Synergistic carbon emission reduction at the urban scale is an inherent requirement for China to realize its carbon emission reduction commitments and promote sustainable and regional synergistic development.Using 16 ...Synergistic carbon emission reduction at the urban scale is an inherent requirement for China to realize its carbon emission reduction commitments and promote sustainable and regional synergistic development.Using 16 prefectural cities in Shandong Province as an example,this study defines and quantifies the regional carbon emission reduction capacity(CERC)based on the synergistic development of carbon emission reduction,environmental protection,and economic growth objectives.The spatial network characteristics of the(CERC)and its drivers were analyzed using social network analysis and quadratic assignment procedure regression methods.The results revealed that the spatial correlation of the CERC among prefectural cities has been increasing over the years.Jinan−Zibo−Qingdao is the center of the network,while the spatial linkage strength in the southwest and northeast of Shandong Province is weak.Geospatial distance and scientific development differences have a significant negative effect on the intensity of spatial association,while differences in economic and informatization developments have a considerable positive impact.Environmental regulatory differences and transportation differences are not significant.This study offers a methodological reference for similar studies in other countries or regions.At the same time,the findings provide a scientific basis for the government to rationally allocate urban resources and promote regional synergistic carbon emission reduction.展开更多
Based on a comprehensive eco-geochemical survey of Shandong Province, the differences in pesticide residue situation and contents of DDTs and HCHs in the soils of Yantai City and Southwest Shandong Province(abbreviate...Based on a comprehensive eco-geochemical survey of Shandong Province, the differences in pesticide residue situation and contents of DDTs and HCHs in the soils of Yantai City and Southwest Shandong Province(abbreviated as SSP) were studied in this paper. The results showed that the detection rates of DDTs and HCHs in the soil of SSP were apparently higher than Yantai City. However, the mean contents of DDTs and HCHs in the soil of Yantai were 9 and 25 times of SSP, respectively, and higher than the mean contents of many other cities and areas. p,p′-DDE was the main pesticide residual form in the soil of SSP. It is recognized as the degradation product of DDTs in oxidation environment in past, nevertheless, 5.52% of the soils in Yantai City still have a little of DDT input recently, which has posed a big impact on soil environment quality. β-HCH was the main form of the four isomers of HCHs in Yantai City, and α-HCH/γ-HCH in SSP was low. These reveal that the residual time of HCHs in the soils of both the two areas has a long period. After primary analysis, the risk of DDTs and HCHs in the soil of SSP is low, but DDTs in the soil of Yantai City still has a certain risk.展开更多
Promoting the green transformation of agricultural clusters represents an effective strategy to address pressing issues related to agricultural resources and environmental concerns.However,existing literature provides...Promoting the green transformation of agricultural clusters represents an effective strategy to address pressing issues related to agricultural resources and environmental concerns.However,existing literature provides limited insights into the internal mechanisms and pathways for achieving green transformation of agricultural clusters.To address the challenges in international research on the collaborative green transformation of entire agricultural value chains,a theoretical analysis framework is constructed in this study,which is characterized by“point-line-plane three-layer embeddedness and four-force interaction,”positioning green innovation as a pivotal entry point.Through social network analysis,this study examines the processes and mechanisms underlying the collaborative green transformation of agricultural clusters and proposes viable pathways for implementation using the Shouguang vegetable industrial cluster as a case study.The research findings are as follows:(1)The green transformation of agricultural clusters includes the green transformation of cluster behavior actors(point),formation of a green innovation network(line),construction of a green environment(plane),and embedded integration and coordinated transformation of the three.Green innovations generated by leading enterprises,universities,and research institutions serve as the foundation for this transformation,whereas farmers'adoption of these innovations forms the basis,and government policies provide regulatory environment to ensure successful implementation.The transformation is realized through green collaborative innovation and governance,achieving the“three-layer embeddedness.”(2)Under the influence of four driving forces,namely,market-driven mechanisms,environmental regulations,green innovation,and multidimensional proximity,actors at various levels form and embed green innovation networks that are integrated into regional environments through institutional constraints.This results in a“five-in-one”system of collaborative green innovation and governance encompassing enterprises,industries,technologies,institutions,and spatial dimensions,which constitute the internal mechanisms for the green transformation and upgrading of agricultural clusters.(3)Building on the“three-layer and four-force”framework,this study proposes pathways for achieving the green transformation of agricultural clusters,thereby providing theoretical insights and policy recommendations for developing countries to foster green agricultural clusters and enhance their agricultural sectors'international competitiveness.展开更多
基金supported by the Department of Science and Technology of Shandong Province [Grant No.2021SFGC0904-05]Shandong Natural Science Foundation [Grant No.ZR2023MD079]+3 种基金Shandong Province Social Science Planning Research Project [Grant No.22CKRJ04]Taishan Scholar Project [Grant No.tsqn202103010]Zaozhuang Science and Technology Bureau [Grant No.2021GH22]the Key R&D Program of Shandong Province,China [Grant No.2023SFGC0101].
