Kaur et al., 2023 - Google Patents
Waste hemp-stalk derived nutrient encapsulated aerogels for slow release of fertilizers: A step towards sustainable agricultureKaur et al., 2023
- Document ID
- 14670642493927258061
- Author
- Kaur J
- Sharma K
- Kaushik A
- Publication year
- Publication venue
- Journal of Environmental Chemical Engineering
External Links
Snippet
With a renewed focus towards circular economy, a novel eco-friendly aerogel was prepared from waste hemp stalk derived cellulose for sustained release of fertilizers. The approach encompasses replenishment the bio-waste back to the soil with addition of fortifying …
Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61L—METHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION, OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS, OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS, OR SURGICAL ARTICLES
- A61L15/00—Chemical aspects of, or use of materials for, bandages, dressings or absorbent pads
- A61L15/16—Bandages, dressings or absorbent pads for physiological fluids such as urine or blood, e.g. sanitary towels, tampons
- A61L15/22—Bandages, dressings or absorbent pads for physiological fluids such as urine or blood, e.g. sanitary towels, tampons containing macromolecular materials
- A61L15/28—Polysaccharides or their derivatives
-
- C—CHEMISTRY; METALLURGY
- C08—ORGANIC MACROMOLECULAR COMPOUNDS; THEIR PREPARATION OR CHEMICAL WORKING-UP; COMPOSITIONS BASED THEREON
- C08B—POLYSACCHARIDES; DERIVATIVES THEREOF
- C08B37/00—Preparation of polysaccharides not provided for in groups C08B1/00 - C08B35/00; Derivatives thereof
- C08B37/0006—Homoglycans, i.e. polysaccharides having a main chain consisting of one single sugar, e.g. colominic acid
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Kaur et al. | Waste hemp-stalk derived nutrient encapsulated aerogels for slow release of fertilizers: A step towards sustainable agriculture | |
Liu et al. | Environmentally friendly hydrogel: A review of classification, preparation and application in agriculture | |
Li et al. | Agricultural waste-derived superabsorbent hydrogels: Preparation, performance, and socioeconomic impacts | |
Kong et al. | A biodegradable biomass-based polymeric composite for slow release and water retention | |
Rop et al. | Biodegradable water hyacinth cellulose-graft-poly (ammonium acrylate-co-acrylic acid) polymer hydrogel for potential agricultural application | |
Mohammadbagheri et al. | Synthesis of a novel superabsorbent with slow-release urea fertilizer using modified cellulose as a grafting agent and flexible copolymer | |
Zhang et al. | An eco-friendly slow-release urea fertilizer based on waste mulberry branches for potential agriculture and horticulture applications | |
Channab et al. | Starch-based controlled release fertilizers: a review | |
El Bouchtaoui et al. | Methylcellulose/lignin biocomposite as an eco-friendly and multifunctional coating material for slow-release fertilizers: Effect on nutrients management and wheat growth | |
Channab et al. | Nanocellulose: Structure, modification, biodegradation and applications in agriculture as slow/controlled release fertilizer, superabsorbent, and crop protection: A review | |
Kassem et al. | Cellulose nanofibers/engineered biochar hybrid materials as biodegradable coating for slow-release phosphate fertilizers | |
Basta et al. | Comparison of copper-crosslinked carboxymethyl cellulose versus biopolymer-based hydrogels for controlled release of fertilizer | |
Pal et al. | Cellulose-based hydrogels: present and future | |
Jampi et al. | Preparation of cellulose hydrogel from sago pith waste as a medium for seed germination | |
Priya et al. | A urea-loaded hydrogel comprising of cellulose nanofibers and carboxymethyl cellulose: An effective slow-release fertilizer | |
Das et al. | Preparation of cellulose hydrogels and hydrogel nanocomposites reinforced by crystalline cellulose nanofibers (CNFs) as a water reservoir for agriculture use | |
Wu et al. | Cellulose dissolution, modification, and the derived hydrogel: a review | |
Ramli et al. | Synthesis, characterization, and morphology study of coco peat-grafted-poly (acrylic acid)/NPK slow release fertilizer hydrogel | |
Sangeetha et al. | Super water-absorbing hydrogel based on chitosan, itaconic acid and urea: preparation, characterization and reversible water absorption | |
Malik et al. | Carboxy-methyl tamarind kernel gum based bio-hydrogel for sustainable agronomy | |
Tuyet Phan et al. | Investigation on Synthesis of Hydrogel Starting from Vietnamese Pineapple Leaf Waste‐Derived Carboxymethylcellulose | |
dos Santos Pereira et al. | Chitosan-sugarcane bagasse microspheres as fertilizer delivery: on/off water availability system | |
Zhang et al. | Sodium alginate/sodium lignosulfonate hydrogel based on inert Ca2+ activation for water conservation and growth promotion | |
Ning et al. | Fabrication of multi-functional biodegradable liquid mulch utilizing xyloglucan derived from tamarind waste for agricultural application | |
Abbasi et al. | Characterization of cellulose nanocrystal extracted from household waste and its application for seed germination |