2013, ISBN 9781926895444, xii, 173
This book highlights the application and impact of GPS techniques to regulate fertilizer supply based on soil nutrient distribution and yield goals set by...
Productivité | Precision farming | Sols | Soil fertility | Fertilité | Soil productivity | Préciculture
Productivité | Precision farming | Sols | Soil fertility | Fertilité | Soil productivity | Préciculture
Book
2013, ISBN 9781926895086, xii, 341
Book
Ecology, ISSN 0012-9658, 2/2011, Volume 92, Issue 2, pp. 296 - 303
Ecosystem productivity commonly increases asymptotically with plant species diversity, and determining the mechanisms responsible for this well-known pattern...
species richness | diversity-–productivity | pathogens | AMF | density dependence | negative feedback | soil microbes | Productivity | Plant diseases | Species diversity | Pathogens | Soil microorganisms | Reports | Plants | Grassland soils | Soil treatment | Soil ecology | Soil plant interactions | diversity–productivity | Negative feedback | Soil Microbes | Density dependence | Diversity-productivity | Species richness | SPECIES-DIVERSITY | BIODIVERSITY | ELEVATED CO2 | COMMUNITIES | ARBUSCULAR MYCORRHIZAE | diversity-productivity | NITROGEN DEPOSITION | DISEASE | ECOLOGY | ECOSYSTEMS | FEEDBACK | Plant Development | Biodiversity | Plants - classification | Models, Biological | Soil Microbiology | Primary productivity (Biology) | Grasslands | Plant-soil relationships | Research | Soil microbiology
species richness | diversity-–productivity | pathogens | AMF | density dependence | negative feedback | soil microbes | Productivity | Plant diseases | Species diversity | Pathogens | Soil microorganisms | Reports | Plants | Grassland soils | Soil treatment | Soil ecology | Soil plant interactions | diversity–productivity | Negative feedback | Soil Microbes | Density dependence | Diversity-productivity | Species richness | SPECIES-DIVERSITY | BIODIVERSITY | ELEVATED CO2 | COMMUNITIES | ARBUSCULAR MYCORRHIZAE | diversity-productivity | NITROGEN DEPOSITION | DISEASE | ECOLOGY | ECOSYSTEMS | FEEDBACK | Plant Development | Biodiversity | Plants - classification | Models, Biological | Soil Microbiology | Primary productivity (Biology) | Grasslands | Plant-soil relationships | Research | Soil microbiology
Journal Article
2015, ISBN 1771880503, xii, 499
This book is a comprehensive volume that brings together vast knowledge about agricultural prairies in one place, providing concise information and providing...
Natural resources | Prairies | Crop yields | Agriculture | Agricultural productivity | Land use, Rural | Agriculture & Farming | Crop Science | Plant & Animal Ecology | Agricultural geography | Soil fertility | Crops and soils
Natural resources | Prairies | Crop yields | Agriculture | Agricultural productivity | Land use, Rural | Agriculture & Farming | Crop Science | Plant & Animal Ecology | Agricultural geography | Soil fertility | Crops and soils
Book
2012, Advances in soil science, ISBN 9781439850794, Volume 19, xv, 578
Book
Global Change Biology, ISSN 1354-1013, 2007, Volume 13, Issue 12, pp. 2563 - 2581
We used a nonintrusive field experiment carried out at six sites – Wales (UK), Denmark (DK), the Netherlands (NL), Hungary (HU), Sardinia (Italy – IT), and...
plant growth | biodiversity | heat wave | plant biomass | shrubland | net primary productivity | species richness | global warming | drought | European gradient | forest‐steppe | heathland | litterfall | climate change | Plant biomass | Forest-steppe | Biodiversity | Litterfall | Climate change | Heathland | Plant growth | Heat wave | Global warming | Shrubland | Drought | Net primary productivity | Species richness | ENVIRONMENTAL-CHANGE | CISTUS-ALBIDUS | SOIL | BIODIVERSITY CONSERVATION | CARBON-CYCLE | TERRESTRIAL ECOSYSTEMS | CLIMATE-CHANGE | QUERCUS-ILEX | forest-steppe | EVERGREEN MEDITERRANEAN FOREST | ENVIRONMENTAL SCIENCES | ECOLOGY | PHILLYREA-LATIFOLIA | ARCTIC ECOSYSTEMS | Research institutes | Droughts | Ecosystems | Temperature | Botany | Comparative studies | Biology | Experiments | arctic ecosystems | phillyrea-latifolia | carbon-cycle | environmental-change | cistus-albidus | soil | quercus-ilex | terrestrial ecosystems | climate-change | evergreen mediterranean forest
plant growth | biodiversity | heat wave | plant biomass | shrubland | net primary productivity | species richness | global warming | drought | European gradient | forest‐steppe | heathland | litterfall | climate change | Plant biomass | Forest-steppe | Biodiversity | Litterfall | Climate change | Heathland | Plant growth | Heat wave | Global warming | Shrubland | Drought | Net primary productivity | Species richness | ENVIRONMENTAL-CHANGE | CISTUS-ALBIDUS | SOIL | BIODIVERSITY CONSERVATION | CARBON-CYCLE | TERRESTRIAL ECOSYSTEMS | CLIMATE-CHANGE | QUERCUS-ILEX | forest-steppe | EVERGREEN MEDITERRANEAN FOREST | ENVIRONMENTAL SCIENCES | ECOLOGY | PHILLYREA-LATIFOLIA | ARCTIC ECOSYSTEMS | Research institutes | Droughts | Ecosystems | Temperature | Botany | Comparative studies | Biology | Experiments | arctic ecosystems | phillyrea-latifolia | carbon-cycle | environmental-change | cistus-albidus | soil | quercus-ilex | terrestrial ecosystems | climate-change | evergreen mediterranean forest
Journal Article
1998, 41
Book
Ecology, ISSN 0012-9658, 04/2013, Volume 94, Issue 4, pp. 787 - 793
The relationship between plant diversity and productivity in grasslands could depend, partly, on how diversity affects vertical distributions of root biomass...
