Biodegradability Prediction
Editat de Willie J Peijnenburg, Jiri Damborsky, W J Peijnenburg, Jira Damborska1/2en Limba Engleză Hardback – 30 noi 1996
Preț: 567.42 lei
Preț vechi: 667.55 lei
-15%
Puncte Express: 851
Carte tipărită la comandă
Livrare economică 24 iulie-07 august
Livrare prin curier în România Termenul estimat este afișat lângă disponibilitate.
Transport gratuit pentru acest produs Plată online sau ramburs, în funcție de opțiunile comenzii.
Retur gratuit în 14 zile Comandă securizată și suport în română.
Specificații
ISBN-13: 9780792343417
ISBN-10: 0792343417
Pagini: 156
Dimensiuni: 160 x 241 x 15 mm
Greutate: 0.41 kg
Editura: Springer
Locul publicării:Dordrecht, Netherlands
ISBN-10: 0792343417
Pagini: 156
Dimensiuni: 160 x 241 x 15 mm
Greutate: 0.41 kg
Editura: Springer
Locul publicării:Dordrecht, Netherlands
Public țintă
ResearchCuprins
Introduction, Main Conclusions and Recommendations of the Workshop `QSAR Biodegradation II'; W. Peijnenburg, J. Damborský. Part I: Biodegradability (foundations, testing). Biodegradability of Xenobiotic Organic Compounds Depends on their Chemical Structure and Efficiently Controlled, and Productive Biochemical Reaction Mechanisms; R.-M. Wittich. Biodegradability Testing of Xenobiotics; P. Pitter, V. Sýkora. Part II: Biodegradability Modelling (trends, methods). The META-CASETOX System for the Prediction of the Toxic Hazard of Chemicals Deposited in the Environment; G. Klopman. Application of Artificial Intelligence in Biodegradation Modelling; D. Gamberger, et al. Polychlorinated Dibenzo-p-Dioxins in Anaerobic Soils and Sediments. A Quest for Dechlorination Pattern-Microbial Community Relationships; P. Adriaens, et al. A Biodegradability Evaluation and Simulation System (BESS) Based on Knowledge of Biodegradation Pathways; B. Punch, et al. A Mechanistic Approach to Deriving Quantitative Structure Biodegradability Relationships. A Case Study: Dehalogenation of Haloaliphatic Compounds; J. Damborský, et al. Part III: Biodegradability Prediction (Applications). Quantitative Structure-Biodegradability Studies: An Investigation of the MITI Aromatic Compound Data-Base; J. Dearden, M. Cronin. Prediction of Biodegradability from Chemical Structure: Use of MITI Data, Structural Fragments and Multivariate Analysis for the Estimation of Ready and Not Ready Biodegradability; H. Loonen, et al. Development of Structure-Biodegradability Relationships (SBRs) for Estimating Half-Lifes of Organic Contaminants in Soil Systems; R. Govind, et al. Index.