Biofilm Forming Bacteria and Their Role in Enhancing Corrosion of Iron: Microbiological Studies on Bioorrosion of Iron Metal - Mostafa Abo Elsoud - Libros - LAP LAMBERT Academic Publishing - 9783659482380 - 14 de febrero de 2014
En caso de que portada y título no coincidan, el título será el correcto

Biofilm Forming Bacteria and Their Role in Enhancing Corrosion of Iron: Microbiological Studies on Bioorrosion of Iron Metal

Precio
Mex$ 1.112
sin IVA

Pedido desde almacén remoto

Entrega prevista 22 de sep. - 2 de oct.
Recibe notificaciones sobre nuevos lanzamientos de Mostafa Abo Elsoud
Añadir a tu lista de deseos de iMusic

Aún no valorado

Understanding of microbial corrosion mechanism is one of primary tools to get better result in corrosion inhibition. Bacterial consortia cause more adverse conditions than that caused by axenic cultures leading to severe localized attack under biofilm and subsequently accelerate metal failure. The quorum sensing signals (AHL) was detected in the axenic, binary and consortia of MIC bacterial cultures. The present results have demonstrated, for the first time that quorum sensing signals are involved in coordination language of MIC during biofilm and corrosion process. Therefore, detection of these signals can be used as a biochemical indicator(s) for the presence of bacterial community (biofilm development). Screening for quorum sensing signals is cheap, rapid and easy method for early detection of MIC. Agricultural waste extracts represent a valuable source of eco-friendly green (biocide) antimicrobials. The methanolic and aqueous extracts of Onion and Garlic leaves and Date palm seeds had the ability to inhibit the growth of P. marginalis-SuOA (the most potent biofilm forming isolate) at lower concentrations compared with traditional chemical biocides.

Medios de comunicación Libros     Paperback Book   (Libro con tapa blanda y lomo encolado)
Publicado 14 de febrero de 2014
ISBN13 9783659482380
Editores LAP LAMBERT Academic Publishing
Páginas 248
Dimensiones 150 × 14 × 226 mm   ·   387 g
Lengua Alemán