By Irving J. Dunn, Elmar Heinzle, Jiri E. Prenosil, John Ingham
It is a monograph on organic response engineering, meant for these enthusiastic about biotechnology, chemical undefined, and technical chemistry. It offers details had to examine the behavour of complicated reactors utilizing mathematical equations and a dynamic simulation computing device language. half 1 treats the basics of modelling (mass stability equations concerning response kinetics and mass-transfer rates), making them effortlessly comprehensible to these new within the box. half 2 supplies forty five instance difficulties, entire with versions and courses. The textbook additionally incorporates a diskette with a advertisement simulation language, that are run on any DOS laptop.
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Extra info for Biological Reaction Engineering
This early attempt at using selection criteria to choose products employed energy displacement, lower environmental impact, and competitive economics as its drivers, with a goal of answering a central question: given a wide range of possibilities, how can an informed decision be made to determine which materials to investigate more thoroughly? A unique feature of this methodology was that it was one of the first to employ a systematic, quantitative screening methodology that considered yields of processes, improvements in the technologies, and various feedstocks that had not previously been developed for using renewables as chemical feedstocks.
2007) Gasoline composition and process for the preparation of alkylfurfuryl ether. US Patent Appl. US 2011035991 (A1). , and Gosselink, H. (2010) Valeric biofuels: a platform of cellulosic transportation fuels. Angew. Chem. Int. , 49, 4479. , and de Jong, E. (2009) Furanics: novel biofuel options from carbohydrates. , and Dautzenberg, F. (2007) Method for the synthesis of organic acid esters of 5-hydroxymethylfurfural and their use, WO2007104515 (A2). 25 United States Department of Agriculture (2005) Biomass as a Feedstock for a Bioenergy and Bioproducts Industry: The Technical Feasibility of a Billion-Ton Annual Supply, April 2005.
A unique feature of this methodology was that it was one of the first to employ a systematic, quantitative screening methodology that considered yields of processes, improvements in the technologies, and various feedstocks that had not previously been developed for using renewables as chemical feedstocks. By placing existing data into a consistent methodology, a systematic evaluation of chemicals and materials from renewable resources became possible. The evaluation largely took a product development approach and, as such, was based on comparing the raw material cost contribution for producing a chemical from biomass to that for producing the same chemical from hydrocarbons.
Biological Reaction Engineering by Irving J. Dunn, Elmar Heinzle, Jiri E. Prenosil, John Ingham