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Biogas reactors reactor

Singh, S. P. and Prerna, P. (2009). Review of recent advances in anaerobic packed bed biogas reactors. Renew. Sustain. Rev. 13,1569-1575. [Pg.86]

Biogas reactors, 3 701 Biogel resins, for affinity chromatography, 3 846... [Pg.101]

Figme 13 shows a biogas plant commoidy used in countries like Demnark, Germat r, and Austria. The animal manure from the stable is mixed, stored for a short time, heated, and pumped into the biogas reactor. This mixing facility is driven by a slow-moving electric motor. [Pg.217]

Compostable plastics provide little relief as to the increasingly rare landfill space available, since their substance is hardly reduced in the process Anaerobic degradation processes in fermenters degrade about 35-60 % by weight of the mass placed in the system for fermentation. If the landfill corpus is considered to be a (nonoptimized) biogas reactor, degradation rates of the biodegradable materials (BM) on the order of 30 % would appear to be realistic. [Pg.400]

Modelling and simulation of complex biochemical processes, tEiking the Biogas Tower Reactor as an example... [Pg.170]

The paper presents an analytical model of the Biogas Tower Reactor, a new type of reactor for anaerobic waste water treatment. This model is developed on the basis of biochemical assumptions and knowledge of the reactors hydrodynamics. The dynamical model helps to understand the process in detail and to evaluate the performance of the process. A simplified linearised model will be derived in order to facilitate the design of the controllers. [Pg.170]

Fig. 1.1. Modular structured Biogas Tower Reactor in pilot scale with its internal installations (height 20m, diameter Im, volume 15m )... Fig. 1.1. Modular structured Biogas Tower Reactor in pilot scale with its internal installations (height 20m, diameter Im, volume 15m )...
Fig. 3.1. Step response of the piT-values in module 1 and 3 on a influent step in module 1 of the Biogas Tower Reactor shown in Fig. 2.1... Fig. 3.1. Step response of the piT-values in module 1 and 3 on a influent step in module 1 of the Biogas Tower Reactor shown in Fig. 2.1...
The example of the Biogas Tower Reactor shows how to develop a model of complex biochtechnological processes by decomposition into coupled subsystems. Most of these processes are very complex, so that one has to find out the relevant characteristics and bottle necks of the reactions that determine the dynamic of the process. [Pg.181]

Design and optimization principles of biogas reactors in large scale applications... [Pg.99]

In this chapter, the development of biogas reactors will be reviewed from a chemical engineering perspective, with acknowledgment of the impact computational modeling has had in biogas reactor design and optimization. [Pg.100]

CHAPTER 4 Design and optimization principies of biogas reactors... [Pg.102]

A thermophilic biogas plant in Boden, Sweden, with two preheating tanks (70 °C) and a 1300 biogas reactor using thermophilic digestion (55 °C) [49]. [Pg.111]

Just as there are various ways to enhance the heat transfer of other traditional heat exchangers, there are various ways to improve the heat transfer of heat exchangers used in an outside heating loop of a biogas reactor (1) increasing the... [Pg.111]


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