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A Simulation of Temporal and Spatial Variations in Carbon at Landscape Level: A Case Study for Lake Abitibi Model Forest in Ontario,Canada 总被引:2,自引:0,他引:2
Xiaolu Zhou Changhui Peng Qing-Lai Dang Jiaxin Chen Sue Parton 《Mitigation and Adaptation Strategies for Global Change》2007,12(4):525-543
Using a case study of the Lake Abitibi Model Forest (LAMF), this study aims to assess the temporal and spatial variability
in carbon storage during 1990–2000, and to present a comprehensive estimation of the carbon budget for LAMF's ecosystems.
As well, it provided the information needed by local forest managers to develop ecological and carbon-based indicators and
monitor the sustainability of forest ecosystems. Temporal and spatial carbon dynamics were simulated at the landscape level
using ecosystem model TRIPLEX1.0 and Geographical Information System (GIS). The simulated net primary productivity (NPP) and
carbon storage in forest biomass and soil were compared with field data and results from other studies for Canada's boreal
forests. The results show that simulated NPP ranged from 3.26 to 3.34 tC ha−1 yr−1 in the 1990s and was consistent with the range measured during the Boreal Ecosystem-Atmosphere Studies (BOREAS) in central
Canada. Modeled NPP was also compared with the estimation from remote sensing data. The density of total above-and belowground
biomass was 125.3, 111.8, and 106.5 tC ha−1 for black spruce, trembling aspen, and jack pine in the LAMF ecosystem, respectively. The total carbon density of forested
land was estimated at 154.4 tC ha−1 with the proportion of 4:6 for total biomass and soil. The analysis of net carbon balance of ecosystem suggested that the
LAMF forest ecosystem was acting as a carbon sink with an allowable harvest in the 1990s. 相似文献
44.
Atmospheric particulate pollution of Lanzhou using magnetic measurements 总被引:13,自引:0,他引:13
1 IntroductionAtmosphericparticulateisoneofthemainatmosphericpollutantsinChina.Itmaybeharmfulitselfandcanactasacarrieroftoxicmatterswhichmayhaveremarkableimpactsonhumanhealthandatmosphericenvironmentquality.Combustionofcoal,whichstillservesasprimarye… 相似文献
45.
Effects of acid deposition on forests in south China 总被引:1,自引:0,他引:1
1IntroductionWiththefastgrowingofmodernindustryandsharplyincreasingofenergyconsumptionprimarilycoal,airpolutionandaciddeposit... 相似文献
46.
郭增建 《防灾科技学院学报》2005,7(1):3-5
两个8级地震的预测在某种程度上被验证了。一个是 2001 年11月14 日昆仑山口西 8.1 级大震,另一个是 2003年9 月27日中蒙俄交界处的7.9 级地震(矩震级为 8级)。基于月球最北直下点的引潮力触发效应和8级大震的三性法分析,我们预测在2005~2008年间,西藏南部和附近地区可能再次发生 8级大震。 相似文献
47.
Carbon Dioxide Balance of Wood Substitution: Comparing Concrete- and Wood-Framed Buildings 总被引:3,自引:0,他引:3
Leif Gustavsson Kim Pingoud Roger Sathre 《Mitigation and Adaptation Strategies for Global Change》2006,11(3):667-691
In this study a method is suggested to compare the net carbon dioxide (CO2) emission from the construction of concrete- and wood-framed buildings. The method is then applied to two buildings in Sweden
and Finland constructed with wood frames, compared with functionally equivalent buildings constructed with concrete frames.
Carbon accounting includes: emissions due to fossil fuel use in the production of building materials; the replacement of fossil
fuels by biomass residues from logging, wood processing, construction and demolition; carbon stock changes in forests and
buildings; and cement process reactions. The results show that wood-framed construction requires less energy, and emits less
CO2 to the atmosphere, than concrete-framed construction. The lifecycle emission difference between the wood- and concrete-framed
buildings ranges from 30 to 130 kg C per m2 of floor area. Hence, a net reduction of CO2 emission can be obtained by increasing the proportion of wood-based building materials, relative to concrete materials. The
benefits would be greatest if the biomass residues resulting from the production of the wood building materials were fully
used in energy supply systems. The carbon mitigation efficiency, expressed in terms of biomass used per unit of reduced carbon
emission, is considerably better if the wood is used to replace concrete building material than if the wood is used directly
as biofuel. 相似文献
48.
Debra Straussfogel 《Mitigation and Adaptation Strategies for Global Change》2006,11(4):911-931
This paper addresses the combined effects of two sources of disturbance on the boreal forest – climate change and the economic
relations of industrial forestry. It describes a theoretical blueprint constructed of concepts from the theory of dissipative
structures (derived from the discipline of physical chemistry) and world-systems theory (derived from the discipline of sociology)
into a proposed integrated theory pivoting on the concept of social vulnerability. The goal is to examine the key concepts
of this theory – vulnerability, resilience and adaptive capacity – as elements of the complex systems perspective provided
by dissipative structure principles. The focus on social vulnerability provides the means to establish the role of external
economic linkages relevant to industrial forestry – the core/periphery relations of the world-system – as they influence the
social vulnerability of the boreal forest SESs. These systems are posited as embedded peripheries, following world-system
criteria, and as the focal scale of analysis within a larger hierarchically organized dissipative structure. The goal is to
suggest and stimulate ideas for further discussion and exploration, motivated by the premise that any successful climate change
mitigation efforts depend on having sound theoretical foundations on which to stand. 相似文献
49.
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