species richness | legume | grass | complementarity | aboveground biomass | root biomass | interspecific interactions | Productivity | Legumes | Root biomass | Rooting depth | Plant roots | Plant ecology | Reports | Plants | Grasses | Aboveground biomass | Soil resources | C4 grass | Interspecific interactions | Complementarity | Species richness | Legume | BIODIVERSITY | SOIL CARBON | PLANT DIVERSITY | ABUNDANCE | MIXTURES | COEXISTENCE | TEMPERATE FORAGE | COMPETITION | ECOLOGY | C-4 grass | WATER | Grasslands | Roots (Botany) | Plant communities | Research
species richness | legume | grass | complementarity | aboveground biomass | root biomass | interspecific interactions | Productivity | Legumes | Root biomass | Rooting depth | Plant roots | Plant ecology | Reports | Plants | Grasses | Aboveground biomass | Soil resources | C4 grass | Interspecific interactions | Complementarity | Species richness | Legume | BIODIVERSITY | SOIL CARBON | PLANT DIVERSITY | ABUNDANCE | MIXTURES | COEXISTENCE | TEMPERATE FORAGE | COMPETITION | ECOLOGY | C-4 grass | WATER | Grasslands | Roots (Botany) | Plant communities | Research
Journal Article
Environmental Reviews, ISSN 1181-8700, 2011, Volume 19, Issue 1, pp. 278 - 309
Concerns about climate change and the desire to develop a domestic, renewable energy source are increasing the interest in forest biomass extraction,...
Leaves | Agricultural soils | Boreal forests | Soil nutrients | Mineral soils | Soil productivity | Acid soils | Agrology | Organic soils | Forest soils | Stand productivity | Forest biomass | Tree nutrition | Whole-tree harvesting | PEATY GLEY SOILS | UNITED-STATES | stand productivity | WHOLE-TREE HARVEST | SITKA SPRUCE STANDS | whole-tree harvesting | LOBLOLLY-PINE PLANTATION | ACID-BASE STATUS | forest biomass | ENVIRONMENTAL SCIENCES | soil productivity | tree nutrition | NORTHERN MIXED FOREST | ORGANIC-MATTER REMOVAL | PICEA-ABIES | ABIES L. KARST
Leaves | Agricultural soils | Boreal forests | Soil nutrients | Mineral soils | Soil productivity | Acid soils | Agrology | Organic soils | Forest soils | Stand productivity | Forest biomass | Tree nutrition | Whole-tree harvesting | PEATY GLEY SOILS | UNITED-STATES | stand productivity | WHOLE-TREE HARVEST | SITKA SPRUCE STANDS | whole-tree harvesting | LOBLOLLY-PINE PLANTATION | ACID-BASE STATUS | forest biomass | ENVIRONMENTAL SCIENCES | soil productivity | tree nutrition | NORTHERN MIXED FOREST | ORGANIC-MATTER REMOVAL | PICEA-ABIES | ABIES L. KARST
Journal Article
1983, ISBN 0632009527, x, 191
Book
1998, Technical bulletin (National Council of the Paper Industry for Air and Stream Improvement (U.S.)), Volume 766., 41
Book
Energy, ISSN 0360-5442, 12/2015, Volume 93, pp. 606 - 612
Field and laboratory trials of the energy crop species Virginia mallow ( L. Rusby) and cup plant ( L.) were conducted to evaluate the effects of liming and...
Energy expenses | Fractional composition | Energy crops | Calorific value | Biofuel production | YIELD | ENERGY & FUELS | GRASSES | BIOMASS PELLETS | MECHANICAL-PROPERTIES | SUITABILITY | TECHNOLOGIES | THERMODYNAMICS | CROPS | SOIL | CULTIVATION | Mechanical properties | Forests and forestry | Biomass energy | Analysis | Productivity | Expenses | Humidity | Plants (organisms) | Biomass | Biomass energy production | Drying | Pellets
Energy expenses | Fractional composition | Energy crops | Calorific value | Biofuel production | YIELD | ENERGY & FUELS | GRASSES | BIOMASS PELLETS | MECHANICAL-PROPERTIES | SUITABILITY | TECHNOLOGIES | THERMODYNAMICS | CROPS | SOIL | CULTIVATION | Mechanical properties | Forests and forestry | Biomass energy | Analysis | Productivity | Expenses | Humidity | Plants (organisms) | Biomass | Biomass energy production | Drying | Pellets
Journal Article
Agricultural Water Management, ISSN 0378-3774, 2006, Volume 80, Issue 1, pp. 176 - 196
To increase crop yield per unit of scarce water requires both better cultivars and better agronomy. The challenge is to manage the crop or improve its genetic...
