
Fungal Nanotechnology
Applications in Agriculture, Industry, and Medicine
Sorozatcím: Fungal Biology;
-
20% KEDVEZMÉNY?
- A kedvezmény csak az 'Értesítés a kedvenc témákról' hírlevelünk címzettjeinek rendeléseire érvényes.
- Kiadói listaár EUR 160.49
-
Az ár azért becsült, mert a rendelés pillanatában nem lehet pontosan tudni, hogy a beérkezéskor milyen lesz a forint árfolyama az adott termék eredeti devizájához képest. Ha a forint romlana, kissé többet, ha javulna, kissé kevesebbet kell majd fizetnie.
- Kedvezmény(ek) 20% (cc. 13 616 Ft off)
- Discounted price 54 463 Ft (51 870 Ft + 5% áfa)
68 079 Ft
Beszerezhetőség
Becsült beszerzési idő: A Prosperónál jelenleg nincsen raktáron, de a kiadónál igen. Beszerzés kb. 3-5 hét..
A Prosperónál jelenleg nincsen raktáron.
Why don't you give exact delivery time?
A beszerzés időigényét az eddigi tapasztalatokra alapozva adjuk meg. Azért becsült, mert a terméket külföldről hozzuk be, így a kiadó kiszolgálásának pillanatnyi gyorsaságától is függ. A megadottnál gyorsabb és lassabb szállítás is elképzelhető, de mindent megteszünk, hogy Ön a lehető leghamarabb jusson hozzá a termékhez.
A termék adatai:
- Kiadás sorszáma Softcover reprint of the original 1st ed. 2017
- Kiadó Springer
- Megjelenés dátuma 2018. szeptember 9.
- Kötetek száma 1 pieces, Previously published in hardcover
- ISBN 9783319886015
- Kötéstípus Puhakötés
- Terjedelem295 oldal
- Méret 235x155 mm
- Súly 474 g
- Nyelv angol
- Illusztrációk 6 Illustrations, black & white; 41 Illustrations, color 0
Kategóriák
Rövid leírás:
Fungal nanotechnology has great prospects for developing new products with industrial, agricultural, medicinal, and consumer applications in a wide range of sectors. The fields of chemical engineering, agri-food, biochemistry, pharmaceuticals, diagnostics, and medical device development all employ fungal products, with fungal nanomaterials currently used in applications ranging from drug development to the food industry and agricultural biotechnology. Fungal agents are an environmentally friendly, clean, non?toxic agent for the synthesis of metal nanoparticles and employ both intracellular and extracellular methods. The simplicity of scaling up and downstream processing and the presence of fungal mycelia which afford an increased surface area provide key advantages. In addition, the large spectrum of synthesized nanoparticle morphologies and the substantially faster biosynthesis rate in cell-free filtrate (due to the higher amount of proteins secreted in fungi) make this a particularlyenticing route. Understanding the diversity of fungi in assorted ecosystems, as well as their interactions with other microorganisms, animals, and plants, underpins real and innovative technological developments and the applications of metal nanoparticles in many disciplines including agriculture, catalysis, and biomedical biosensors. Importantly, biogenic fungal nanoparticles show significant synergistic characteristics when combined with antibiotics and fungicides to offer substantially greater resistance to microbial growth and applications in nanomedicine ranging from topical ointments and bandages for wound healing to coated stents.
TöbbHosszú leírás:
Fungal nanotechnology has great prospects for developing new products with industrial, agricultural, medicinal, and consumer applications in a wide range of sectors. The fields of chemical engineering, agri-food, biochemistry, pharmaceuticals, diagnostics, and medical device development all employ fungal products, with fungal nanomaterials currently used in applications ranging from drug development to the food industry and agricultural biotechnology. Fungal agents are an environmentally friendly, clean, non?toxic agent for the synthesis of metal nanoparticles and employ both intracellular and extracellular methods. The simplicity of scaling up and downstream processing and the presence of fungal mycelia which afford an increased surface area provide key advantages. In addition, the large spectrum of synthesized nanoparticle morphologies and the substantially faster biosynthesis rate in cell-free filtrate (due to the higher amount of proteins secreted in fungi) make this a particularlyenticing route. Understanding the diversity of fungi in assorted ecosystems, as well as their interactions with other microorganisms, animals, and plants, underpins real and innovative technological developments and the applications of metal nanoparticles in many disciplines including agriculture, catalysis, and biomedical biosensors. Importantly, biogenic fungal nanoparticles show significant synergistic characteristics when combined with antibiotics and fungicides to offer substantially greater resistance to microbial growth and applications in nanomedicine ranging from topical ointments and bandages for wound healing to coated stents.
TöbbTartalomjegyzék:
Fungal Nanotechnology: A Pandora to Agricultural Science and Engineering.- Agriculture Applications of Entomopathogenic Fungi using Nanotechnology.- Fungi as Ecosynthesizers for Nanoparticles and Their Application in Agriculture.- Myconanotechnology in Agriculture.- Fungus-mediated Bioleaching of Metallic Nanoparticles from Agro Industrial By-products.- Synthesis and Applications of Nano-Fungicides: A Next Generation Fungicide.- Enzymes and Nanoparticles Produced by Microorganisms and Their Applications in Biotechnology.- Biological Nanoparticles: Optical and Photothermal Properties.- Biogenic Synthesis of Silver Nanoparticles and Their Applications.- Fungal Bionanotechnology, when knowledge Merge into a New Discipline to Combat Antimicrobial Resistance.- Fungal Nanotechnology and Biomedicine.- Myconanotechnology to Treat Infectious Diseases: A Perspective.- Nanobiotechnology Applications in Special Reference to Fungi.
Több
Fungal Nanotechnology: Applications in Agriculture, Industry, and Medicine
Iratkozzon fel most és részesüljön kedvezőbb árainkból!
Feliratkozom
68 079 Ft