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1.
葡萄园生态系统是农业生态系统的重要组成部分, 集中连片栽培的葡萄园具有重要的生态价值。开展葡萄园生态系统碳源/汇的研究, 是完整探讨葡萄园生态系统碳循环必不可少的内容。随着葡萄生态学研究的进一步深入, 如何直观地揭示葡萄园生态系统碳循环规律和碳汇功能已经成为葡萄生态学领域关注的热点问题。研究发现, 葡萄园生态系统固定大量碳, 将碳封存在葡萄果实等一年生器官、主干等多年生器官以及土壤碳库中。葡萄园生态系统碳输入量大于碳输出量, 是碳汇; 土壤是葡萄园生态系统最大的碳库, 占总碳储量的70%, 尤其是土藤界面; 覆盖和免耕作为葡萄园的碳减排策略, 可以减少碳排放, 提高葡萄园土壤肥力。基于此, 为了阐明葡萄园生态系统的碳汇价值, 该文围绕葡萄生态学最新研究进展, 系统回顾了葡萄园生态系统中碳循环规律、碳汇研究进展及碳减排策略, 为葡萄生态学的研究提供理论基础, 并对本领域未来的研究方向和应用前景进行展望。  相似文献   

2.
Carbon budgets of wetland ecosystems in China   总被引:1,自引:0,他引:1  
Wetlands contain a large proportion of carbon (C) in the biosphere and partly affect climate by regulating C cycles of terrestrial ecosystems. China contains Asia's largest wetlands, accounting for about 10% of the global wetland area. Although previous studies attempted to estimate C budget in China's wetlands, uncertainties remain. We conducted a synthesis to estimate C uptake and emission of wetland ecosystems in China using a dataset compiled from published literature. The dataset comprised 193 studies, including 370 sites representing coastal, river, lake and marsh wetlands across China. In addition, C stocks of different wetlands in China were estimated using unbiased data from the China Second Wetlands Survey. The results showed that China's wetlands sequestered 16.87 Pg C (315.76 Mg C/ha), accounting for about 3.8% of C stocks in global wetlands. Net ecosystem productivity, jointly determined by gross primary productivity and ecosystem respiration, exhibited annual C sequestration of 120.23 Tg C. China's wetlands had a total gaseous C loss of 173.20 Tg C per year from soils, including 154.26 Tg CO2‐C and 18.94 Tg CH4‐C emissions. Moreover, C stocks, uptakes and gaseous losses varied with wetland types, and were affected by geographic location and climatic factors (precipitation and temperature). Our results provide better estimation of the C budget in China's wetlands and improve understanding of their contribution to the global C cycle in the context of global climate change.  相似文献   

3.
孙忠林  王传宽 《生态学报》2014,34(15):4133-4141
可溶性碳(Dissolved carbon,DC)和颗粒碳(particulate carbon,PC)通量作为森林生态系统碳收支的重要组分,在森林固碳功能的评价和模型预测中具有重要意义,但常因认识不足、测定困难等而在森林碳汇研究中被忽略。综述了森林生态系统DC和PC的组成、作用、相关生态过程及其影响因子,并展望了该领域应该优先考虑的研究问题。森林生态系统DC和PC主要包括可溶性有机碳、可溶性无机碳和颗粒有机碳,主要来源于生态系统的净初级生产量。DC和PC是森林土壤的活性碳库,主要以大气沉降、穿透雨和凋落物的形式输入森林土壤系统,并通过土壤呼吸、侧向运输及渗透流失的方式输出生态系统。从局域尺度看,DC和PC通量受根系分泌、细根分解、微生物周转等生物过程的影响较大;从区域尺度看,它们受土壤和植被特性、生态过程耦联关系、气候因子以及全球变化的综合影响。该领域应该优先考虑:(1)探索不同时空尺度下森林生态系统DC和PC通量的控制因子及其耦联关系,揭示其中的驱动机理;(2)探索DC和PC与其它森林生态系统碳组分的相互关系及转化,阐明DC和PC通量与其它养分之间潜在的生态化学计量关系;(3)探索全球变化,特别是人类活动(如森林经营)和极端干扰事件(如林火、旱涝、冰冻、冻融交替等)对森林生态系统DC和PC通量的影响。  相似文献   

