Chemosphere, ISSN 0045-6535, 2017, Volume 168, pp. 1277 - 1284
Biochar application can increase carbon sequestration and reduce greenhouse gases emissions in paddy soils. However, its influence on ammonia (NH )...
Biochar | volatilization | Paddy soil
Biochar | volatilization | Paddy soil
Journal Article
1974, Environmental Protection Technology Series EPA 660/2-74-044., 130
Book
Plant and Soil, ISSN 0032-079X, 6/2011, Volume 343, Issue 1/2, pp. 109 - 137
Croplands mainly act as net sources of the greenhouse gases carbon dioxide (CO2) and nitrous oxide (N2O), as well as nitrogen oxide (NO), a precursor of...
Agricultural soils | Crop rotation | Corn | Nitrogen | Soil respiration | Carbon | Leaching | Grassland soils | Slurries | Forest soils | Life Sciences | N 2 O fluxes | Barley | NO fluxes | Ecology | Plant Physiology | Maize | Mustard | Plant Sciences | Wheat | NH 3 volatilization | Soil Science & Conservation | O fluxes | volatilization | LONG-TERM | AGRONOMY | FLUX MEASUREMENT | PLANT SCIENCES | NET ECOSYSTEM EXCHANGE | REACTIVE NITROGEN | SOIL SCIENCE | ESTIMATING AMMONIA VOLATILIZATION | BIOSPHERE-ATMOSPHERE EXCHANGE | APPLIED MANURE | N2O fluxes | ORGANIC-CARBON | AGRICULTURAL SOILS | ZEA-MAYS L | NH3 volatilization | Cropping systems | Ecosystems | Agricultural ecology | Air pollution | Budget | Nitrous oxide | Greenhouse gases | Atmospheric carbon dioxide | Emissions | Vegetal Biology
Agricultural soils | Crop rotation | Corn | Nitrogen | Soil respiration | Carbon | Leaching | Grassland soils | Slurries | Forest soils | Life Sciences | N 2 O fluxes | Barley | NO fluxes | Ecology | Plant Physiology | Maize | Mustard | Plant Sciences | Wheat | NH 3 volatilization | Soil Science & Conservation | O fluxes | volatilization | LONG-TERM | AGRONOMY | FLUX MEASUREMENT | PLANT SCIENCES | NET ECOSYSTEM EXCHANGE | REACTIVE NITROGEN | SOIL SCIENCE | ESTIMATING AMMONIA VOLATILIZATION | BIOSPHERE-ATMOSPHERE EXCHANGE | APPLIED MANURE | N2O fluxes | ORGANIC-CARBON | AGRICULTURAL SOILS | ZEA-MAYS L | NH3 volatilization | Cropping systems | Ecosystems | Agricultural ecology | Air pollution | Budget | Nitrous oxide | Greenhouse gases | Atmospheric carbon dioxide | Emissions | Vegetal Biology
Journal Article
Annual Review of Plant Biology, ISSN 1543-5008, 2000, Volume 51, pp. 401 - 432
Journal Article
Journal of the American Ceramic Society, ISSN 0002-7820, 12/2017, Volume 100, Issue 12, pp. 5389 - 5394
Journal Article
Biology and Fertility of Soils, ISSN 0178-2762, 7/2019, Volume 55, Issue 5, pp. 497 - 509
A 15N labeling and lysimeter experiment was conducted with mesocosms of a semi-arid Leymus chinensis grassland. The aim of the study was to evaluate the...
