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实质不平等与资本体系的异化代谢
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作者 布雷特·克拉克 约翰·贝拉米·福斯特 +1 位作者 丹尼尔·奥尔巴赫 杨雷(译) 《南京林业大学学报(人文社会科学版)》 2024年第1期97-112,共16页
社会新陈代谢分析始终处于系统性阐明资本体系动态的前沿,包括资本主义如何产生异化、社会不平等和生态断裂。卡尔·马克思通过对资本主义的政治经济学批判和生态学批判,探究了剥夺和剥削如何在不同层面造成阶级分化、实质不平等和... 社会新陈代谢分析始终处于系统性阐明资本体系动态的前沿,包括资本主义如何产生异化、社会不平等和生态断裂。卡尔·马克思通过对资本主义的政治经济学批判和生态学批判,探究了剥夺和剥削如何在不同层面造成阶级分化、实质不平等和环境退化。资本主义从根本上重构了人与自然之间的物质交换,导致了异化的新陈代谢。它的积累过程通过剥夺公共土地、殖民主义、暴力、奴役和种族灭绝以及对劳动力的剥削,不可避免地破坏了地球和物质的新陈代谢,造成了历史上独特的社会不平等和环境破坏。社会新陈代谢分析挑战了资本的破坏性逻辑,表明建立在实质平等、满足人类需要和保护生活条件基础上的另一种社会新陈代谢秩序是必要的。 展开更多
关键词 新陈代谢 实质不平等 资本体系 马克思
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Boudouard reaction driven by thermal plasma for efficient CO2 conversion and energy storage 被引量:5
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作者 Zhikai Li Tao Yang +5 位作者 Shaojun Yuan Yongxiang Yin Edwin J.Devid Qiang Huang daniel auerbach Aart W.Kleyn 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第6期128-134,I0006,共8页
Conversion of CO2 into CO using plasma processing powered by renewable energy is a promising method to convert intermittent sustainable electricity into storable chemical energy.Despite extensive research efforts worl... Conversion of CO2 into CO using plasma processing powered by renewable energy is a promising method to convert intermittent sustainable electricity into storable chemical energy.Despite extensive research efforts worldwide,there is currently no process that achieves economically viable values for both CO2 conversion fraction and energy recovery efficiency simultaneously.Here we demonstrate that a process that utilizes the Boudouard reaction,CO^2++C→2 CO,driven by a thermal plasma allows both 95%CO2 conversion to CO and energy recovery efficiency of 70%,values far higher than seen so far.By comparing the conversion process with and without CO2 excitation by a plasma and by using optical emission spectroscopy we show that the improved performance is due to a novel mode of operation where CO2 is pyrolyzed into an active mixture of CO,O and O2 by an arc discharge which is then introduced into a fixed bed to interact with carbon material.In this way,the free oxygen in the mixture combusts with carbon to form CO,and residual plasma excited CO2 is reduced by carbon.In the overall process,the endothermic Boudouard reaction is partially replaced by an exothermic reaction,and the excess electric energy to produce CO2 plasma is reused in the carbon bed. 展开更多
关键词 Boudouard REACTION Thermal PLASMA CO2 CONVERSION Energy RECOVERY efficiency
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CO_2 conversion by thermal plasma with carbon as reducing agent: high CO yield and energy efficiency 被引量:2
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作者 Peng LIU Xuesong LIU +3 位作者 Jun SHEN Yongxiang YIN Tao YANG Qiang HUANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2019年第1期1-4,共4页
A key problem in CO_2 conversion by thermal plasma is suppressing the inverse reactions,CO?+?O?→?CO_2 and CO?+?0.5O_2?→?CO_2, to simultaneously obtain high CO yield and energy efficiency. This can be done by quickly... A key problem in CO_2 conversion by thermal plasma is suppressing the inverse reactions,CO?+?O?→?CO_2 and CO?+?0.5O_2?→?CO_2, to simultaneously obtain high CO yield and energy efficiency. This can be done by quickly quenching the decomposed gas or rapidly taking away free oxygen from decomposed gas. In this paper, experiments of CO_2 conversion by thermal plasma with carbon as a reducing agent are presented. Carbon quickly devoured free oxygen in thermal plasma decomposed gas, and not only is the inverse reaction completely suppressed, but the discharge energy to form oxygen atoms, oxygen molecular, and thermal energy is also reused.A CO_2 conversion rate of 67%–94% and the corresponding electric energy efficiency of about 70% are achieved, both are much higher than that seen so far by other plasma implementations. 展开更多
关键词 thermal PLASMA CO2 CONVERSION CO2 UTILIZATION
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