4.
Aims Shrub recovery is recognized as an important cause of the increase of carbon stocks in China, and yet there are great uncertainties in the carbon sink capacities of shrubs. Our objectives were to estimate carbon density and its spatial distribution in alpine shrubs.
Methods Eight sites in Potentilla fruticosa dominated shrublands across Qinghai, China were investigated. Plant biomass and carbon content in leaves, branches and stems, and roots were measured to analyze the biomass allocation and carbon density.
Important findings Mean carbon densities in biological carbon, litter, soil and whole ecosystem of P. fruticosa shrublands were 5088.54, 542.1, 35903.76 and 41534.4 kg·hm-2, respectively. Carbon density in the shrub layer was more than 68% of the biological carbon density of the whole ecosystem and was mainly distributed in roots (49.5%-56.1%). Carbon density of the herbaceous layer was 22.5% of the biological carbon density of the whole ecosystem and was also mainly distributed in roots (59.6%-75.1%). The biological carbon density of P. fruticosa shrublands (5.08 t·hm-2) was lower than the average carbon density of shrub communities in China (10. 88 t·hm-2). Soil carbon density contributed the largest proportion (85.8%) of total carbon density in P. fruticosa shrublands.  相似文献   

5.
广州市十种森林生态系统的碳循环   总被引:2,自引:0,他引:2  
为了探讨南亚热带森林生态系统碳循环的规律,在广泛收集资料和试验数据的基础上,对广州10种森林生态系统的碳循环进行研究.结果表明:10种森林生态系统的碳密度在108.35~151.85 t C·hm-2,其中乔木层碳密度在10.85~48.86 t C·hm-2,0~60 cm土壤层在87.74~99.01 t C·hm-2,均低于全国平均水平;从大气流向植被层的碳流量为4.41~9.15 t C·hm-2·a-1,植被层流向土壤层的碳流量为0.74~2.06 t C·hm-2·a-1,土壤层流向大气层的碳流量为3.94~5.42 t C·hm-2·a-1,即系统从大气净吸收碳在0.47~4.97 t C·hm-2·a-1之间.各种林分的净系统生产力不同,阔叶林大于针叶林,混交林大于纯林,天然次生林大于人工林.  相似文献   

6.
鼎湖山森林土壤活性碳及惰性碳沿海拔梯度的变化   总被引:6,自引:0,他引:6  
向慧敏  温达志  张玲玲  李炯 《生态学报》2015,35(18):6089-6099
对鼎湖山3个不同海拔高度下的沟谷雨林(LA)、低地常绿阔叶林(MA)和山地常绿阔叶林(UA)的土壤活性碳库和惰性碳库进行了研究。结果表明:(1)土壤总碳库仅在30—45 cm土层中存在显著差异且碳库大小随着海拔的增加而增加。(2)土壤微生物生物量碳(MBC)碳库在0—15 cm是LA和MA显著大于UA,在30—45 cm是MA和UA显著高于LA,在45—60 cm土层中MA最大。水溶性碳(WSOC)和颗粒碳(POC)碳库均不随海拔高度而改变。WSOC碳库占总碳库的百分比仅在30—45cm土层中存在差异且大小顺序为:LAUAMA,POC碳库占总碳库的百分比仅在土层15—30 cm上存在显著差异且MA比值最大。易氧化性碳(ROC)碳库及占总碳库百分比都是在表层土壤(0—15 cm)中产生显著变化,且UA极显著地大于LA和MA。(3)惰性碳(RC)碳库仅在深层土壤中存在显著差异且MA中RC碳库最大,UA次之,LA最小。RC碳库占总碳库比值仅在表层土壤0—15 cm存在显著差异且UA最大。表层土壤中ROC碳库和RC碳库占总碳库百分比的增加是导致中高海拔森林土壤总碳库最大的主要原因。(4)不同海拔高度上森林土壤理化性质与土壤碳库组成存在显著相关,土壤理化性质的改变是引起不同海拔高度森林土壤碳库组成变化的重要原因。  相似文献   

