Including man-nature relationships in environmental sustainability assessment of forest-based production systems
暂无分享,去创建一个
[1] Brian D. Fath,et al. Information-based Network Environ Analysis: A system perspective for ecological risk assessment , 2011 .
[2] B. Muys,et al. Comparative analysis of the actual evapotranspiration of Flemish forest and cropland, using the soil water balance model WAVE , 2005 .
[3] Shweta Singh. Incorporating Biogeochemical Cycles and Utilizing Complexity Theory for Sustainability Analysis , 2012 .
[4] K. Ravindra,et al. Mass and ionic composition of atmospheric fine particles over Belgium and their relation with gaseous air pollutants. , 2008, Journal of environmental monitoring : JEM.
[5] E. Scully,et al. Quantifying constraint to assess development in ecological networks , 2002 .
[6] J. Neirynck,et al. Atmospheric composition change: Ecosystems–Atmosphere interactions , 2009 .
[7] G. Daily,et al. Biodiversity loss and its impact on humanity , 2012, Nature.
[8] H. Tabari,et al. Sensitivity of evapotranspiration to climatic change in different climates , 2014 .
[9] Zubi Ghassan,et al. Study on the state of play of energy efficiency of heat and electricity production technologies , 2012 .
[10] Loren E Wold,et al. Direct and indirect effects of particulate matter on the cardiovascular system. , 2012, Toxicology letters.
[11] M. McKinney,et al. Effects of urbanization on species richness: A review of plants and animals , 2008, Urban Ecosystems.
[12] V. N. Piskunov. Parameterization of aerosol dry deposition velocities onto smooth and rough surfaces , 2009 .
[13] B. Gardiner,et al. Analysing forest sustainability under various climate change scenarios: a case study in northern Scotland , 2012 .
[14] Johanna J. Heymans,et al. Network analysis of the South Florida Everglades graminoid marshes and comparison with nearby cypress ecosystems , 2002 .
[15] B. Muys,et al. Tree species traits cause divergence in soil acidification during four decades of postagricultural forest development , 2012 .
[16] N. McCarthy,et al. Linking Social and Ecological Systems: Management Practices and Social Mechanisms for Building Resilience , 2000 .
[17] Manfred J. Lexer,et al. Multiple-use forest management in consideration of climate change and the interests of stakeholder groups , 2007, European Journal of Forest Research.
[18] Lianyou Liu,et al. Physicochemical characteristics of ambient particles settling upon leaf surfaces of urban plants in Beijing. , 2006, Journal of environmental sciences.
[19] C. Kollas,et al. Potentials and impacts of short-rotation coppice plantation with aspen in Eastern Germany under conditions of climate change , 2010 .
[20] K. W. Nicholson. Wind tunnel experiments on the resuspension of particulate material , 1993 .
[21] José I. Barredo,et al. Mapping and assessment of ecosystems and their services - An analytical framework for ecosystem assessments under action 5 of the EU biodiversity strategy to 2020 , 2013 .
[22] C. Quine,et al. PRACTITIONER'S PERSPECTIVE: Sustainable forest management in a time of ecosystem services frameworks: common ground and consequences , 2013, The Journal of applied ecology.
[23] M. Huijbregts,et al. Toward meaningful end points of biodiversity in life cycle assessment. , 2011, Environmental science & technology.
[24] A. Mäkelä,et al. Bayesian calibration, comparison and averaging of six forest models, using data from Scots pine stands across Europe , 2013 .
[25] Frank Veroustraete,et al. Seasonal variations in leaf area index, leaf chlorophyll, and water content; scaling-up to estimate fAPAR and carbon balance in a multilayer, multispecies temperate forest. , 1999, Tree physiology.
[26] Walter Isard,et al. Some notes on the linkage of the ecologic and economic systems , 1969 .
[27] J. Neirynck,et al. Multilayered modeling of particulate matter removal by a growing forest over time, from plant surface deposition to washoff via rainfall. , 2014, Environmental science & technology.
[28] F. Anselmet,et al. Aerosol dry deposition on vegetative canopies. Part I: Review of present knowledge , 2008 .
[29] Carl J. Walters,et al. Ecopath with Ecosim: methods, capabilities and limitations , 2004 .
[30] H. L. Penman. Natural evaporation from open water, bare soil and grass , 1948, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[31] J. Neirynck,et al. Biometric and eddy covariance-based assessment of decadal carbon sequestration of a temperate Scots pine forest , 2013 .
