scholarly journals The effects of carbon turnover time on terrestrial ecosystem carbon storage

2017 ◽  
Author(s):  
Yaner Yan ◽  
Xuhui Zhou ◽  
Lifeng Jiang ◽  
Yiqi Luo

Abstract. Carbon (C) turnover time is a key factor in determining C storage capacity in various plant and soil pools and the magnitude of terrestrial C sink in a changing climate. However, the effects of C turnover time on C storage have not been well quantified for previous researches. Here, we first analyzed the difference among different definition of mean turnover time (MTT) including ecosystem MTT(MTTEC) and soil MTT (MTTsoil) and its variability in MTT to climate changes, and then evaluated the changes of ecosystem C storage driven by MTT changes. Our results showed that total GPP-based ecosystem MTT (MTTEC_GPP : 25.0 ± 2.7 years) was shorter than soil MTT (35.5 ± 1.2 years) and NPP-based ecosystem MTT (MTTEC_NPP:50.8 ± 3 years) MTTEC_GPP = Cpool/GPP & MTTsoil = Csoil/NPP & MTTEC_NPP = Cpool/NPP, Cpool and Csoil referring as the ecosystem or soil carbon storage, respectively). At the biome scale, temperature is still the predictor for MTTEC (R2 = 0.77, p 

2017 ◽  
Vol 14 (23) ◽  
pp. 5441-5454 ◽  
Author(s):  
Yaner Yan ◽  
Xuhui Zhou ◽  
Lifeng Jiang ◽  
Yiqi Luo

Abstract. Carbon (C) turnover time is a key factor in determining C storage capacity in various plant and soil pools as well as terrestrial C sink in a changing climate. However, the effects of C turnover time on ecosystem C storage have not been well explored. In this study, we compared mean C turnover times (MTTs) of ecosystem and soil, examined their variability to climate, and then quantified the spatial variation in ecosystem C storage over time from changes in C turnover time and/or net primary production (NPP). Our results showed that mean ecosystem MTT based on gross primary production (GPP; MTTEC_GPP =  Cpool/GPP, 25.0 ± 2.7 years) was shorter than soil MTT (MTTsoil =  Csoil/NPP, 35.5 ± 1.2 years) and NPP-based ecosystem MTT (MTTEC_NPP =  Cpool/NPP, 50.8 ± 3 years; Cpool and Csoil referred to ecosystem or soil C storage, respectively). On the biome scale, temperature is the best predictor for MTTEC (R2 =  0.77, p < 0.001) and MTTsoil (R2 =  0.68, p < 0.001), while the inclusion of precipitation in the model did not improve the performance of MTTEC (R2 =  0.76, p < 0.001). Ecosystem MTT decreased by approximately 4 years from 1901 to 2011 when only temperature was considered, resulting in a large C release from terrestrial ecosystems. The resultant terrestrial C release caused by the decrease in MTT only accounted for about 13.5 % of that due to the change in NPP uptake (159.3 ± 1.45 vs. 1215.4 ± 11.0 Pg C). However, the larger uncertainties in the spatial variation of MTT than temporal changes could lead to a greater impact on ecosystem C storage, which deserves further study in the future.


2020 ◽  
Vol 12 (4) ◽  
pp. 2517-2536 ◽  
Author(s):  
Naixin Fan ◽  
Sujan Koirala ◽  
Markus Reichstein ◽  
Martin Thurner ◽  
Valerio Avitabile ◽  
...  

Abstract. The turnover time of terrestrial ecosystem carbon is an emergent ecosystem property that quantifies the strength of land surface on the global carbon cycle–climate feedback. However, observation- and modeling-based estimates of carbon turnover and its response to climate are still characterized by large uncertainties. In this study, by assessing the apparent whole ecosystem carbon turnover times (τ) as the ratio between carbon stocks and fluxes, we provide an update of this ecosystem level diagnostic and its associated uncertainties in high spatial resolution (0.083∘) using multiple, state-of-the-art, observation-based datasets of soil organic carbon stock (Csoil), vegetation biomass (Cveg) and gross primary productivity (GPP). Using this new ensemble of data, we estimated the global median τ to be 43-7+7 yr (median-difference to percentile 25+difference to percentile 75) when the full soil is considered, in contrast to limiting it to 1 m depth. Only considering the top 1 m of soil carbon in circumpolar regions (assuming maximum active layer depth is up to 1 m) yields a global median τ of 37-6+3 yr, which is longer than the previous estimates of 23-4+7 yr (Carvalhais et al., 2014). We show that the difference is mostly attributed to changes in global Csoil estimates. Csoil accounts for approximately 84 % of the total uncertainty in global τ estimates; GPP also contributes significantly (15 %), whereas Cveg contributes only marginally (less than 1 %) to the total uncertainty. The high uncertainty in Csoil is reflected in the large range across state-of-the-art data products, in which full-depth Csoil spans between 3362 and 4792 PgC. The uncertainty is especially high in circumpolar regions with an uncertainty of 50 % and a low spatial correlation between the different datasets (0.2<r<0.5) when compared to other regions (0.6<r<0.8). These uncertainties cast a shadow on current global estimates of τ in circumpolar regions, for which further geographical representativeness and clarification on variations in Csoil with soil depth are needed. Different GPP estimates contribute significantly to the uncertainties of τ mainly in semiarid and arid regions, whereas Cveg causes the uncertainties of τ in the subtropics and tropics. In spite of the large uncertainties, our findings reveal that the latitudinal gradients of τ are consistent across different datasets and soil depths. The current results show a strong ensemble agreement on the negative correlation between τ and temperature along latitude that is stronger in temperate zones (30–60∘ N) than in the subtropical and tropical zones (30∘ S–30∘ N). Additionally, while the strength of the τ–precipitation correlation was dependent on the Csoil data source, the latitudinal gradients also agree among different ensemble members. Overall, and despite the large variation in τ, we identified robust features in the spatial patterns of τ that emerge beyond the differences stemming from the data-driven estimates of Csoil, Cveg and GPP. These robust patterns, and associated uncertainties, can be used to infer τ–climate relationships and for constraining contemporaneous behavior of Earth system models (ESMs), which could contribute to uncertainty reductions in future projections of the carbon cycle–climate feedback. The dataset of τ is openly available at https://doi.org/10.17871/bgitau.201911 (Fan et al., 2019).