7.
More detailed knowledge of the density of organic carbon in soils of boreal forests is needed for accurate estimates of the size of this C stock. We investigated the effect of vegetation type and associated site fertility on the C density at 30 mature coniferous forest sites in southern Finland and evaluated the importance of deep layers to the total C store in the soil by extending the sampling at eight of the sites to the depth of ground water level (2.4–4.6 m). The C density in the organic horizon plus 1 m thick mineral soil layer ranged from 4.0 kg/m2 to 11.9 kg/m2, and, on the average, increased towards the more productive vegetation types. Between the depth of 1 m and the ground water level the C density averaged 1.3–2.4 kg/m2 at the studied vegetation types and these layers represented 18–28% of the total stock of C in the soil. The results emphasize the importance of also considering these deep layers to correctly estimate the total amount of C in these soils. At the least fertile sites the soil contained about 30% more C than phytomass, whereas at the more fertile sites the amount of C in soil was about 10% less than the amount bound in vegetation.  相似文献   

8.
云南省农田生态系统碳足迹时空变化及其影响因素   总被引:4,自引:0,他引:4  
李明琦  刘世梁  武雪  孙永秀  侯笑云  赵爽 《生态学报》2018,38(24):8822-8834
农田碳足迹研究对农田生态系统管理与农业可持续发展具有重要意义,也可表征农田扩展的生态影响程度。利用县域尺度统计数据与空间分析,对云南省农田生态系统近30年的碳足迹的时空演变进行研究。结果表明:1985—2015年期间,云南省农田生态系统碳排放年均增幅为13.9%,化肥施用引起的碳排放贡献率最大,为56%,2015年的化肥单位面积碳排放达到331.6kg/hm2。云南省农田生态系统碳吸收年均增幅为3.04%,稻谷的碳吸收比例最大,为41%,然而,玉米的碳吸收的增幅最大,为8.76%。云南省农田生态系统存在碳生态盈余,且碳足迹总体呈现增长趋势,年均增长率为16.8%,单位面积碳足迹随年份增加不断增长。从空间上看,云南省农田生态系统碳排放、碳吸收在空间上均呈东南高、西北低的分布格局,而碳足迹在空间上呈现东西部高、中部低的分布格局,三者的空间差异和变化幅度差异都较大。  相似文献   

9.
土壤有机碳分组方法及其在农田生态系统研究中的应用   总被引:20,自引:2,他引:18  
Zhang G  Cao ZP  Hu CJ 《应用生态学报》2011,22(7):1921-1930
农田土壤有机碳成分复杂,活性有机碳对管理措施具有敏感性,而惰性有机碳具有固碳作用.碳分组技术主要包括物理技术、化学技术和生物学技术.物理分组的依据是密度、粒径大小和空间分布,可分离出有机碳的活性组分和惰性组分.化学分组基于土壤有机碳在各种提取剂中的溶解性、水解性和化学反应性从而分离出各种组分:溶解性有机碳是生物可代谢有机碳,包括有机酸、酚类和糖类等;酸水解方法可将有机碳分成活性和惰性成分;利用KMnO4模拟酶氧化可分离出活性碳和非活性碳.利用生物技术可测定出微生物生物量碳和潜在可矿化碳.在不同农田管理措施下,有机碳组分的化学组成和库容会发生不同变化,对土壤有机碳沉积速率产生不同影响.为了探明土壤有机碳组分与碳沉积之间的定性或定量关系,今后应该加强对各种分组方法的标准化研究,探索不同分组方法的整合应用,针对不同农田管理措施,总结出适合的有机碳分组方法或联合分组方法.  相似文献   

10.
秦岭山地碳中和空间服务范围及其模拟预测   总被引:1,自引:0,他引:1  
马新萍  李晶  余玉洋  邓晨晖 《生态学报》2022,42(23):9431-9441
在当前碳中和背景下,秦岭山地碳中和的量化及其空间服务范围的测算对于碳中和合理规划和快速实现具有重要意义。采用IUEMS (Intelligent Urban Ecosystem Management System)系统对秦岭山地的固碳量进行核算,利用DMSP/OLS (Defense Meteorological Satellite Program/Operational Linescan System)和NPP-VIIRS (Net Primary Productivity-Visible infrared Imaging Radiometer)夜间灯光数据和各地市的能源消耗数据通过模型拟合对秦岭山地碳排放量进行空间量化,基于固碳量和碳排放量得到秦岭山地空间碳中和量。利用PLUS (Patch-generating Land Use Simulation Model)模型模拟了2030和2050年的碳中和空间分布,结合常见气体扩散系数计算得到常温常压下秦岭山地碳中和对周边区域的服务范围。结果表明:2000-2020年秦岭山地固碳量呈现上升的趋势,大部分区域不同时间尺度上的固碳速率呈正向趋势,空间上秦岭山地中西部区域固碳量整体较大;对秦岭固碳量影响较大的地形特征为海拔1200m左右、斜坡、半阳坡和半阴坡;研究区内碳排放量空间上整体较低,碳排放低值区面积占到了秦岭总面积的90%,碳排放较大区域主要位于秦岭北坡的城区区域,时间上碳排放量最大值为先增加后减少的变化趋势;2000-2050年秦岭山地碳汇服务范围为174-262.63km,服务范围在空间上呈逐渐扩大趋势,2030年后其扩大程度将略有减少。  相似文献   

