Related Experiment Video
Updated: Feb 14, 2026

Combining Histochemical Staining and Image Analysis to Quantify Starch in the Ovary Primordia of Sweet Cherry during Winter Dormancy
Published on: March 20, 2019
Efficiency analysis of bioenergy potential on winter fallow fields: A case study of rape
Luo Liu1, Xinliang Xu2, Yueming Hu1
1Guangdong Province Key Laboratory for Land use and consolidation, South China Agricultural University, Guangzhou 510642, China.
Abstract:
Rape is a non-grain feedstock with several characteristics that make it suitable for biofuel production, such as high oil yields and low environmental impact. Planting rape on winter fallow fields could allow for seasonal rotation between the bioenergy production and agricultural production. In the present study, the Global Agro-Ecological Zones model was used to estimate the production potential of rapeseed on winter fallow fields in the Yangtze River region from 2010 to 2015. Life cycle assessment was then conducted to calculate energy efficiency and greenhouse gas emissions from the entire energy-producing process and to estimate the number of bioenergy enterprises and their spatial distribution. The results indicated that the total area available of winter fallow fields in the Yangtze River region was 24.93millionha, accounting for 34.2% of the total cultivated land area. The total yield of winter rapeseed was up to 46.41milliontons (an average yield of 1.86tons/ha). Thus, the study area could potentially produce net energy of up to 3564millionMJ with energy return on energy investment (EROEI) as high as 1.52-1.84. The total reduction of greenhouse gas emissions may be up to 23.28milliontons, and the total number of bioenergy enterprises could be 589, from which the total biodiesel output could be 167.5milliontons. Hubei, Henan, Anhui and Jiangxi should be prioritized for generating biofuels from rapeseed planted on winter fallow fields.
Related Concept Videos
Finding Electric Potential From Electric Field
Determining Electric Field From Electric Potential
In general, regardless of whether the electric field is uniform, it points in the direction of decreasing potential because the force on a positive...
Electric Potential Energy in a Uniform Electric Field
Potential Energy
Chemical bonds that form attractive forces between atoms also contain potential energy, called chemical energy. When a chemical reaction...
Standard Electrode Potentials
Cell Potential and Free Energy
Thermodynamics is the branch of physics dealing with the relationship between heat and other forms of energy. In an electrochemical cell, chemical energy is converted into electrical energy.
Thus, a link can be predicted between cell potential, free energy change, and the equilibrium constant for the reaction. Cell potential can also be measured as the oxidant or the reducing strength, and similar acid-base strength measures are reflected in equilibrium...