[32] Bruce Hannon,et al. Ecological network analysis : network construction , 2007 .
[33] Jo Dewulf,et al. Quantification of spatially differentiated resource footprints for products and services through a macro-economic and thermodynamic approach. , 2014, Environmental science & technology.
[34] James M. Ross,et al. The effect of particle size, location and season on the toxicity of urban and rural particulate matter , 2013, Inhalation toxicology.
[35] Bhavik R Bakshi,et al. Expanding exergy analysis to account for ecosystem products and services. , 2004, Environmental science & technology.
[36] Jo Dewulf,et al. Quantifying the environmental impact of an integrated human/industrial-natural system using life cycle assessment; a case study on a forest and wood processing chain. , 2013, Environmental science & technology.
[37] B. Cerabolini,et al. Forest Filter Effect: Role of leaves in capturing/releasing air particulate matter and its associated PAHs , 2013 .
[38] Sangwon Suh,et al. Functions, commodities and environmental impacts in an ecological–economic model , 2004 .
[39] Y. Belot,et al. Uptake of small particles by tree canopies , 1994 .
[40] A. Khlystov,et al. Investigation of Ultrafine Particle Deposition to Vegetation Branches in a Wind Tunnel , 2012 .
[41] Mark T. Brown,et al. Updated evaluation of exergy and emergy driving the geobiosphere: A review and refinement of the emergy baseline , 2010 .
[42] Peter S. Curtis,et al. Harvest impacts on soil carbon storage in temperate forests , 2010 .
[43] B. Moldan,et al. How to understand and measure environmental sustainability: Indicators and targets , 2012 .
[44] Donatella Zona,et al. Energy and climate benefits of bioelectricity from low-input short rotation woody crops on agricultural land over a two-year rotation , 2013 .
[45] B Nawrot,et al. Plant species differences in particulate matter accumulation on leaf surfaces. , 2012, The Science of the total environment.
[46] Manfred J. Lexer,et al. Assessing trade-offs between carbon sequestration and timber production within a framework of multi-purpose forestry in Austria , 2007 .
[47] A. Maslow. A Theory of Human Motivation , 1943 .
[48] A. Marchetto,et al. Atmospheric deposition to forest ecosystems , 2013 .
[49] Pedro Linares Llamas,et al. Exergy as a global energy sustainability indicator. A review of the state of the art , 2014 .
[50] R. Ceulemans,et al. Needle age-related and seasonal photosynthetic capacity variation is negligible for modelling yearly gas exchange of a sparse temperate Scots pine forest , 2009 .
[51] R. Mulholland,et al. Ecological stability: an information theory viewpoint. , 1976, Journal of theoretical biology.
[52] Xinyuan Feng,et al. Influence of different weather events on concentrations of particulate matter with different sizes in Lanzhou, China. , 2012, Journal of environmental sciences.
[53] Steven De Meester,et al. Resource use analysis of Pangasius aquaculture in the Mekong Delta in Vietnam using Exergetic Life Cycle Assessment , 2013 .
[54] D. Mason,et al. Invasive species impacts on ecosystem structure and function: A comparison of the Bay of Quinte, Canada, and Oneida Lake, USA, before and after zebra mussel invasion , 2009 .
[55] Ayse Irmak,et al. Sensitivity Analyses and Sensitivity Coefficients of Standardized Daily ASCE-Penman-Monteith Equation , 2006 .
[56] N. Crossman,et al. Global estimates of the value of ecosystems and their services in monetary units , 2012 .
[57] R. Ceulemans,et al. Above- and belowground biomass and net primary production in a 73-year-old Scots pine forest. , 2003, Tree physiology.
[58] J. Dewulf,et al. Resource consumption assessment of Pangasius fillet products from Vietnamese aquaculture to European retailers , 2015 .
[59] Rupert Seidl,et al. Evaluating the accuracy and generality of a hybrid patch model. , 2005, Tree physiology.
[60] J. Cermak,et al. Water content in stem wood of large pine and spruce trees in natural forests in central Sweden , 1999 .
[61] J. Neirynck,et al. Insights into ozone deposition patterns from decade-long ozone flux measurements over a mixed temperate forest. , 2012, Journal of environmental monitoring : JEM.
[62] Alain Royer,et al. Measuring Leaf Area Index with the Li‐Cor LAI‐2000 in Pine Stands , 1994 .
[63] D. Nowak,et al. Development of a distributed air pollutant dry deposition modeling framework. , 2012, Environmental pollution.
