 emissions were pronounced with maximum emissions from the fertilized agricultural soil in June and from an adjacent unmanaged grassland in August. From the plot with catch crop emissions decreased in July and August but somewhat increased later in the autumn. Fertilized agricultural soil showed a within-soil CO2 sink after harvest, i.e. within-soil CO2 uptake. Availability of NH4+ or NO3- in the soil seems to influence the within-soil CO2 sink, with NH4+ enforcing the sink while the same amount of NO3- instead increased CO2 emissions.  相似文献   

12.
黄土高原草地和农田生态系统碳滞留时间及固碳潜力   总被引:1,自引:1,他引:0  
郭丁  李旭东  王静  傅华 《中国沙漠》2018,38(2):363-371
采用概率反演分析法估算黄土高原草地和农田生态系统各碳库滞留时间及固碳潜力。结果表明:除农田植物地上部分外,植物地上部分、地下部分、代谢性凋落物及土壤活性有机碳库滞留时间最短,为25~203d;惰性凋落物碳库滞留时间为2.4~3a;慢性有机碳库和惰性有机碳库滞留时间最长,分别为57.4~79.6a和593~598a。多年生草地的根系滞留时间显著高于农田;而农田代谢性凋落物碳库和慢性有机碳库的滞留时间显著高于草地。根据反演所得参数模拟,在当前气候和土壤条件下,农田和草地系统土壤有机碳在250a左右时达稳定状态,农田系统固碳潜力约为2 680g C·m-2,草地约为3 130g C·m-2。农田有机肥的输入能使土壤有机碳多固定4 000g C·m-2。有机肥的输入及土壤有机碳周转缓慢使耕作农田比草地更有利于土壤有机碳积累。  相似文献   

13.
中国半干旱区农田土壤碳、氮、磷含量对玉米生产的影响   总被引:1,自引:1,他引:0  
中国干旱半干旱区占据陆地大片区域,主体位于内蒙古高原、黄土高原、新疆及青藏高原。半干旱区处于季风和非季风的边缘,降水稀少,生态环境脆弱,对气候变化敏感。探究半干旱区农田生态系统有机碳对作物生产和碳储存的影响机制及固碳潜力,对提高区域作物生产水平和生态安全具有重要意义。本研究区位于中国宁夏南部典型半干旱区,基于2017—2019年主要粮食作物玉米生产对土壤有机碳以及氮磷的响应,运用农田生态系统调查取样的方法,开展耕层土壤有机碳(SOC)、全氮(STN)、全磷(STP)及碳氮比(C/N)对玉米生产水平及有机碳储存的影响研究,分析农田SOC的合理贮存范围。结果表明:(1)SOC、STN、STP含量对玉米产量影响差异显著。一定阈值内SOC、STN、STP含量及土壤C/N对玉米产量表现出积极的正效应,而当SOC、STN、STP以及C/N分别超出10.00 g·kg-1、1.00 g·kg-1、0.85 g·kg-1、8.50的阈值后,玉米产量的增长出现减缓,甚至下降趋势;(2)研究区域SOC含量从3.00 g·kg-1增加至13.00 g·kg-1的阈值,对籽粒有机碳、蛋白质、淀粉、粗脂肪、可溶性糖等含量的提升呈现积极的正效应,分别增长43.47%、77.13%、52.16%、56.92%、116.71%,均呈先快速增长,后逐渐趋于平缓趋势。而SOC对籽粒全氮和全磷呈现倒U型变化趋势。STN、STP对玉米品质的影响相对较弱;(3)研究区作物耕层SOC、STN、STP含量与生态系统固碳潜力具有较强的正相关性,而SOC、STN、STP含量过高,作物固碳潜力基本保持稳定。研究结果较好反映了研究时间段内SOC、STN、STP含量与作物生产水平及提高SOC储存的关系。本研究认为宁夏南部半干旱区,农田SOC、STN、STP、C/N的合理阈值分别为10.00—12.00 g·kg-1、0.80—1.10 g·kg-1、0.70—0.85 g·kg-1、8.00—9.00。  相似文献   