2014 ◽  
Vol 4 (1) ◽  
Author(s):  
Xiaowei Chuai ◽  
Xianjin Huang ◽  
Wanjing Wang ◽  
Changyan Wu ◽  
Rongqin Zhao

2018 ◽  
Vol 61 (4) ◽  
pp. 69-103
Author(s):  
Nebojsa Lukic

Even though Thomas Kuhn was a physicist by formal education, he is better known for his achievements in philosophy of science than in science itself. He was primarily concerned with history of science and subjects such as development of science, growth of scientific knowledge, changes in science and others. In that sense Kuhn was focused on giving the correct description of scientific reality in human history, that is, on giving the description of the most relevant elements of scientific research. Kuhn claims that scientists base their research on paradigms which are the key factor in scientific practice overall. All other concepts of Kuhn?s philosophy - such as, for instance, normal science, revolutionary science, incommensurability of paradigms - gain their meaning in relation to the concept of a paradigm. However, the concept of a paradigm in its original definition was very problematic, which, later on, led Kuhn to make its meaning more precise. Hence, the task of this paper is to illuminate the nature of that central concept i.e. to determine the essential features of a paradigm in relation to the rest of the conceptual network of Kuhn?s theory, and therefore its role in science and in that conceptual network. At the same time, the meaning of all those elements of Kuhnian science which are in direct relation to the paradigm will be illuminated. I will restrict my research on early and transitional period of Kuhn?s creatorship, and I base this distinction on Sankey?s analysis. The difference between these two periods is determined by Kuhn?s thinking about the formulation of the thesis of incommensurability of paradigms. Accordingly, it is necessary to deal with definition of incommensurability, its division to types and Kuhn?s view on implications of incommensurability for science and its progress.


Author(s):  
Liudmyla Mamchur ◽  
Valerii Syttsevoi

Keywords: orphan work, copyright, work digitization, public domain, propertyrights of the author, term of copyright The authors insist on the need todifferentiate the terms «orphan work» and «public domain work». It is connected withthe necessity to follow reasonable balance between the property interest of the authoror his successors and the public interest in reasonable use of the work in order to improvethe current legal field.It is substantiated that the existing copyright system, which provides to pay royaltyfor every use of the work for its author for 70 years or more, conflicts with theneeds of society in modern digital age. It is necessary to get permission from the copyrightholder to digitize a work to make it available. For orphan works it is difficult.The traditional copyright system should provide an exception for orphan works. It isformulated that permission to use such works must be granted by a specially authorizedstate body if there is any evidence that the user has taken all possible measuresto find the copyright holder, but has not been successful.Analysis of the content of theoretical and legal definitions of the terms «orphanwork» and «public domain work» shows that the presence or absence of ongoing protectionof property rights of the author is a key factor in the difference. Such rightsare still valid for orphan works, and therefore the permission of the right holder touse such a work is required. Meanwhile, the «public domain work» includes workswhich the term of copyright has expired. Therefore, the work can be used without permission.So, the approach that an orphan work becomes public domain is incorrect.On a basis of analysis of legislation conclusions is drawn that it is inexpedient touse too voluminous definition of the term «orphan work». It is argued that the systemof issuing permits for use of orphan works by the state bodies at request of a potentialuser must be defined in legislation.


2020 ◽  
Vol 26 (9) ◽  
pp. 5052-5062
Author(s):  
Donghai Wu ◽  
Shilong Piao ◽  
Dan Zhu ◽  
Xuhui Wang ◽  
Philippe Ciais ◽  
...  

2016 ◽  
Vol 6 (1) ◽  
Author(s):  
Kai Yue ◽  
Yan Peng ◽  
Changhui Peng ◽  
Wanqin Yang ◽  
Xin Peng ◽  
...  

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