Harvest index | Water deficits | Water balance | Floret fertility | Water-use efficiency | SUPPLY-AND-DEMAND | WHEAT TRITICUM-AESTIVUM | NORTHERN GREAT-PLAINS | AGRONOMY | SOUTH-EASTERN AUSTRALIA | floret fertility | water-use efficiency | USE EFFICIENCY | WATER RESOURCES | water balance | DRYLAND WHEAT | BREAD WHEAT | harvest index | GRAIN-YIELD | SOIL-WATER | water deficits | MEDITERRANEAN-TYPE ENVIRONMENTS | Water | Water balance (Hydrology) | Crop yields
Harvest index | Water deficits | Water balance | Floret fertility | Water-use efficiency | SUPPLY-AND-DEMAND | WHEAT TRITICUM-AESTIVUM | NORTHERN GREAT-PLAINS | AGRONOMY | SOUTH-EASTERN AUSTRALIA | floret fertility | water-use efficiency | USE EFFICIENCY | WATER RESOURCES | water balance | DRYLAND WHEAT | BREAD WHEAT | harvest index | GRAIN-YIELD | SOIL-WATER | water deficits | MEDITERRANEAN-TYPE ENVIRONMENTS | Water | Water balance (Hydrology) | Crop yields
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 11/2010, Volume 107, Issue 45, pp. 19368 - 19373
Stimulation of terrestrial plant production by rising CO₂ concentration is projected to reduce the airborne fraction of anthropogenic CO₂ emissions. Coupled...
Climate change | Ecosystem models | Atmospheric models | Forest stands | Climate models | Forest ecosystems | Nitrogen | Atmospherics | Deciduous forests | Forest soils | DECIDUOUS FOREST | ELEVATED CO2 | CARBON | sweetgum | MULTIDISCIPLINARY SCIENCES | INCREASES | CLIMATE-CHANGE | coupled climate-carbon cycle models | MODEL | RESPONSES | SOIL-NITROGEN | global carbon cycle | CO2 fertilization | RISING ATMOSPHERIC CO2 | free air CO2 enrichment | LIMITATION | Trees - metabolism | Fertilization | Ecosystem | Tennessee | Nitrogen - pharmacology | Trees - growth & development | Carbon Dioxide - pharmacology | Trees | Forests | fertilization | budgets | Terrestrial environments | Carbon dioxide | Emissions | Biological Sciences
Climate change | Ecosystem models | Atmospheric models | Forest stands | Climate models | Forest ecosystems | Nitrogen | Atmospherics | Deciduous forests | Forest soils | DECIDUOUS FOREST | ELEVATED CO2 | CARBON | sweetgum | MULTIDISCIPLINARY SCIENCES | INCREASES | CLIMATE-CHANGE | coupled climate-carbon cycle models | MODEL | RESPONSES | SOIL-NITROGEN | global carbon cycle | CO2 fertilization | RISING ATMOSPHERIC CO2 | free air CO2 enrichment | LIMITATION | Trees - metabolism | Fertilization | Ecosystem | Tennessee | Nitrogen - pharmacology | Trees - growth & development | Carbon Dioxide - pharmacology | Trees | Forests | fertilization | budgets | Terrestrial environments | Carbon dioxide | Emissions | Biological Sciences
Journal Article
2011, ISBN 1845938097, xvii, 287
Book
Journal of Geophysical Research: Biogeosciences, ISSN 0148-0227, 09/2012, Volume 117, Issue G3, p. n/a
Accurately simulating gross primary productivity (GPP) in terrestrial ecosystem models is critical because errors in simulated GPP propagate through the model...
gross primary productivity | model performance | modeling | HIGH-ELEVATION | ENVIRONMENTAL SCIENCES | INTERANNUAL VARIABILITY | GEOSCIENCES, MULTIDISCIPLINARY | STOMATAL CONDUCTANCE | SOIL-MOISTURE | SUB-ALPINE FOREST | BOREAL FORESTS | GLOBAL VEGETATION MODEL | CO2 EXCHANGE | DIOXIDE FLUXES | NET ECOSYSTEM PRODUCTIVITY
gross primary productivity | model performance | modeling | HIGH-ELEVATION | ENVIRONMENTAL SCIENCES | INTERANNUAL VARIABILITY | GEOSCIENCES, MULTIDISCIPLINARY | STOMATAL CONDUCTANCE | SOIL-MOISTURE | SUB-ALPINE FOREST | BOREAL FORESTS | GLOBAL VEGETATION MODEL | CO2 EXCHANGE | DIOXIDE FLUXES | NET ECOSYSTEM PRODUCTIVITY
Journal Article