Australian cotton (Gossypium hirsutum L.) is predominantly grown on heavy clay soils (Vertosols). Cotton grown on Vertosols often experiences episodes of low oxygen concentration in the root-zone, particularly after irrigation events. In subsurface drip-irrigation (SDI), cotton receives frequent irrigation and sustained wetting fronts are developed in the rhizosphere. This can lead to poor soil diffusion of oxygen, causing temporal and spatial hypoxia. As cotton is sensitive to waterlogging, exposure to this condition can result in a significant yield penalty. Use of aerated water for drip irrigation (‘oxygation’) can ameliorate hypoxia in the wetting front and, therefore, overcome the negative effects of poor soil aeration. The efficacy of...
Impacts of salinity become severe when the soil is deficient in oxygen. Oxygation (using aerated wat...
Climatic variability, typified by erratic heavy-rainfall events, causes waterlogging in intensively ...
Cotton in heavy clay soil with subsurface drip irrigation (SDI) @ 50, 75, 90, and 120 % of daily ET ...
Australian cotton (Gossypium hirsutum L.) is predominantly grown on heavy clay soils (Vertosols). Co...
Soil aeration is one of the critical determinants of plant production. This research investigated th...
Furrow is the dominant irrigation method for agriculture throughout the world. However, due to water...
Oxygation refers to irrigation of crops with aerated water, through air injection using the venturi ...
The practice and management of subsurface drip irrigation (SDI) on heavy clay soils is poorly unders...
Irrigation of heavy soils can result in temporary anoxic conditions in the rhizosphere. The aeration...
Subsurface drip irrigation (SDI) offers well‐documented potential for improving water use efficiency...
Subsurface drip irrigation (SDI) compares favourably with other irrigation protocols interms of wate...
Most trickle irrigation in the world is surface drip yet subsurface drip irrigation (SDI) can substa...
Inadequate oxygen concentration in the root zone is a constraint to plant performance particularly i...
Increasing competition on supply of fresh water for irrigation by agricultural, domestic, sports and...
Salinity in agricultural soils has large impact on plant performance. Waterlogging and anoxia due to...
Impacts of salinity become severe when the soil is deficient in oxygen. Oxygation (using aerated wat...
Climatic variability, typified by erratic heavy-rainfall events, causes waterlogging in intensively ...
Cotton in heavy clay soil with subsurface drip irrigation (SDI) @ 50, 75, 90, and 120 % of daily ET ...
Australian cotton (Gossypium hirsutum L.) is predominantly grown on heavy clay soils (Vertosols). Co...
Soil aeration is one of the critical determinants of plant production. This research investigated th...
Furrow is the dominant irrigation method for agriculture throughout the world. However, due to water...
Oxygation refers to irrigation of crops with aerated water, through air injection using the venturi ...
The practice and management of subsurface drip irrigation (SDI) on heavy clay soils is poorly unders...
Irrigation of heavy soils can result in temporary anoxic conditions in the rhizosphere. The aeration...
Subsurface drip irrigation (SDI) offers well‐documented potential for improving water use efficiency...
Subsurface drip irrigation (SDI) compares favourably with other irrigation protocols interms of wate...
Most trickle irrigation in the world is surface drip yet subsurface drip irrigation (SDI) can substa...
Inadequate oxygen concentration in the root zone is a constraint to plant performance particularly i...
Increasing competition on supply of fresh water for irrigation by agricultural, domestic, sports and...
Salinity in agricultural soils has large impact on plant performance. Waterlogging and anoxia due to...
Impacts of salinity become severe when the soil is deficient in oxygen. Oxygation (using aerated wat...
Climatic variability, typified by erratic heavy-rainfall events, causes waterlogging in intensively ...
Cotton in heavy clay soil with subsurface drip irrigation (SDI) @ 50, 75, 90, and 120 % of daily ET ...