[64] P. Sypka,et al. Simplified, empirical model of wind speed profile under canopy of Istebna spruce stand in mountain valley , 2013 .
[65] Margarida Tomé,et al. Using stand-scale forest models for estimating indicators of sustainable forest management , 2012 .
[66] Thomas Koellner,et al. Global land use impact assessment on biodiversity and ecosystem services in LCA , 2013, The International Journal of Life Cycle Assessment.
[67] R. Ulanowicz. An hypothesis on the development of natural communities. , 1980, Journal of theoretical biology.
[68] M. Sofiev,et al. A methodology for evaluation of vertical dispersion and dry deposition of atmospheric aerosols , 2012 .
[69] J. Jansen,et al. Opbrengsttabellen voor belangrijke boomsoorten in Nederland , 1996 .
[70] Brian D. Fath,et al. On the consequences of aggregation and balancing of networks on system properties derived from ecological network analysis , 2009 .
[71] R. Crockford,et al. Partitioning of rainfall into throughfall, stemflow and interception: effect of forest type, ground cover and climate. , 2000 .
[72] J. E. Wagner,et al. Urban forests and pollution mitigation: analyzing ecosystem services and disservices. , 2011, Environmental pollution.
[73] Hans Pretzsch,et al. Simulation tools for decision support to adaptive forest management in Europe , 2011 .
[74] Hojka Kraigher,et al. Using the process-based stand model ANAFORE including Bayesian optimisation to predict wood quality and quantity and their uncertainty in Slovenian beech , 2009 .
[75] Stefanie Hellweg,et al. GIS-based regionalized life cycle assessment: how big is small enough? Methodology and case study of electricity generation. , 2012, Environmental science & technology.
[76] Sara C. Pryor,et al. An extended dry deposition model for aerosols onto broadleaf canopies , 2009 .
[77] M. A. Arain,et al. Relative contributions of soil, foliar, and woody tissue respiration to total ecosystem respiration in four pine forests of different ages , 2010 .
[78] D. Baird,et al. Carbon, nitrogen and phosphorus dynamics in nine sub-systems of the Sylt-Rømø Bight ecosystem, German Wadden Sea , 2011 .
[79] Reinout Heijungs,et al. Identifying best existing practice for characterization modeling in life cycle impact assessment , 2012, The International Journal of Life Cycle Assessment.
[80] C. Mensink,et al. Modelling concentrations of airborne primary and secondary PM10 and PM2.5 with the BelEUROS-model in Belgium , 2008 .
[81] Ole Jørgen Hanssen,et al. Effect of different allocation methods on LCA results of products from wild-caught fish and on the use of such results , 2011 .
[82] J. Lyytimäki,et al. Hopping on one leg - the challenge of ecosystem disservices for urban green management. , 2009 .
[83] H. Gawrońska,et al. Particulate Matter on Foliage of 13 Woody Species: Deposition on Surfaces and Phytostabilisation in Waxes – a 3-Year Study , 2013, International journal of phytoremediation.
[84] E. Malkonen. Annual primary production and nutrient cycle in some Scots pine stands , 1974 .
[85] Philippe C. Baveye,et al. Monetary valuation of ecosystem services: it matters to get the timeline right , 2013 .
[86] W. Hecq,et al. A guiding framework for ecosystem services monetization in ecological-economic modeling , 2014 .
[87] Sander Niphuis. Transporting industrial waste heat. The potential of using the existing sewer system. , 2013 .
[88] T. Vesala,et al. The effects of the canopy medium on dry deposition velocities of aerosol particles in the canopy sub-layer above forested ecosystems , 2011 .
[89] Sangwon Suh,et al. Theory of materials and energy flow analysis in ecology and economics , 2005 .
[90] B. Muys,et al. Does energy dissipation increase with ecosystem succession? Testing the ecosystem exergy theory combining theoretical simulations and thermal remote sensing observations , 2011 .
[91] Pilar Llorens,et al. A review of rainfall interception modelling , 2009 .
[92] Large-scale genetic structure and drought-induced effects on European Scots pine (Pinus sylvestris L.) seedlings , 2013, European Journal of Forest Research.
[93] Eduardo S Brondízio,et al. The economics of ecosystem services: from local analysis to national policies , 2013 .
[94] E. Hertwich,et al. CO2 emissions from biomass combustion for bioenergy: atmospheric decay and contribution to global warming , 2011 .