Life Sciences | Nitrogen fertilization timing | N 2 O emission | 15 N labeling | Agriculture | Ecosystem services | Nitrogen fertilization rate | NH 3 volatilization | Soil Science & Conservation | O emission | volatilization | N labeling | MANAGEMENT | N2O emission | LEYMUS-CHINENSIS | INNER-MONGOLIA | N-15 labeling | SOIL SCIENCE | SOIL-NITROGEN | RECOVERY EFFICIENCY | N-15-LABELED FERTILIZER | NH3 volatilization | AMMONIA VOLATILIZATION | UREA | Mesocosms | Grasslands | Seeds | Fertilizer industry | Analysis | Closed ecological systems | Leaching | Fertilizers | Soil fertility | Ecosystems | Ammonia pressure leaching | Nitrogen isotopes | Recovery | Nitrous oxides | Nitrous oxide | Fertilization | Nitrogen | Risk analysis | Spring | Emissions | Ammonia | Soils | Plant growth | Tradeoffs | Aridity | Biological fertilization | Yield
Life Sciences | Nitrogen fertilization timing | N 2 O emission | 15 N labeling | Agriculture | Ecosystem services | Nitrogen fertilization rate | NH 3 volatilization | Soil Science & Conservation | O emission | volatilization | N labeling | MANAGEMENT | N2O emission | LEYMUS-CHINENSIS | INNER-MONGOLIA | N-15 labeling | SOIL SCIENCE | SOIL-NITROGEN | RECOVERY EFFICIENCY | N-15-LABELED FERTILIZER | NH3 volatilization | AMMONIA VOLATILIZATION | UREA | Mesocosms | Grasslands | Seeds | Fertilizer industry | Analysis | Closed ecological systems | Leaching | Fertilizers | Soil fertility | Ecosystems | Ammonia pressure leaching | Nitrogen isotopes | Recovery | Nitrous oxides | Nitrous oxide | Fertilization | Nitrogen | Risk analysis | Spring | Emissions | Ammonia | Soils | Plant growth | Tradeoffs | Aridity | Biological fertilization | Yield
Journal Article
1922, 1st ed., International chemical series, 205
Book
Scientific Reports, ISSN 2045-2322, 12/2018, Volume 8, Issue 1, pp. 11461 - 9
Improving soil quality is critical for increasing rice yield, and biochar could be a beneficial soil amendment for high yield. This study was conducted to...
NH3 VOLATILIZATION | PADDY SOIL | QUALITY | HYBRID RICE | MULTIDISCIPLINARY SCIENCES | FERTILIZER | ACIDIFICATION | CROP PRODUCTIVITY | N-USE EFFICIENCY | AMMONIA VOLATILIZATION | NUTRIENT AVAILABILITY | Ammonia | Grain | Volatilization | Soil amendment | Rice | Fertilizers
NH3 VOLATILIZATION | PADDY SOIL | QUALITY | HYBRID RICE | MULTIDISCIPLINARY SCIENCES | FERTILIZER | ACIDIFICATION | CROP PRODUCTIVITY | N-USE EFFICIENCY | AMMONIA VOLATILIZATION | NUTRIENT AVAILABILITY | Ammonia | Grain | Volatilization | Soil amendment | Rice | Fertilizers
Journal Article
Sugar Tech, ISSN 0972-1525, 2/2019, Volume 21, Issue 1, pp. 20 - 28
Vinasse is a by-product generated during the distillation phase of ethanol production. Vinasse can be concentrated and enriched with N to be used as a means of...
Life Sciences | N immobilization | Agriculture | N–NH 3 volatilization losses | N-mineral | Sugarcane yield parameters | volatilization losses | N–NH | CONCENTRATED VINASSE | AGRONOMY | N-NH3 volatilization losses | AMMONIA VOLATILIZATION | UREA | Phosphates | Boric acid | Phosphoric acid | Ammonium compounds | Urea | Usage | Ammonium paratungstate | Sugarcane | Fertilizers
Life Sciences | N immobilization | Agriculture | N–NH 3 volatilization losses | N-mineral | Sugarcane yield parameters | volatilization losses | N–NH | CONCENTRATED VINASSE | AGRONOMY | N-NH3 volatilization losses | AMMONIA VOLATILIZATION | UREA | Phosphates | Boric acid | Phosphoric acid | Ammonium compounds | Urea | Usage | Ammonium paratungstate | Sugarcane | Fertilizers
Journal Article
Environmental Science and Pollution Research, ISSN 0944-1344, 3/2018, Volume 25, Issue 9, pp. 8388 - 8395
Sawdust biochar (SDB) was for the first time applied to rice paddy field to evaluate its effects on potential nitrogen (N) runoff and ammonia (NH3)...
Environment, general | Floodwater | Environmental Health | Ecotoxicology | Sawdust biochar | Environment | Non-point source pollution | Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution | Nitrogen | Environmental Chemistry | Atmospheric Protection/Air Quality Control/Air Pollution | NH 3 volatilization | NH | volatilization | PYROLYSIS TEMPERATURE | RETENTION | AMENDMENT | ADSORPTION | OXIDE EMISSION | ENVIRONMENTAL SCIENCES | WASTE-WATER | GIANT REED | SOIL | STRAW BIOCHAR | NH3 volatilization | AMMONIA VOLATILIZATION | Soils | Ammonia | Urea | Runoff | Volatilization | Rice fields | Sawdust | pH effects | Charcoal
Environment, general | Floodwater | Environmental Health | Ecotoxicology | Sawdust biochar | Environment | Non-point source pollution | Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution | Nitrogen | Environmental Chemistry | Atmospheric Protection/Air Quality Control/Air Pollution | NH 3 volatilization | NH | volatilization | PYROLYSIS TEMPERATURE | RETENTION | AMENDMENT | ADSORPTION | OXIDE EMISSION | ENVIRONMENTAL SCIENCES | WASTE-WATER | GIANT REED | SOIL | STRAW BIOCHAR | NH3 volatilization | AMMONIA VOLATILIZATION | Soils | Ammonia | Urea | Runoff | Volatilization | Rice fields | Sawdust | pH effects | Charcoal
Journal Article
Chemosphere, ISSN 0045-6535, 02/2017, Volume 168, pp. 1277 - 1284
Biochar application can increase carbon sequestration and reduce greenhouse gases emissions in paddy soils. However, its influence on ammonia (NH )...
