The present work deals with the development of a biodegradable superabsorbent hydrogel, based on cellulose derivatives, for the optimization of water resources in agriculture, horticulture and, more in general, for instilling a wiser and savvier approach to water consumption. The sorption capability of the proposed hydrogel was firstly assessed, with specific regard to two variables that might play a key role in the soil environment, that is, ionic strength and pH. Moreover, a preliminary evaluation of the hydrogel potential as water reservoir in agriculture was performed by using the hydrogel in experimental greenhouses, for the cultivation of tomatoes. The soil-water retention curve, in the presence of different hydrogel amounts, was also...
Superabsorbent polymers (SAPs) have attracted tremendous attention, with researchers noting that the...
Agricultural production is influenced by the water content in the soil and the availability of nutri...
Amplification of the greenhouase effect has increased the conditions of abiotic stress on plant grow...
Superabsorbent hydrogels are a particular class of gels, obtained by chemical stabilization of hydro...
AbstractSuperabsorbent hydrogels are a particular class of gels, obtained by chemical stabilization ...
Superabsorbent hydrogels are a particular class of gels, obtained by chemical stabilization of hydro...
Water management is rapidly becoming one of the most pressing issues facing all countries in semi-ar...
Water management is rapidly becoming one of the most pressing issues facing all countries in semi-ar...
In this work, an innovative cellulose-based superabsorbent polymer (SAP) was experimentally assessed...
This study details the design and characterization of a new, biodegradable, and renewable whey/cellu...
In this work, an innovative cellulose-based superabsorbent polymer (SAP) was experimentally assessed...
The work presents a fully degradable superabsorbent composite material to be used in agricultural an...
This study describes the development of a renewable and biodegradable biopolymer-based hydrogel for ...
Superabsorbent hydrogels are macromolecular networks able to absorb and retain large amounts of wate...
AbstractThe desertification and lack of water are serious problems in many parts of the world becaus...
Superabsorbent polymers (SAPs) have attracted tremendous attention, with researchers noting that the...
Agricultural production is influenced by the water content in the soil and the availability of nutri...
Amplification of the greenhouase effect has increased the conditions of abiotic stress on plant grow...
Superabsorbent hydrogels are a particular class of gels, obtained by chemical stabilization of hydro...
AbstractSuperabsorbent hydrogels are a particular class of gels, obtained by chemical stabilization ...
Superabsorbent hydrogels are a particular class of gels, obtained by chemical stabilization of hydro...
Water management is rapidly becoming one of the most pressing issues facing all countries in semi-ar...
Water management is rapidly becoming one of the most pressing issues facing all countries in semi-ar...
In this work, an innovative cellulose-based superabsorbent polymer (SAP) was experimentally assessed...
This study details the design and characterization of a new, biodegradable, and renewable whey/cellu...
In this work, an innovative cellulose-based superabsorbent polymer (SAP) was experimentally assessed...
The work presents a fully degradable superabsorbent composite material to be used in agricultural an...
This study describes the development of a renewable and biodegradable biopolymer-based hydrogel for ...
Superabsorbent hydrogels are macromolecular networks able to absorb and retain large amounts of wate...
AbstractThe desertification and lack of water are serious problems in many parts of the world becaus...
Superabsorbent polymers (SAPs) have attracted tremendous attention, with researchers noting that the...
Agricultural production is influenced by the water content in the soil and the availability of nutri...
Amplification of the greenhouase effect has increased the conditions of abiotic stress on plant grow...