[95] J. Walter,et al. Spatial heterogeneity of a Scots pine canopy: an assessment by hemispherical photographs , 1996 .
[96] Bart Muys,et al. A critical evaluation of environmental assessment tools for sustainable forest management , 1998 .
[97] Robert B. Jackson,et al. Nutrient concentrations in fine roots. , 2000 .
[98] P. Nilsson. Environmental Accounting—EMERGY and Environmental Decision Making , 1997, Forest Science.
[99] Pilar Llorens,et al. A simplified method for forest water storage capacity measurement , 2000 .
[100] Gjalt Huppes,et al. Is bioethanol a sustainable energy source? An energy-, exergy-, and emergy-based thermodynamic system analysis , 2011 .
[101] J. Rockström,et al. Policy: Sustainable development goals for people and planet , 2013, Nature.
[102] Hironori Hirata,et al. Information theoretical analysis of ecological networks , 1984 .
[103] Robert E. Ulanowicz,et al. The Comparative Ecology of Six Marine Ecosystems , 1991 .
[104] T. Koellner,et al. Land use impacts on biodiversity in LCA: a global approach , 2013, The International Journal of Life Cycle Assessment.
[105] J. Neirynck,et al. Fluxes of oxidised and reduced nitrogen above a mixed coniferous forest exposed to various nitrogen emission sources. , 2007, Environmental pollution.
[106] Reinout Heijungs,et al. A theory of the environment and economic systems a unified framework for ecological economic analysis and decision support , 2003 .
[107] C. Vincke,et al. Water table is a relevant source for water uptake by a Scots pine (Pinus sylvestris L.) stand: Evidences from continuous evapotranspiration and water table monitoring , 2008 .
[108] Ulrich Kohnle,et al. Combining Tree- and Stand-Level Models: A New Approach to Growth Prediction , 2008, Forest Science.
[109] U. KyawThaPaw,et al. Experimental Evidence of the Importance of Rebound in Net Deposition of Particles , 1992 .
[110] J. Monteith. Evaporation and environment. , 1965, Symposia of the Society for Experimental Biology.
[111] A. Arneth,et al. European emissions of isoprene and monoterpenes from the Last Glacial Maximum to present , 2009 .
[112] Jo Dewulf,et al. Improved ecological network analysis for environmental sustainability assessment; a case study on a forest ecosystem , 2012 .
[113] Zbigniew D Zwonko. Influence of Litter and Weather on Seedling Recruitment in a Mixed Oak-Pine , 2002 .
[114] W. Isard. Ecologic-economic analysis for regional development : some initial explorations with particular reference to recreational resource use and environmental planning , 1973 .
[115] Walter Isard,et al. ON THE LINKAGE OF SOCIO‐ECONOMIC AND ECOLOGIC SYSTEMS , 1968 .
[116] Arpita Ghosh,et al. Input-Output Approach in an Allocation System , 1958 .
[117] J. Neirynck,et al. Calculating Dry Deposition and Canopy Exchange with the Canopy Budget Model: Review of Assumptions and Application to Two Deciduous Forests , 2008 .
[118] R. Huggett. Ecosphere, biosphere, or Gaia? What to call the global ecosystem , 1999 .
[119] Bernhard Wett,et al. Mainstream partial nitritation/anammox: Balancing overall sustainability with energy savings , 2012 .
[120] Helmut Haberl,et al. Progress towards sustainability? What the conceptual framework of material and energy flow accounting (MEFA) can offer , 2004 .
[121] Stef Proost,et al. An integrated decision support framework for the prediction and evaluation of efficiency, environmental impact and total social cost of domestic and international forestry projects for greenhouse gas mitigation: description and case studies. , 2005 .
[122] Kathy Steppe,et al. ANAFORE: A stand-scale process-based forest model that includes wood tissue development and labile carbon storage in trees , 2008 .
[123] Robert J. Scholes,et al. Current state and trends : findings of the Condition and Trends Working Group of the Millennium Ecosystem Assessment , 2005 .
[124] John T. Finn,et al. Flow analysis of models of the Hubbard Brook Ecosystem. , 1980 .
[125] Clemens Mensink,et al. Spatial interpolation of ambient ozone concentrations from sparse monitoring points in Belgium. , 2006, Journal of environmental monitoring : JEM.
[126] Brian D. Fath,et al. Network analysis applied to large-scale cyber-ecosystems , 2004 .
[127] Robert Costanza,et al. Ecosystem Health New Goals for Environmental Management , 1992 .
