Despite the fact that the non-renewable resources industry contributes greatly to regional and national gross domestic product(GDP),it casts massive negative impacts on the environment,which fails to be deducted from ...Despite the fact that the non-renewable resources industry contributes greatly to regional and national gross domestic product(GDP),it casts massive negative impacts on the environment,which fails to be deducted from economic growth.Hence,sustainable development of non-renewable resources(extraction and processing)is playing an essential role in boosting economic growth continuously.The System of Integrated Environmental and Economic Accounting(SEEA)proposed by the United Nations Statistics Division(UNSD)provides a brand-new perspective for sustainability study.This paper designs a fundamental approach of green accounting for non-renewable resources based on SEEA.Three main aspects of the accounting are extracted to explore the way of analysis for sustainability indicators,which are not touched upon by SEEA.Main analyses are as follows:(1)the analysis on the influence of the change of the discount rate in user cost(UC);(2)correlation analysis between environmental degradation and pollutants emission intensity;(3)analysis of the accounting results of green GDP and green GCF(gross capital formation).Then taking petroleum resources in Shandong Province as an example,this paper will calculate and analyze green data based on the accounting and analytical approaches discussed above.However,sustainability indicators studied in the paper are just associated with past economic activities,while investigation into the factors of the change of sustainability indicators is the one most critical point in relevant policymaking.展开更多
A resource is any physical or virtual entity of limited availability used to earn good life.Resources are divided into natural and human resources.Natural resources are derived from the environment and are classified ...A resource is any physical or virtual entity of limited availability used to earn good life.Resources are divided into natural and human resources.Natural resources are derived from the environment and are classified on the basis of origin,including biotic resources like forests,animals and their products, marine organisms and minerals.Abiotic resources展开更多
Fine-tuning of the electron-deficient unit in A-DA1D-A typed small-molecule acceptors (SMAs) plays a crucial role in developing efficient SMAs for organic solar cells (OSCs).Here,we developed a SMA based on benzo[4,5]...Fine-tuning of the electron-deficient unit in A-DA1D-A typed small-molecule acceptors (SMAs) plays a crucial role in developing efficient SMAs for organic solar cells (OSCs).Here,we developed a SMA based on benzo[4,5]thieno[2,3-b]quinoxaline,designated as QW1,as well as three SMAs based on 1-methylindoline-2,3-dione,identified as QW2,QW3,and QW4.Compared with QW2,QW1 displays slightly blue-shifted absorption spectra and a lower LUMO energy level due to the stronger electron-withdrawing capability of BTQx in contrast to MDO.On the other hand,the introduction of a bromine atom in QW3 and QW4 causes a blue shift in absorption and a reduction in the LUMO energy level compared to QW2.Density functional theory analysis reveals that QW1 exhibits the best molecular planarity,which endows QW1 with larger electron mobility and tighter molecular stacking.Consequently,PM6:QW1 device affords a better efficiency of 15.63% than those of the devices based on QW2 (14.25%),QW3 (13.21%) and QW4 (15.03%).Moreover,the QW4-based device yields the highest open-circuit voltage of 0.933 V,and the PM6:L8-BO:QW4 ternary device realizes a PCE of 19.03%.Overall,our work demonstrates that regulation of electron-deficient central units is an effective strategy to improve the photovoltaic performance of the resulting A-DA1D-A SMAs.展开更多
基金support from the Development Plan Projects of Science and Technology in Shandong Province(Grant No.2009GG10005001)the Special Program of National Oceanography for the Public Benefit(201005010)the New Century Excellent Researcher Award Program from Ministry of Education of China(Grant No.NCET08-0508)
文摘Despite the fact that the non-renewable resources industry contributes greatly to regional and national gross domestic product(GDP),it casts massive negative impacts on the environment,which fails to be deducted from economic growth.Hence,sustainable development of non-renewable resources(extraction and processing)is playing an essential role in boosting economic growth continuously.The System of Integrated Environmental and Economic Accounting(SEEA)proposed by the United Nations Statistics Division(UNSD)provides a brand-new perspective for sustainability study.This paper designs a fundamental approach of green accounting for non-renewable resources based on SEEA.Three main aspects of the accounting are extracted to explore the way of analysis for sustainability indicators,which are not touched upon by SEEA.Main analyses are as follows:(1)the analysis on the influence of the change of the discount rate in user cost(UC);(2)correlation analysis between environmental degradation and pollutants emission intensity;(3)analysis of the accounting results of green GDP and green GCF(gross capital formation).Then taking petroleum resources in Shandong Province as an example,this paper will calculate and analyze green data based on the accounting and analytical approaches discussed above.However,sustainability indicators studied in the paper are just associated with past economic activities,while investigation into the factors of the change of sustainability indicators is the one most critical point in relevant policymaking.
文摘A resource is any physical or virtual entity of limited availability used to earn good life.Resources are divided into natural and human resources.Natural resources are derived from the environment and are classified on the basis of origin,including biotic resources like forests,animals and their products, marine organisms and minerals.Abiotic resources
基金supported by the Shenzhen Science and Technology Program(ZDSYS20210623091813040,RCBS20221008093225021)the National Natural Science Foundation of China(NSFC,No.22309119)+2 种基金G.Li acknowledges the support from Research Grants Council of Hong Kong(Project Nos.15320216,15221320,C5037-18G,RGC Senior Research Fellowship Scheme(SRFS2223-5S01))the Hong Kong Polytechnic University(Sir Sze-yuen Chung Endowed Professorship Fund(8-8480)PolyU Distinguished postdoc Fellowship(1-YW4C,R.Ma),G-SAC5)。
文摘Fine-tuning of the electron-deficient unit in A-DA1D-A typed small-molecule acceptors (SMAs) plays a crucial role in developing efficient SMAs for organic solar cells (OSCs).Here,we developed a SMA based on benzo[4,5]thieno[2,3-b]quinoxaline,designated as QW1,as well as three SMAs based on 1-methylindoline-2,3-dione,identified as QW2,QW3,and QW4.Compared with QW2,QW1 displays slightly blue-shifted absorption spectra and a lower LUMO energy level due to the stronger electron-withdrawing capability of BTQx in contrast to MDO.On the other hand,the introduction of a bromine atom in QW3 and QW4 causes a blue shift in absorption and a reduction in the LUMO energy level compared to QW2.Density functional theory analysis reveals that QW1 exhibits the best molecular planarity,which endows QW1 with larger electron mobility and tighter molecular stacking.Consequently,PM6:QW1 device affords a better efficiency of 15.63% than those of the devices based on QW2 (14.25%),QW3 (13.21%) and QW4 (15.03%).Moreover,the QW4-based device yields the highest open-circuit voltage of 0.933 V,and the PM6:L8-BO:QW4 ternary device realizes a PCE of 19.03%.Overall,our work demonstrates that regulation of electron-deficient central units is an effective strategy to improve the photovoltaic performance of the resulting A-DA1D-A SMAs.