NH4+-N | Biochar | NH3 volatilization | Paddy soil | SEWAGE-SLUDGE | FLOATING DUCKWEED | AMENDMENT | GREENWASTE BIOCHAR | ENVIRONMENTAL SCIENCES | ATMOSPHERIC AMMONIA | WASTE-WATER | NITROGEN | EMISSION | AMMONIA VOLATILIZATION | UREA | Index Medicus
NH4+-N | Biochar | NH3 volatilization | Paddy soil | SEWAGE-SLUDGE | FLOATING DUCKWEED | AMENDMENT | GREENWASTE BIOCHAR | ENVIRONMENTAL SCIENCES | ATMOSPHERIC AMMONIA | WASTE-WATER | NITROGEN | EMISSION | AMMONIA VOLATILIZATION | UREA | Index Medicus
Journal Article
Science of the Total Environment, ISSN 0048-9697, 01/2017, Volume 575, pp. 820 - 825
The impacts of biochar addition on nitrogen (N) leaching, (ammonia) NH volatilization from coastal saline soils are not well understood. In this soil column...
N retention | Sustainable use of saline soil | N leaching | Biochar | NH3 volatilization | volatilization | TRANSFORMATION | CHINA | AMENDMENT | FERTILIZER APPLICATION | NITROGEN-RETENTION | AMMONIUM | GREENWASTE BIOCHAR | ENVIRONMENTAL SCIENCES | NITRIFICATION | ALKALINE SOILS | IMPACTS
N retention | Sustainable use of saline soil | N leaching | Biochar | NH3 volatilization | volatilization | TRANSFORMATION | CHINA | AMENDMENT | FERTILIZER APPLICATION | NITROGEN-RETENTION | AMMONIUM | GREENWASTE BIOCHAR | ENVIRONMENTAL SCIENCES | NITRIFICATION | ALKALINE SOILS | IMPACTS
Journal Article
Water, Air, & Soil Pollution, ISSN 0049-6979, 4/2016, Volume 227, Issue 4, pp. 1 - 17
Ammonia (NH3) volatilization is one of the main pathways of N loss from farmland soil. Saline water irrigation can have direct or indirect effects on soil NH3...
Saline water | N application rate | Climate Change/Climate Change Impacts | Water Quality/Water Pollution | N leaching | Cotton field | Environment, general | Hydrogeology | Environment | Atmospheric Protection/Air Quality Control/Air Pollution | NH 3 volatilization | Apparent N recovery | Soil Science & Conservation | volatilization | Salinewater | ENZYME-ACTIVITIES | ARID REGIONS | MANAGEMENT | NITRATE | Napplicationrate | MAIZE FIELDS | WATER RESOURCES | NITROGEN USE EFFICIENCY | ENVIRONMENTAL SCIENCES | IMPACT | FERTILIZER | SOIL | METEOROLOGY & ATMOSPHERIC SCIENCES | NH3 volatilization | AMMONIA VOLATILIZATION
Saline water | N application rate | Climate Change/Climate Change Impacts | Water Quality/Water Pollution | N leaching | Cotton field | Environment, general | Hydrogeology | Environment | Atmospheric Protection/Air Quality Control/Air Pollution | NH 3 volatilization | Apparent N recovery | Soil Science & Conservation | volatilization | Salinewater | ENZYME-ACTIVITIES | ARID REGIONS | MANAGEMENT | NITRATE | Napplicationrate | MAIZE FIELDS | WATER RESOURCES | NITROGEN USE EFFICIENCY | ENVIRONMENTAL SCIENCES | IMPACT | FERTILIZER | SOIL | METEOROLOGY & ATMOSPHERIC SCIENCES | NH3 volatilization | AMMONIA VOLATILIZATION
Journal Article
Ciencia del Suelo, ISSN 0326-3169, 07/2018, Volume 36, Issue 1, pp. 88 - 98
Journal Article
Chemosphere, ISSN 0045-6535, 01/2016, Volume 142, pp. 120 - 127
Ammonia (NH ) volatilization is a major nitrogen (N) loss from the soil, especially under tropical conditions, NH volatilization results in low N use...