[128] N. Crossman,et al. An ecosystem services approach to estimating economic losses associated with drought , 2013 .
[129] B. Muys,et al. Simulating C cycles in forest soils: Including the active role of micro-organisms in the ANAFORE forest model , 2011 .
[130] M. Goedkoop,et al. The Eco-indicator 99, A damage oriented method for Life Cycle Impact Assessment , 1999 .
[131] J. M. Earles,et al. Consequential life cycle assessment: a review , 2011 .
[132] Jan Čermák,et al. Above- and belowground phytomass and carbon storage in a Belgian Scots pine stand , 1999 .
[133] H. Bugmann,et al. Adaptive management for competing forest goods and services under climate change. , 2012, Ecological applications : a publication of the Ecological Society of America.
[134] R. E. Lawson,et al. A “test of concept” comparison of aerodynamic and mechanical resuspension mechanisms for particles deposited on field rye grass (Secale cercele). Part 1. Relative particle flux rates , 2004 .
[135] Models of 3D crown structure for Scots pine (Pinus sylvestris) and silver birch (Betula pendula) grown in mixed forest , 2011 .
[136] A. Dijk,et al. Modelling rainfall interception by vegetation of variable density using an adapted analytical model. Part 2. Model validation for a tropical upland mixed cropping system , 2001 .
[137] Stefano Allesina,et al. WAND: an ecological network analysis user-friendly tool , 2004, Environ. Model. Softw..
[138] Gail Taylor,et al. Particulate pollution capture by urban trees: effect of species and windspeed , 2000 .
[139] S. DeStefano,et al. Wildlife as valuable natural resources vs. intolerable pests: a suburban wildlife management model , 2005, Urban Ecosystems.
[140] J. Neirynck,et al. The importance of dissolved organic carbon fluxes for the carbon balance of a temperate Scots pine forest , 2011 .
[141] W. Verstraete,et al. Successful hydraulic strategies to start up OLAND sequencing batch reactors at lab scale , 2012, Microbial biotechnology.
[142] Philip K. Hopke,et al. Critical review and meta-analysis of ambient particulate matter source apportionment using receptor models in Europe , 2013 .
[143] Ernest W. Tollner,et al. Defining an ecological thermodynamics using discrete simulation approaches , 2007 .
[144] Frédéric Mothe,et al. Quantifying the impact of forest management on the carbon balance of the forest-wood product chain: A case study applied to even-aged oak stands in France , 2012 .
[145] Bart Muys,et al. Assessment of land use impact on water-related ecosystem services capturing the integrated terrestrial-aquatic system. , 2009, Environmental science & technology.
[146] D. Ballabio,et al. Particle size, chemical composition, seasons of the year and urban, rural or remote site origins as determinants of biological effects of particulate matter on pulmonary cells. , 2013, Environmental pollution.
[147] R. B. Jackson,et al. Groundwater use and salinization with grassland afforestation , 2004 .
[148] N. Zimmermann,et al. Growth of Norway spruce (Picea abies L.) saplings in subalpine forests in Switzerland: Does spring climate matter? , 2006 .
[149] E. Odum. The strategy of ecosystem development. , 1969, Science.
[150] B. Muys,et al. Assessment of the functional role of tree diversity: the multi-site FORBIO experiment , 2013 .
[151] V. Kint,et al. Current status and predicted impact of climate change on forest production and biogeochemistry in the temperate oceanic European zone: review and prospects for Belgium as a case study , 2012, Journal of Forest Research.
[152] Pekka Leskinen,et al. Current limits of life cycle assessment framework in evaluating environmental sustainability – case of two evolving biofuel technologies , 2013 .
[153] P. Bourdeau. The man-nature relationship and environmental ethics. , 2004, Journal of environmental radioactivity.
[154] Bhavik R Bakshi,et al. Accounting for ecosystem services in Life Cycle Assessment, Part II: toward an ecologically based LCA. , 2010, Environmental science & technology.
[155] Yan Zhang,et al. Evaluation of urban metabolism based on emergy synthesis: A case study for Beijing (China) , 2009 .
[156] Ursula M. Scharler,et al. Least-inference methods for constructing networks of trophic flows , 2008 .
[157] Scavenging processes of atmospheric particulate matter: a numerical modeling of case studies , 2010 .
[158] Tian Gao,et al. The role of forest stand structure as biodiversity indicator , 2014 .
[159] R. Dunn. Global Mapping of Ecosystem Disservices: The Unspoken Reality that Nature Sometimes Kills us , 2010 .