文摘Synergistic carbon emission reduction at the urban scale is an inherent requirement for China to realize its carbon emission reduction commitments and promote sustainable and regional synergistic development.Using 16 prefectural cities in Shandong Province as an example,this study defines and quantifies the regional carbon emission reduction capacity(CERC)based on the synergistic development of carbon emission reduction,environmental protection,and economic growth objectives.The spatial network characteristics of the(CERC)and its drivers were analyzed using social network analysis and quadratic assignment procedure regression methods.The results revealed that the spatial correlation of the CERC among prefectural cities has been increasing over the years.Jinan−Zibo−Qingdao is the center of the network,while the spatial linkage strength in the southwest and northeast of Shandong Province is weak.Geospatial distance and scientific development differences have a significant negative effect on the intensity of spatial association,while differences in economic and informatization developments have a considerable positive impact.Environmental regulatory differences and transportation differences are not significant.This study offers a methodological reference for similar studies in other countries or regions.At the same time,the findings provide a scientific basis for the government to rationally allocate urban resources and promote regional synergistic carbon emission reduction.
基金Supported by Shandong Province Land and Resources Survey Project(2006709)Ministry and Province Cooperation Project(1212010310306)
文摘Based on a comprehensive eco-geochemical survey of Shandong Province, the differences in pesticide residue situation and contents of DDTs and HCHs in the soils of Yantai City and Southwest Shandong Province(abbreviated as SSP) were studied in this paper. The results showed that the detection rates of DDTs and HCHs in the soil of SSP were apparently higher than Yantai City. However, the mean contents of DDTs and HCHs in the soil of Yantai were 9 and 25 times of SSP, respectively, and higher than the mean contents of many other cities and areas. p,p′-DDE was the main pesticide residual form in the soil of SSP. It is recognized as the degradation product of DDTs in oxidation environment in past, nevertheless, 5.52% of the soils in Yantai City still have a little of DDT input recently, which has posed a big impact on soil environment quality. β-HCH was the main form of the four isomers of HCHs in Yantai City, and α-HCH/γ-HCH in SSP was low. These reveal that the residual time of HCHs in the soils of both the two areas has a long period. After primary analysis, the risk of DDTs and HCHs in the soil of SSP is low, but DDTs in the soil of Yantai City still has a certain risk.
基金National Natural Science Foundation of China,No.41971222,No.42371218Henan Province Philosophy and Social Science Planning Project,No.2023BJJ013Key Research Project of Higher Education Think Tank in Henan Province,No.2022ZKYJ06。
文摘Promoting the green transformation of agricultural clusters represents an effective strategy to address pressing issues related to agricultural resources and environmental concerns.However,existing literature provides limited insights into the internal mechanisms and pathways for achieving green transformation of agricultural clusters.To address the challenges in international research on the collaborative green transformation of entire agricultural value chains,a theoretical analysis framework is constructed in this study,which is characterized by“point-line-plane three-layer embeddedness and four-force interaction,”positioning green innovation as a pivotal entry point.Through social network analysis,this study examines the processes and mechanisms underlying the collaborative green transformation of agricultural clusters and proposes viable pathways for implementation using the Shouguang vegetable industrial cluster as a case study.The research findings are as follows:(1)The green transformation of agricultural clusters includes the green transformation of cluster behavior actors(point),formation of a green innovation network(line),construction of a green environment(plane),and embedded integration and coordinated transformation of the three.Green innovations generated by leading enterprises,universities,and research institutions serve as the foundation for this transformation,whereas farmers'adoption of these innovations forms the basis,and government policies provide regulatory environment to ensure successful implementation.The transformation is realized through green collaborative innovation and governance,achieving the“three-layer embeddedness.”(2)Under the influence of four driving forces,namely,market-driven mechanisms,environmental regulations,green innovation,and multidimensional proximity,actors at various levels form and embed green innovation networks that are integrated into regional environments through institutional constraints.This results in a“five-in-one”system of collaborative green innovation and governance encompassing enterprises,industries,technologies,institutions,and spatial dimensions,which constitute the internal mechanisms for the green transformation and upgrading of agricultural clusters.(3)Building on the“three-layer and four-force”framework,this study proposes pathways for achieving the green transformation of agricultural clusters,thereby providing theoretical insights and policy recommendations for developing countries to foster green agricultural clusters and enhance their agricultural sectors'international competitiveness.