11.
Throughout most of the sedimentary record, the marine carbon cycle is interpreted as being in isotopic steady state. This is most commonly inferred via isotopic reconstructions, where two export fluxes (organic carbon and carbonate) are offset by a constant isotopic fractionation of ~25 (termed ). Sedimentary deposits immediately overlying the Marinoan snowball Earth diamictites, however, stray from this prediction. In stratigraphic sections from the Ol Formation (Mongolia) and Sheepbed Formation (Canada), we observe a temporary excursion where the organic matter has anomalously heavy C and is grossly decoupled from the carbonate C. This signal may reflect the unique biogeochemical conditions that persisted in the aftermath of snowball Earth. For example, physical oceanographic modeling suggests that a strong density gradient caused the ocean to remain stratified for about 50,000 years after termination of the Marinoan snowball event, during which time the surface ocean and continental weathering consumed the large atmospheric CO2 reservoir. Further, we now better understand how C records of carbonate can be post‐depostionally altered and thus be misleading. In an attempt to explain the observed carbon isotope record, we developed a model that tracks the fluxes and isotopic values of carbon between the surface ocean, deep ocean, and atmosphere. By comparing the model output to the sedimentary data, stratification alone cannot generate the anomalous observed isotopic signal. Reproducing the heavy C in organic matter requires the progressively diminishing contribution of an additional anomalous source of organic matter. The exact source of this organic matter is unclear.  相似文献   

12.
小兴安岭4种典型阔叶红松林土壤有机碳分解特性   总被引:6,自引:0,他引:6  
土壤有机碳分解是陆地生态系统碳循环的重要组成部分.主要采用土壤有机碳释放速率的室内培养实验的方法,并根据三库一级动力学模型,对小兴安岭地区4种典型阔叶红松林的土壤有机碳分解特征及各组分含量进行研究.实验结果如下:(1)土壤有机碳的分解趋势表现为前期迅速,后期缓慢,并且土壤腐殖质层(A)大于淀积层(B);在4种阔叶红松林中,云冷杉红松林土壤有机碳的分解速率最大,枫桦红松林最小;土壤有机碳的分解速率与土壤总有机碳、活性碳及土壤的C/N呈显著的正相关关系(P<0.05).(2)在土壤A层和B层,4种阔叶红松林的活性碳分别占总有机碳的0.89%-1.78%和1.91%-2.87%,平均驻留时间为12-35 d和27-58 d.缓效性碳占总有机碳的22.58%-28.44%和23.87%-42.63%,平均驻留时间为4-19 a和18-37 a.惰性碳占总有机碳的69.98%-76.24%和54.50%-74.22%,平均驻留时间为173 a;土壤有机碳各组分含量及驻留时间的大小顺序均为:云冷杉红松林>椴树红松林>枫桦红松林>蒙古栎红松林.  相似文献   

13.
周健  肖荣波  庄长伟  邓一荣 《生态学报》2013,33(18):5865-5873
城市森林及其管理相关政策作为减少CO2排放的有效策略得到了较为广泛的关注。采用材积源生物量方程与净初级生产力方法来定量分析了广州市城市森林碳储量和碳固定量,根据化石能源使用量及其碳排放因子核算了广州城市能源碳排放,最后评估了城市森林碳抵消效果。结果显示广州市城市森林碳储量为654.42×104t,平均碳密度为28.81 t/hm2,而森林碳固定量为658732 t/a,平均固碳率为2.90 t·hm-2·a-1。2005-2010年广州市年均能源碳排放则达到2907.41×104t。广州城市森林碳储量约为城市年均能源碳排放的22.51%,其通过碳固定年均能够抵消年均碳排放的2.27%,不过从城市森林综合效益来看其仍是城市低碳发展重要举措之一。分析了林型组成和林龄结构对于广州森林碳储量和碳固定量的影响,并从森林管理角度为城市森林碳汇提升提出建议。这些结果和讨论有助于评估城市森林碳汇在抵消碳排放中所起的效果。  相似文献   