[160] T. Koellner,et al. Land use impacts on freshwater regulation, erosion regulation, and water purification: a spatial approach for a global scale level , 2013, The International Journal of Life Cycle Assessment.
[161] F. M. Kellihera,et al. Limitations to carbon mineralization in litter and mineral soil of young and old ponderosa pine forests , 2004 .
[162] E. Nord,et al. The value of DALY life: problems with ethics and validity of disability adjusted life years , 1999, BMJ.
[163] Bart van den Hurk,et al. Climate Change Scenarios 2006 for the Netherlands , 2006 .
[164] B. Ulrich,et al. Interaction of Forest Canopies with Atmospheric Constituents: So 2 , Alkali and Earth Alkali Cations and Chloride , 1983 .
[165] P. Duvigneaud. La synthèse écologique: populations, communautés, écosystèmes, biosphère, noosphère , 1974 .
[166] Peter D. Blanken,et al. Partitioning forest carbon fluxes with overstory and understory eddy-covariance measurements: A synthesis based on FLUXNET data , 2007 .
[167] Jan Staes,et al. A web application to support the quantification and valuation of ecosystem services , 2013 .
[168] A. J. Friedland,et al. Soil carbon release along a gradient of physical disturbance in a harvested northern hardwood forest , 2011 .
[169] B. Muys. Sustainable development within planetary boundaries: a functional revision of the definition based on the thermodynamics of complex social-ecological systems , 2013 .
[170] Satoshi Hirabayashi,et al. Modeled PM2.5 removal by trees in ten U.S. cities and associated health effects. , 2013, Environmental pollution.
[171] Seth A. Bata,et al. Analysis of microdynamic environ flows in an ecological network , 2006 .
[172] B. Hicks,et al. A micrometeorological investigation of surface exchange of O3, SO2 and NO2: A case study , 1989 .
[173] Stefanie Hellweg,et al. Solar energy demand (SED) of commodity life cycles. , 2011, Environmental science & technology.
[174] Martin Hvidberg,et al. An inventory of tree species in Europe—An essential data input for air pollution modelling , 2008 .
[175] Clemens Mensink,et al. Spatial interpolation of air pollution measurements using CORINE land cover data , 2008 .
[176] Todd E. Dawson,et al. Determining water use by trees and forests from isotopic, energy balance and transpiration analyses: the roles of tree size and hydraulic lift. , 1996, Tree physiology.
[177] Z. Yang,et al. Ecological network determination of sectoral linkages, utility relations and structural characteristics on urban ecological economic system , 2011 .
[178] R. Barthelmie,et al. A review of measurement and modelling results of particle atmosphere–surface exchange , 2008 .
[179] S. Pfister,et al. Assessing the environmental impacts of freshwater consumption in LCA. , 2009, Environmental science & technology.
[180] S. Ormerod,et al. EDITORIAL: Ecological science for ecosystem services and the stewardship of Natural Capital , 2013 .
[181] B. Hannon,et al. The structure of ecosystems. , 1973, Journal of theoretical biology.
[182] J. Neirynck,et al. Long-term (13 years) measurements of SO2 fluxes over a forest and their control by surface chemistry , 2011 .
[183] J. Finn,et al. Measures of ecosystem structure and function derived from analysis of flows. , 1976, Journal of theoretical biology.
[184] K. Ninan,et al. Valuing forest ecosystem services: Case study of a forest reserve in Japan , 2013 .
[185] Herman E. Daly,et al. On Economics as a Life Science , 1968, Journal of Political Economy.
[186] P. Llorens. Rainfall interception by a Pinus sylvestris forest patch overgrown in a Mediterranean mountainous abandoned area II. Assessment of the applicability of Gash's analytical model , 1997 .
[187] Jason S. Link,et al. Response of balanced network models to large-scale perturbation: Implications for evaluating the role of small pelagics in the Gulf of Maine , 2009 .
[188] R. Ceulemans,et al. Footprint-adjusted net ecosystem CO2 exchange and carbon balance components of a temperate forest , 2006 .
[189] Jan Staes,et al. Developing a value function for nature development and land use policy in Flanders, Belgium. , 2013 .
[190] Karline Soetaert,et al. Are network indices robust indicators of food web functioning? A Monte Carlo approach , 2009 .
[191] Markus Reichstein,et al. CO2 balance of boreal, temperate, and tropical forests derived from a global database , 2007 .
