Title of article :
Study on CO global recycling system
Author/Authors :
Masami Takeuchi، نويسنده , , Yuki Sakamoto، نويسنده , , Senji Niwa، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2001
Abstract :
In order to assist in finding ways to mitigate CO2 emission and to slow the depletion of fossil fuels we have
established and evaluated a representative system, which consists of three technologies developed in our laboratory.
These technologies were in CO2 recovery, hydrogen production and methanol synthesis and in addition we
established the necessary supporting systems. Analysis of outline designs of the large scale renewable energy power
generation system and this system and energy input for building plant, energy input for running plant has been
conducted based on a case using this system for a 1000-MW coal fired power plant, followed by an evaluation of the
material balance and energy balance. The results are as follows. Energy efficiency is 34%, the CO2 reduction rate is
41%, the balance ratio of the energy and CO2 of the system is 2.2 and 1.8, respectively, on the assumption that the
primary renewable energy is solar thermal power generation, the stationary CO2 emission source is a coal-fired
power plant and the generation efficiency of the methanol power plant is 60%. By adopting the system, 3.7 million
tons of CO2 can be recovered, approximately 2.7 million tons of methanol can be produced, and 15.4 billion kWh of
electricity can be generated per year. Compared to generating all electrical power using only coal, approximately 2.6
million tons of coal per year can be saved and approximately 2.15 million tons of CO2 emission can be reduced.
Therefore, it is clearly revealed that this system would be effective to reduce CO2 emissions and to utilize renewable
energy.
Keywords :
CO2 , H2 , solar thermal power , Solar photovoltaic power , global warming , Methanol
Journal title :
Science of the Total Environment
Journal title :
Science of the Total Environment