Urea | Ammonia volatilization | Biochar | Wheat | Nitrogen dynamics | CARBON | EMISSIONS | BIOAVAILABILITY | GREENWASTE BIOCHAR | ENVIRONMENTAL SCIENCES | FERTILIZER | URINE | MITIGATION | SOIL | BLACK | Charcoal - pharmacology | Nitrogen - metabolism | Animals | Adsorption | Poultry | Volatilization | Soil - chemistry | Biological Transport - drug effects | Ammonia - chemistry | Manure - analysis | Triticum - drug effects | Triticum - metabolism | Ammonia
Urea | Ammonia volatilization | Biochar | Wheat | Nitrogen dynamics | CARBON | EMISSIONS | BIOAVAILABILITY | GREENWASTE BIOCHAR | ENVIRONMENTAL SCIENCES | FERTILIZER | URINE | MITIGATION | SOIL | BLACK | Charcoal - pharmacology | Nitrogen - metabolism | Animals | Adsorption | Poultry | Volatilization | Soil - chemistry | Biological Transport - drug effects | Ammonia - chemistry | Manure - analysis | Triticum - drug effects | Triticum - metabolism | Ammonia
Journal Article
Journal of Applied Physics, ISSN 0021-8979, 10/2017, Volume 122, Issue 15
Journal Article
Agriculture, Ecosystems and Environment, ISSN 0167-8809, 04/2015, Volume 202, pp. 79 - 89
Substituting a N-fixing legume for winter wheat has recently been suggested as a feasible method for mitigating N pollution from heavily-fertilized rice/wheat...
Field-scale monitoring | N runoff and leaching | Chemical N input reduction | N2O emission | NH3 volatilization | Leguminous residue incorporation | O emission | volatilization | LOSSES | CARBON | EMISSIONS | BIOLOGICAL NITROGEN-FIXATION | GREEN MANURE | ENVIRONMENTAL SCIENCES | AGRICULTURAL SYSTEMS | AGRICULTURE, MULTIDISCIPLINARY | SOIL | ECOLOGY | AMMONIA VOLATILIZATION | CYCLE | Agricultural ecosystems | Legumes | Cropping systems | Pollution | Beans | Environmental aspects | Mimosaceae | Wheat | Winter | Nitrous oxides | Crops | Pollution abatement | Seasons | Rice | Milk
Field-scale monitoring | N runoff and leaching | Chemical N input reduction | N2O emission | NH3 volatilization | Leguminous residue incorporation | O emission | volatilization | LOSSES | CARBON | EMISSIONS | BIOLOGICAL NITROGEN-FIXATION | GREEN MANURE | ENVIRONMENTAL SCIENCES | AGRICULTURAL SYSTEMS | AGRICULTURE, MULTIDISCIPLINARY | SOIL | ECOLOGY | AMMONIA VOLATILIZATION | CYCLE | Agricultural ecosystems | Legumes | Cropping systems | Pollution | Beans | Environmental aspects | Mimosaceae | Wheat | Winter | Nitrous oxides | Crops | Pollution abatement | Seasons | Rice | Milk
Journal Article
Agricultural and Forest Meteorology, ISSN 0168-1923, 01/2017, Volume 232, pp. 682 - 688
Volatilization represents a significant loss pathway for many pesticides, herbicides and other agrochemicals. One common method for measuring the...
Metolachlor | Agrochemical | Flux-gradient | Pesticide | Volatilization | SYSTEM | LOSSES | MICROMETEOROLOGICAL TECHNIQUES | AGRONOMY | PESTICIDE VOLATILIZATION | METOLACHLOR VOLATILIZATION | ATMOSPHERE | NITROUS-OXIDE | SURFACE | SOIL | FORESTRY | WATER-QUALITY | METEOROLOGY & ATMOSPHERIC SCIENCES | Hydrology | Herbicides
Metolachlor | Agrochemical | Flux-gradient | Pesticide | Volatilization | SYSTEM | LOSSES | MICROMETEOROLOGICAL TECHNIQUES | AGRONOMY | PESTICIDE VOLATILIZATION | METOLACHLOR VOLATILIZATION | ATMOSPHERE | NITROUS-OXIDE | SURFACE | SOIL | FORESTRY | WATER-QUALITY | METEOROLOGY & ATMOSPHERIC SCIENCES | Hydrology | Herbicides
Journal Article