[192] R. Samson,et al. Foliar Nitrogen Uptake from Wet Deposition and the Relation with Leaf Wettability and Water Storage Capacity , 2011 .
[193] Martin Kumar Patel,et al. Handbook on a Novel Methodology for the Sustainability Impact of New Technologies , 2013 .
[194] R. O'Neill,et al. The value of the world's ecosystem services and natural capital , 1997, Nature.
[195] Yves Brunet,et al. Validation of eddy flux measurements above the understorey of a pine forest , 2001 .
[196] Best available practice regarding impact categories and category indicators in life cycle impact assessment , 1999 .
[197] M. Vanclooster,et al. SAFE - A hierarchical framework for assessing the sustainability of agricultural systems , 2007 .
[198] J. Neirynck,et al. Impact of decreasing throughfall depositions on soil solution chemistry at coniferous monitoring sites in northern Belgium , 2002 .
[199] J. Cumberland,et al. A regional interindustry model for analysis of development objectives , 1966 .
[200] Yi Zhang,et al. Accounting for ecosystem services in life cycle assessment, Part I: a critical review. , 2010, Environmental science & technology.
[201] T. Koellner,et al. UNEP-SETAC guideline on global land use impact assessment on biodiversity and ecosystem services in LCA , 2013, The International Journal of Life Cycle Assessment.
[202] Anders Hammer Strømman,et al. Life cycle assessment of bioenergy systems: state of the art and future challenges. , 2011, Bioresource technology.
[203] Klaus Hubacek,et al. Could Payments for Ecosystem Services Create an "Ecosystem Service Curse"? , 2013, Ecology and Society.
[204] G. Mace,et al. Biodiversity and ecosystem services: a multilayered relationship. , 2012, Trends in ecology & evolution.
[205] J. Neirynck,et al. Nitrogen biogeochemistry of a mature Scots pine forest subjected to high nitrogen loads , 2008 .
[206] Yuesi Wang,et al. Effect of land-use change on CH4 and N2O emissions from freshwater marsh in Northeast China , 2009 .
[207] Ming Xu,et al. Interconnectedness and Resilience of the U.S. Economy , 2011, Adv. Complex Syst..
[208] Bernard C. Patten,et al. Energy, emergy and environs , 1992 .
[209] Brian D. Fath,et al. Network mutualism: Positive community-level relations in ecosystems , 2007 .
[210] Sangwon Suh,et al. Generalized Make and Use Framework for Allocation in Life Cycle Assessment , 2010 .
[211] J. Thundiyil,et al. Clearing the Air: A Review of the Effects of Particulate Matter Air Pollution on Human Health , 2011, Journal of Medical Toxicology.
[212] Alex K. Jones,et al. Dynamic life cycle assessment: framework and application to an institutional building , 2012, The International Journal of Life Cycle Assessment.
[213] Benedetto Rugani,et al. Improvements to Emergy evaluations by using Life Cycle Assessment. , 2012, Environmental science & technology.
[214] J Dewulf,et al. Cumulative exergy extraction from the natural environment (CEENE): a comprehensive life cycle impact assessment method for resource accounting. , 2007, Environmental science & technology.
[215] T. Koellner,et al. Land use impacts on biodiversity in LCA: proposal of characterization factors based on functional diversity , 2013, The International Journal of Life Cycle Assessment.
[216] Thomas Rötzer,et al. Models for supporting forest management in a changing environment , 2011 .
[217] Luke G. Latham. Network flow analysis algorithms , 2006 .
[218] Marco Scotti,et al. Network Analysis as a tool for assessing environmental sustainability: applying the ecosystem perspective to a Danish Water Management System. , 2013, Journal of environmental management.
[219] Dominik Saner,et al. The environmental relevance of freshwater consumption in global power production , 2011 .
[220] R. Ceulemans,et al. Under-story contributions to stand level GPP using the process model SECRETS , 2006 .
[221] Pete Smith,et al. REVIEW: The role of ecosystems and their management in regulating climate, and soil, water and air quality , 2013 .
[222] B. Chen,et al. The structure, evolution and sustainability of urban socio-economic system , 2012, Ecol. Informatics.
[223] Hanna Pihkola,et al. Comparison of different normalised LCIA results and their feasibility in communication , 2013, The International Journal of Life Cycle Assessment.
[224] Willy Verstraete,et al. Aggregate Size and Architecture Determine Microbial Activity Balance for One-Stage Partial Nitritation and Anammox , 2009, Applied and Environmental Microbiology.
