Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Greenhouse Gas Emissions from Solid and Liquid Organic Fertilizers Applied to Lettuce

View through CrossRef
Improper application of nitrogen (N) fertilizer and environmental factors can cause the loss of nitrous oxide (N2O) to the environment. Different types of fertilizers with different C/N ratios may have different effects on the environment. The focus of this study was to evaluate the effects of environmental factors and four organic fertilizers (feather meal, blood meal, fish emulsion, and cyano‐fertilizer) applied at different rates (0, 28, 56, and 112 kg N ha−1) on N2O emissions and to track CO2 emissions from a lettuce field (Lactuca sativa L.). The study was conducted in 2013 and 2014 and compared preplant‐applied solid fertilizers (feather meal and blood meal) and multiple applications of liquid fertilizers (fish emulsion and cyano‐fertilizer). Three days a week, N2O and CO2 emissions were measured twice per day in 2013 and once per day in 2014 using a closed‐static chamber, and gas samples were analyzed by gas chromatography. Preplant‐applied solid fertilizers significantly increased cumulative N2O emissions as compared with control, but multiple applications of liquid fertilizers did not. Emission factors for N2O ranged from 0 to 0.1% for multiple applications of liquid fertilizers and 0.6 to 11% for preplant‐applied solid fertilizers, which could be overestimated due to chamber placement over fertilizer bands. In 2014, solid fertilizers with higher C/N ratios (3.3–3.5) resulted in higher CO2 emissions than liquid fertilizers (C/N ratio, 0.9–1.5). Therefore, organic farmers should consider the use of multiple applications of liquid fertilizers as a means to reduce soil greenhouse gas emissions while maintaining high yields.Core Ideas Multiple applications of liquid fertilizer can reduce GHG emissions. Type of fertilizer and fertilizer application method can influence N2O emissions. Soil temperature and soil water content influence N2O emissions.
Title: Greenhouse Gas Emissions from Solid and Liquid Organic Fertilizers Applied to Lettuce
Description:
Improper application of nitrogen (N) fertilizer and environmental factors can cause the loss of nitrous oxide (N2O) to the environment.
Different types of fertilizers with different C/N ratios may have different effects on the environment.
The focus of this study was to evaluate the effects of environmental factors and four organic fertilizers (feather meal, blood meal, fish emulsion, and cyano‐fertilizer) applied at different rates (0, 28, 56, and 112 kg N ha−1) on N2O emissions and to track CO2 emissions from a lettuce field (Lactuca sativa L.
).
The study was conducted in 2013 and 2014 and compared preplant‐applied solid fertilizers (feather meal and blood meal) and multiple applications of liquid fertilizers (fish emulsion and cyano‐fertilizer).
Three days a week, N2O and CO2 emissions were measured twice per day in 2013 and once per day in 2014 using a closed‐static chamber, and gas samples were analyzed by gas chromatography.
Preplant‐applied solid fertilizers significantly increased cumulative N2O emissions as compared with control, but multiple applications of liquid fertilizers did not.
Emission factors for N2O ranged from 0 to 0.
1% for multiple applications of liquid fertilizers and 0.
6 to 11% for preplant‐applied solid fertilizers, which could be overestimated due to chamber placement over fertilizer bands.
In 2014, solid fertilizers with higher C/N ratios (3.
3–3.
5) resulted in higher CO2 emissions than liquid fertilizers (C/N ratio, 0.
9–1.
5).
Therefore, organic farmers should consider the use of multiple applications of liquid fertilizers as a means to reduce soil greenhouse gas emissions while maintaining high yields.
Core Ideas Multiple applications of liquid fertilizer can reduce GHG emissions.
Type of fertilizer and fertilizer application method can influence N2O emissions.
Soil temperature and soil water content influence N2O emissions.

Related Results

Crisphead lettuce under influence of soil conditioner, organic fertilizers and liming
Crisphead lettuce under influence of soil conditioner, organic fertilizers and liming
Lettuce is considered the main leafy vegetable crop in Brazil. High amounts of mineral and organic fertilizers are applied to soils during lettuce growth. There is a need of data c...
Growth Performance of Lettuce Using Fermented Products as Organic Fertilizers
Growth Performance of Lettuce Using Fermented Products as Organic Fertilizers
This study evaluates the growth performance of lettuce (Lactuca sativa L.) utilizing various fermented products as organic fertilizers. Growth performance is determined through the...
Effect of Bacillus pumilus Strains on Heavy Metal Accumulation in Lettuce Grown on Contaminated Soil
Effect of Bacillus pumilus Strains on Heavy Metal Accumulation in Lettuce Grown on Contaminated Soil
Increasing number of heavy metal on land needs to be addressed through sustainable ways and various species of Bacillus can be used to mitigate heavy metals. The research work enti...
Estimating greenhouse gas emissions from travel – a GIS-based study
Estimating greenhouse gas emissions from travel – a GIS-based study
Abstract. Conferences, meetings and congresses are an important part of today's economic and scientific world. But the environmental impact, especially from greenhouse gas emission...
Greenhouse Gas Emissions Along the Norwegian Gas Value Chain
Greenhouse Gas Emissions Along the Norwegian Gas Value Chain
Abstract Norway is the third largest gas exporter in the world and the second largest exporter of piped-gas to Europe. Natural gas, mostly consisting of methane, has...
Phytochemicals and Antioxidant Activities of Red Oak, Red Coral and Butterhead
Phytochemicals and Antioxidant Activities of Red Oak, Red Coral and Butterhead
  Lactuca sativa L. is an economically important vegetable that contains numerous phytochemicals. This study aimed to determine the phytochemicals in three lettuce cultivars (red o...

Back to Top