14.
利用第八次森林资源连续清查数据和不同树种的树干密度、含碳率等参数,运用生物量清单法,估算了西藏自治区森林乔木层植被碳储量和碳密度.结果表明: 西藏森林生态系统乔木层植被总碳储量为1.067×109 t,平均碳密度为72.49 t·hm-2.不同林分乔木层碳储量依次为:乔木林>散生木>疏林>四旁树.不同林种乔木层碳储量大小依次为:防护林>特殊用途林>用材林>薪炭林,其中前两者所占比例为88.5%;不同林种乔木层平均碳密度为88.09 t·hm-2.不同林组乔木层碳储量与其分布面积排序一致,依次为:成熟林>过熟林>近熟林>中龄林>幼龄林.其中,成熟林乔木层碳储量占不同林组乔木层总碳储量的50%,并且不同林组乔木层碳储量随着林龄的增加呈先上升后下降的趋势.  相似文献   

15.
The impact of atmospheric N deposition on the dynamics of various carbon fractions was investigated in two Scots pine forest soils (cambisol, podzol) of Northern Germany in microcosm experiments. Total organic carbon (TOC), CO2 emission, microbial carbon (Cmic) as well as organic hot- and coldwater extractable carbon fractions (Chwe, Ccwe) were analyzed before, during, and after soil incubation in microcosms, run in three treatments: 0, +45, and +90 kg N ha−1a−1. On both sites, the N treatment showed no response to total organic carbon (TOC) contents in most of the investigated soil layers. Microbial carbon (Cmic) was significantly increased in the organic layer of both soil types by the N application. Subsequent to the N application, the CO2 emission increased in all mineral soil layers of the cambisol but remained almost unaffected in the podzol. After the N application, a remarkable increase of hotwater extractable C (Chwe) was detected for the organic layer of the cambisol but not for the podzol, whereas coldwater extractable C (Ccwe) concentrations decreased at both sites. The N application did not have a significant impact on the leachate concentrations of total organic carbon (TOC), dissolved organic carbon (DOC), and particulate organic carbon (POC) in the podzol, whereas the concentrations of these C fractions were decreased in the organic layer and the 35–70~cm mineral soil layer of the cambisol. The N treatment changed the contents of most of the investigated C fractions in both soil types and resulted in a considerable C~mobilization. But the processes of the C~mobilization between the cambisol and the podzol were completely different. According to the presented data, the cambisol obtaining moderate atmospheric N loads is much more sensitive to additional N inputs than the podzol that already received high amounts of atmospheric N.  相似文献   

16.
城市土壤碳循环与碳固持研究综述   总被引:4,自引:0,他引:4  
罗上华  毛齐正  马克明  邬建国 《生态学报》2012,32(22):7177-7189
城市化过程带来的土地利用变化和环境污染是全球变化的重要方面,城市为人们了解人类与自然复合生态系统对全球变化的影响及其对全球变化的响应过程提供一个独特的"天然实验室"。陆地生态系统碳循环是全球变化研究的热点领域之一,然而,人们对城市在全球碳循环中的作用和影响知之甚少,城市土壤碳循环研究处于起步阶段。介绍了城市土壤的主要特性和碳循环特征,指出强烈的人为作用是其最突出的特点;综述了城市土壤碳库、碳通量和碳固持研究方面取得的进展;探讨了城市化过程中土地利用变化、土壤中生物及土壤管护措施、城市小气候、大气污染沉降和土壤污染等对土壤碳循环的影响;提出未来城市碳循环研究需要开展长期系统监测、深化城市土壤碳循环机制研究、创新研究范式和研究方法、并将研究成果与城市景观规划与设计相结合,提升城市土壤碳管理能力。  相似文献   

