Modelling carbon dynamics from urban land conversion: fundamental model of city in relation to a local carbon cycle [0.03%]
基于城市与本地碳循环关系的城市土地转化碳动力学模型研究
Anastasia Svirejeva-Hopkins,Hans-Joachim Schellnhuber
Anastasia Svirejeva-Hopkins
Background: The main task is to estimate the qualitative and quantitative contribution of urban territories and precisely of the process of urbanization to the Global Carbon Cycle (GCC). Note that, on the contrary to many...
Impacts of large-scale climatic disturbances on the terrestrial carbon cycle [0.03%]
largescale气候扰动对陆地碳循环的影响
Tim Erbrecht,Wolfgang Lucht
Tim Erbrecht
Background: The amount of carbon dioxide in the atmosphere steadily increases as a consequence of anthropogenic emissions but with large interannual variability caused by the terrestrial biosphere. These variations in the...
Terrestrial vegetation redistribution and carbon balance under climate change [0.03%]
气候变化下的陆地植被再分布及其碳平衡
Wolfgang Lucht,Sibyll Schaphoff,Tim Erbrecht et al.
Wolfgang Lucht et al.
Background: Dynamic Global Vegetation Models (DGVMs) compute the terrestrial carbon balance as well as the transient spatial distribution of vegetation. We study two scenarios of moderate and strong climate change (2.9 K ...
Ben I McNeil
Ben I McNeil
Background: Under the United Nations convention on the law of the sea (1982), each participating country maintains exclusive economic and environmental rights within the oceanic region extending 200 nm from its coastline,...
A psychological effect of having a potentially viable sequestration strategy [0.03%]
一种可能行得通的封存战略的心理效应
Katsumi Matsumoto
Katsumi Matsumoto
Purposeful carbon sequestration by direct injection into the deep ocean can store carbon for centuries. Even after injected carbon begins to leak back out to the atmosphere, much of the injected carbon will remain sequestered because of the...
The Anthropocene, global change and sleeping giants: where on Earth are we going? [0.03%]
全新世、全球变化与“沉睡的巨人”:地球的未来在何方?
Will Steffen
Will Steffen
Ben I McNeil,Richard J Matear
Ben I McNeil
Background: Anthropogenic CO2 uptake by the ocean decreases the pH of seawater, leading to an 'acidification' which may have potential detrimental consequences on marine organisms. Ocean warming or circulation alterations...
Estimating carbon stocks and woody perennials diversity in cropland agroforestry on three different land ecosystems in Bangladesh [0.03%]
在孟加拉国三种不同土地生态系统中农田农林系统碳储量及木本多年生植物多样性的估算
Background: Cropland agroforestry practices are widely adopted over various land ecosystems in Bangladesh, offering the potential to capture carbon (C) and safeguard biodiversity. Lack of accurate assessments of biomass c...