Published March 2007 | Version v1
Journal article

Study on methane hydration process in a semi-continuous stirred tank reactor

  • 1. Institute of Adsorption and Inorganic membrane, State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116012, Liaoning (China) and Center for Natural Gas Hydrate Research, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou 510640, Guangdong (China)
  • 2. Institute of Adsorption and Inorganic membrane, State Key Laboratory of Fine Chemicals, Dalian University of Technology, Dalian 116012, Liaoning (China)
  • 3. Center for Natural Gas Hydrate Research, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences, Guangzhou 510640, Guangdong (China)
  • 4. School of Electrical Engineering, Southwest Jiao Tong University, Chengdu 610031, Sichuan (China)

Description

The methane hydration process is investigated in a semi-continuous stirred tank reactor. Liquid temperatures and reaction rates without stirrer are compared with those occurring with stirrer, while at the same time better stirring conditions of the methane hydration process are given by the experiments. Some basic data of fluid mechanics, for example, stirring Reynolds number, Froude number and stirrer power, are calculated during the methane hydration process, which can be applied to evaluate stirrer capacity and provide some basic data for a scaled up reactor. Based on experiment and calculations in this work, some conclusions are drawn. First, the stirrer has great influence on the methane hydration process. Batch stirring is helpful to improve the mass transfer and heat transfer performances of the methane hydration process. Second, induction time can be shortened effectively by use of the stirrer. Third, in this paper, the appropriate stirring velocity and stirring time were 320 rpm and 30 min, respectively, at 5.0 MPa, for which the storage capacity and reaction time were 159.1 V/V and 370 min, respectively. Under the condition of the on-flow state, the initial stirring Reynolds number of the fluid and the stirring power were 12,150 and 0.54 W, respectively. Fourth, some suggestions, for example, the use of another type of stirrer or some baffles, are proposed to accelerate the methane hydration process. Comparing with literature data, higher storage capacity and hydration rate are achieved in this work. Moreover, some fluid mechanics parameters are calculated, which can provide some references to engineering application

Additional details

Identifiers

DOI
10.1016/j.enconman.2006.08.007;
PII
S0196-8904(06)00240-8;

Publishing Information

Journal Title
Energy Conversion and Management
Journal Volume
48
Journal Issue
3
Journal Page Range
p. 954-960
ISSN
0196-8904
CODEN
ECMADL

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
39012148
Subject category
S25: ENERGY STORAGE;
Descriptors DEI
BAFFLES; FLUID MECHANICS; HEAT TRANSFER; HYDRATION; MASS TRANSFER; METHANE; REACTION KINETICS; REYNOLDS NUMBER; STIRRING; STORAGE; TANKS
Descriptors DEC
ALKANES; CONTAINERS; CONTROL EQUIPMENT; DIMENSIONLESS NUMBERS; ENERGY TRANSFER; EQUIPMENT; FLOW REGULATORS; HYDROCARBONS; KINETICS; MECHANICS; ORGANIC COMPOUNDS; SOLVATION

Optional Information

Copyright
Copyright (c) 2006 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.