17.
黄麟  邵全琴  刘纪远 《生态学杂志》2010,21(9):2241-2248
1950—2008年间江西省年均发生森林火灾762次、年均过火面积1.578×10.4 hm2.本文利用江西省森林火灾统计数据,结合气象、森林分布和历次森林清查数据,分析了该省林火的特征,估算历年的林火碳释放量和碳转移量.结果表明: 1950—2008年江西省森林火灾导致的森林生物量总损失约61.155 Tg,活生物量碳库损失约30.993 Tg C,占全省植被碳库的15.92%.20世纪70年代以前林火生物量碳损失率约占1950—2008年生物量总碳损失的74.3%;90年代以后,年均林火生物量碳损失小于0.097 Tg C.森林火灾释放的CO2、CH4和CO气体分别为5.408 Tg、0.047 Tg和0.486 Tg,有22.436 Tg C活生物量碳进入土壤碳库.2008年初雨雪冰冻灾害引发的高频率次生林火灾害导致森林活生物量碳损失(0.463 Tg C)是前5年平均值(0.181 Tg C)的2.56倍.  相似文献   

18.
采用室内土壤培养法,比较分析了湖南省会同地区常绿阔叶林、杉木纯林土壤有机碳的矿化速率和累计矿化量,分析了有机碳矿化量与土壤活性有机碳初始含量的关系。结果表明:常绿阔叶林土壤有机碳矿化速率和累计矿化量均显著高于杉木纯林。在培养的第21天,在培养温度为9℃和28℃条件下,常绿阔叶林0~10和10~20cm土层的土壤有机碳累计矿化量为杉木纯林的1.7~2.7倍。常绿阔叶林土壤有机碳矿化释放的CO2-C分配比例高于杉木纯林。林地土壤有机碳矿化量受土壤微生物碳、可溶性有机碳初始含量的影响(P<0.01)。土壤有机碳矿化使土壤微生物碳增加而可溶性有机碳下降,但变化幅度均不大。温度从9℃升高到28℃后,林地土壤有机碳矿化速率提高3.1~4.5倍;2林地有机碳矿化对温度的敏感性无显著差异。  相似文献   

19.
Soil carbon sequestration was estimated in a conifer forest and an alpine meadow on the Tibetan Plateau using a carbon-14 radioactive label provided by thermonuclear weapon tests (known as bomb-14C). Soil organic matter was physically separated into light and heavy fractions. The concentration spike of bomb-14C occurred at a soil depth of 4 cm in both the forest soil and the alpine meadow soil. Based on the depth of the bomb-14C spike, the carbon sequestration rate was determined to be 38.5 g C/m2 per year for the forest soil and 27.1 g C/m2 per year for the alpine meadow soil. Considering that more than 60% of soil organic carbon (SOC) is stored in the heavy fraction and the large area of alpine forests and meadows on the Tibetan Plateau, these alpine ecosystems might partially contribute to "the missing carbon sink".  相似文献   

20.
四川长宁毛竹林碳储量与碳汇能力估测   总被引:1,自引:0,他引:1  
张蕊  申贵仓  张旭东  张雷  高升华 《生态学报》2014,34(13):3592-3601
利用生物量法研究了四川长宁毛竹林(Phyllostachys edulis)碳密度、碳储量及其空间分配格局,并对毛竹林碳汇能力进行了估算。结果表明:(1)毛竹立竹各器官的平均含碳率波动范围为462.37—480.68 g/kg,不同龄级毛竹各器官含碳率差异不显著。土壤有机碳含量为15.77 g/kg,不同土层差异极显著;(2)毛竹立竹碳储量为40.92 t/hm2,其中竹竿碳储量所占比例为51.49%,竹杆、竹枝、竹叶地上部分碳储量为26.76 t/hm2,占立竹碳储量的65.39%,地上碳储量为地下碳储量的1.89倍;(3)毛竹林总碳储量为156.57 t/hm2,其中土壤是其最大的碳库,为113.54 t/hm2,占总碳储量的72.52%,立竹碳储量所占比例为26.14%,林下植被碳库最小,为0.52 t/hm2,只占总碳储量的0.33%,可忽略不计;(4)毛竹林年生产量为20.28 t/hm2,年固碳量为9.43 t/hm2,相当于每年固定CO2量34.57 t/hm2,固碳能力较强。  相似文献   

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