14.
李治  李国平  胡振 《干旱区地理》2017,40(2):434-440
作为应对全球气候变化的关键平台,城市尺度的低碳建设研究具有重要意义。本文以西部特大城市-西安市为例,分别从碳排放量变化趋势、未来发展目标、关键部门能耗系统分析其低碳发展现状,指出存在问题及可能的节能减排潜力,认为西安市高碳发展模式明显,面临资源禀赋差异、能源消费结构的锁定效应、能源利用效率低、城市空间结构不合理、高能耗建筑多、碳汇能力弱等问题。基于此,制定工业节能技术改造、城市空间合理布局、推广绿色建筑、社会治理创新和政策保障等对策措施。  相似文献   

15.
Elucidating the complex mechanism between urbanization, economic growth, carbon dioxide emissions is fundamental necessary to inform effective strategies on energy saving and emission reduction in China. Based on a balanced panel data of 31 provinces in China over the period 1997-2010, this study empirically examines the relationships among urbanization, economic growth and carbon dioxide (CO2) emissions at the national and regional levels using panel cointegration and vector error correction model and Granger causality tests. Results showed that urbanization, economic growth and CO2 emissions are integrated of order one. Urbanization contributes to economic growth, both of which increase CO2 emissions in China and its eastern, central and western regions. The impact of urbanization on CO2 emissions in the western region was larger than that in the eastern and central regions. But economic growth had a larger impact on CO2 emissions in the eastern region than that in the central and western regions. Panel causality analysis revealed a bidirectional long-run causal relationship among urbanization, economic growth and CO2 emissions, indicating that in the long run, urbanization does have a causal effect on economic growth in China, both of which have causal effect on CO2 emissions. At the regional level, we also found a bidirectional long-run causality between land urbanization and economic growth in eastern and central China. These results demonstrated that it might be difficult for China to pursue carbon emissions reduction policy and to control urban expansion without impeding economic growth in the long run. In the short-run, we observed a unidirectional causation running from land urbanization to CO2 emissions and from economic growth to CO2 emissions in the eastern and central regions. Further investigations revealed an inverted N-shaped relationship between CO2 emissions and economic growth in China, not supporting the environmental Kuznets curve (EKC) hypothesis. Our empirical findings have an important reference value for policy-makers in formulating effective energy saving and emission reduction strategies for China.  相似文献   

16.
杨文越  李涛  曹小曙 《地理科学》2016,36(4):491-501
通过构建交通CO2排放模型对2000~2012年中国30个省(市)的交通CO2排放时空演变特征进行了分析。并采取“由大到小”逐步回归的建模方式,在传统的固定效应模型(面板数据模型)基础上引入时间固定效应,构建了双向固定效应模型对中国交通CO2排放的社会经济、城市形态、交通发展等方面的影响因素进行研究。结果表明:2000~2012年期间,中国交通CO2排放总量和人均交通CO2排放量分别以9.29%和8.69%的年均增速增长,前者的区域差异呈先增后减趋势,后者的区域差异则首先呈周期性波动,而后一直保持减少趋势。人均GDP和城镇居民家庭人均可支配收入对人均交通CO2排放具有显著的正向效应,表明社会经济发展和居民收入水平提高是交通CO2排放增长的主要驱动因素。城市人口密度对交通CO2排放亦具有显著的正向效应,这意味着未来中国应加强对城市人口密度的规划控制,以避免因人口过度集聚而额外增加产生交通CO2排放。公共交通发展水平对交通CO2排放增长具有显著的负向效应,但小汽车拥有率对交通CO2排放的影响并不显著。  相似文献   