[225] Francesco Cherubini,et al. Global Warming Potential of Carbon Dioxide Emissions from Biomass Stored in the Anthroposphere and Used for Bioenergy at End of Life , 2013 .
[226] B. Muys,et al. orum novel comparative research platform designed to determine the unctional significance of tree species diversity in European forests , 2013 .
[227] Ron Smith,et al. Bayesian calibration of process-based forest models: bridging the gap between models and data. , 2005, Tree physiology.
[228] Spatial occurrence of major tree species groups in Europe derived from multiple data sources , 2009 .
[229] H. Kros,et al. AFFOREST sDSS: a metamodel based spatial decision support system for afforestation of agricultural land , 2005, New Forests.
[230] Marc H. Pullman. Conifer PM2.5 Deposition and Resuspension in Wind and Rain Events , 2008 .
[231] G. Bonan. Forests and Climate Change: Forcings, Feedbacks, and the Climate Benefits of Forests , 2008, Science.
[232] Ernest W. Tollner,et al. Cycling in ecosystems: An individual based approach , 2009 .
[233] Gjalt Huppes,et al. Thermodynamic resource indicators in LCA: a case study on the titania produced in Panzhihua city, southwest China , 2012, The International Journal of Life Cycle Assessment.
[234] F. Chapin,et al. A safe operating space for humanity , 2009, Nature.
[235] Jan Szargut,et al. Exergy Analysis of Thermal, Chemical, and Metallurgical Processes , 1988 .
[236] Steven De Meester,et al. Accounting for the occupation of the marine environment as a natural resource in life cycle assessment: An exergy based approach , 2014 .
[237] Zaid Chalabi,et al. An integrated tool to assess the role of new planting in PM10 capture and the human health benefits: a case study in London. , 2009, Environmental pollution.
[238] Michael R. Raupach,et al. Simplified expressions for vegetation roughness length and zero-plane displacement as functions of canopy height and area index , 1994 .
[239] H. Haberl,et al. Quantifying and mapping the human appropriation of net primary production in earth's terrestrial ecosystems , 2007, Proceedings of the National Academy of Sciences.
[240] Yan Zhang,et al. Ecological network analysis of an urban water metabolic system: model development, and a case study for Beijing. , 2010, The Science of the total environment.
[241] Pol Coppin,et al. 3D upscaling of transpiration from leaf to tree using ground-based LiDAR: Application on a Mediterranean Holm oak (Quercus ilex L.) tree , 2009 .
[242] R. Ceulemans,et al. Simulated soil CO2 efflux and net ecosystem exchange in a 70-year-old Belgian Scots pine stand using the process model SECRETS , 2001 .
[243] W. Leontief. Quantitative Input and Output Relations in the Economic Systems of the United States , 1936 .
[244] Harald Bugmann,et al. A New Forest Gap Model to Study the Effects of Environmental Change on Forest Structure and Functioning , 1997 .
[245] John D. Aber,et al. FOLIAGE-HEIGHT PROFILES AND SUCCESSION IN NORTHERN HARDWOOD FORESTS' , 1979 .
[246] Gjalt Huppes,et al. Methods in the Life Cycle Inventory of a Product , 2009 .
[247] Robert R. Christian,et al. Ecological network analyses and their use for establishing reference domain in functional assessment of an estuary. , 2009 .
[248] J. Neirynck,et al. Decadal water balance of a temperate Scots pine forest (Pinus sylvestris L.) based on measurements and modelling , 2009 .
[249] Brian D. Fath,et al. A MATLABreg function for Network Environ Analysis , 2006, Environ. Model. Softw..
[250] Anne Gobin,et al. Valuing the carbon sequestration potential for European agriculture , 2013 .
[251] B. C. Patten,et al. Throughflow analysis: A stochastic approach , 2009 .
[252] G. Dóka. Life Cycle Inventories of Waste Treatment Services , 2003 .
[253] Annette Menzel,et al. Impact of climate and drought events on the growth of Scots pine (Pinus sylvestris L.) provenances , 2013 .
[254] Julien Chevallier,et al. Detecting instability in the volatility of carbon prices , 2011 .
[255] W. Verstraete,et al. Small aggregates can cause nitrite accumulation in one-stage partial nitritation and anammox , 2010 .
[256] Shannan Xu,et al. An ecological model of the artificial ecosystem (northern Hangzhou Bay, China): analysis of ecosystem structure and fishing impacts , 2011, Helgoland Marine Research.