17.
耿元波  罗光强 《地理学报》2010,65(9):1058-1068
利用静态暗箱-气相色谱法在植物生长旺季测算了内蒙古锡林河流域羊草草原的土壤微生物呼吸、土壤呼吸和生态系统呼吸。地温和水分是植物生长旺季呼吸最重要的影响因素。地温在水分条件适宜的情况下可以解释CO2通量的部分变化(R2 = 0.376~0.655)。土壤水分含量也可以解释土壤呼吸和生态系统呼吸的部分变化(R2 = 0.314~0.583),但基本不能解释土壤微生物呼吸的变化(R2 = 0.063)。即使在较高温度下,较低的土壤水分含量(≤ 5%) 也会显著的抑制CO2排放。长期干旱后降雨使CO2通量在高温下迅速增大。基于5 cm地温和0~10 cm土壤水分含量的双变量模型可以解释CO2通量约70%的变化。观测期间,土壤呼吸占生态系统呼吸的比例介于47.3%~72.4%之间,平均为59.4%;根呼吸占土壤呼吸的比例介于11.7%~51.7%之间,平均为20.5%。由于植物体去除引起的土壤水分含量上升可能使我们对土壤呼吸占生态系统呼吸比例的估计略微偏高,根呼吸占土壤呼吸的比例略微偏低。  相似文献   

18.
中国北方典型风沙区土壤碳氮磷化学计量特征   总被引:5,自引:2,他引:3  
研究区域尺度土壤碳(C)、氮(N)、磷(P)化学计量特征与分布格局对于认识陆地生态系统空间格局变化规律及其对全球变化与人类活动的响应具有重要意义。通过文献收集和野外调查,对中国北方典型风沙区表层土壤有机C、全N、全P化学计量特征及其沿经度和纬度的分布格局进行了研究。结果表明:(1)北方典型风沙区表层土壤有机C、全N、全P含量及C:N、C:P和N:P的平均值分别为12.2、1.2、0.8 g·kg-1及10.1、15.7、1.63,与全国水平相比,具有较低的有机C含量、全N含量、C:P、N:P及较高的全P含量;(2)农田表层土壤有机C、全N、全P含量及C:P显著高于草地表层土壤,C:N和N:P在农田和草地之间无显著差异;(3)北方典型风沙区表层土壤有机C、全N、全P元素间具有一定的耦合关系,但这种耦合关系在草地和农田间存在差异性;(4)北方风沙区草地和农田土壤有机C、全N、全P化学计量特征随纬度的增加呈逐渐增加趋势,除草地全P含量和N:P外,其余指标均与纬度呈线性关系;草地和农田土壤有机C、全N、全P化学计量特征随经度的增加呈先减小后增加的趋势,与经度呈二阶多项式分布关系。  相似文献   

19.
探析中国碳排放强度非均衡性及其演变的驱动力可以为中国制定科学合理、公平高效的区域减排方案提供科学依据。论文基于Theil指数,测算了中国2005—2015年省级尺度化石能源燃烧碳排放强度的非均衡程度;从地理区域、经济部门、能源种类和影响因素等视角解析了碳排放强度非均衡性及其变化的驱动力。研究结果表明,2005—2015年,中国碳排放强度总体上逐年降低,但其在省级尺度上的非均衡性不断增强。从地理区域来看,中国碳排放强度的非均衡性主要来源于东北、东、中、西4大区域内部,且东部和西部地区内部不断扩大的碳强度差异日益成为中国碳排放强度非均衡性增强的重要原因。工业和煤炭分别是碳排放强度非均衡的主要经济部门来源和能源种类来源,也是加剧碳排放强度非均衡性的关键动力。就影响因素而言,各省区技术水平的差距主导了碳排放强度的省际差异及其增长。研究结果可以为中国区域减排方案的制定提供科学依据。  相似文献   

20.
This study is to use cointegration, linear and non-linear Granger causality test to investigate the relationship between carbon dioxide (CO2) emissionand economic growth (GDP) in China for the period 1961-2010. Our analysis shows that CO2 emission and GDP are balanced in the long-run. The results suggest that there is evidence that economic development can improve environmental degradation in the long-run. Moreover, the result of linear and non-linear Granger causality test indicates a long-run unidirectional causality running from GDP to CO2 emissions. The study suggests that in the long run, economic growth may have an adverse effect on the CO2 emissions in China. Government should take into account the environment in their current policies, which may be of great importance for policy decision-makers to develop economic policies to preserve economic growth while curbing of carbon emissions.  相似文献   

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