On December 9, 2014 the scientific research project"Third-generation technology for selective hydrodesulfurization(RSDS-III) of FCC naphtha" jointly undertaken bythe SINOPEC Research Institute of Petroleum Process...On December 9, 2014 the scientific research project"Third-generation technology for selective hydrodesulfurization(RSDS-III) of FCC naphtha" jointly undertaken bythe SINOPEC Research Institute of Petroleum Processing(RIPP), the Qingdao Refining and Chemical Company(QRCC), the Changling Petrochemical Branch Company(CBPC), and the Shanghai Petrochemical Company (SPC)has passed in Beijing the technical appraisal organizedby the Science and Technology Division of the SinopecCorp.展开更多
Reductive soil disinfestation(RSD)is commonly employed for soil remediation in greenhouse cultivation.However,its influence on antibiotic resistance genes(ARGs)in soil remains uncertain.This study investigated the dyn...Reductive soil disinfestation(RSD)is commonly employed for soil remediation in greenhouse cultivation.However,its influence on antibiotic resistance genes(ARGs)in soil remains uncertain.This study investigated the dynamic changes in soil communities,potential bacterial pathogens,and ARG profiles under various organicmaterial treatments during RSD,including distillers’grains,potato peel,peanut vine,and peanut vine combined with charcoal.Results revealed that applying diverse organic materials in RSD significantly altered bacterial community composition and diminished the relative abundance of potential bacterial pathogens(P<0.05).The relative abundance of high-risk ARGs decreased by 10.7%-30.6%after RSD treatments,the main decreased ARG subtypeswere AAC(3)_Via,dfrA1,ErmB,lnuB,aadA.Actinobacteria was the primary host of ARGs and was suppressed by RSD.Soil physicochemical properties,such as total nitrogen,soil pH,total carbon,were crucial factors affecting ARG profiles.Our findings demonstrated that RSD treatment inhibited pathogenic bacteria and could be an option for reducing high-risk ARG proliferation in soil.展开更多
着眼于企业可持续发展,提出辐射可持续发展战略模型(radiation sustainable development strategy,RS-DS)。该战略模型以人力资本为根本,以专业为导向,立足于企业组织管理模式、人力资本优化配置、项目管理、可持续发展四个角度解析企...着眼于企业可持续发展,提出辐射可持续发展战略模型(radiation sustainable development strategy,RS-DS)。该战略模型以人力资本为根本,以专业为导向,立足于企业组织管理模式、人力资本优化配置、项目管理、可持续发展四个角度解析企业发展新视角。展开更多
文摘On December 9, 2014 the scientific research project"Third-generation technology for selective hydrodesulfurization(RSDS-III) of FCC naphtha" jointly undertaken bythe SINOPEC Research Institute of Petroleum Processing(RIPP), the Qingdao Refining and Chemical Company(QRCC), the Changling Petrochemical Branch Company(CBPC), and the Shanghai Petrochemical Company (SPC)has passed in Beijing the technical appraisal organizedby the Science and Technology Division of the SinopecCorp.
基金supported by the Key Research and Development Program of Shandong Province,China(No 2021CXGC010803)Pan’an County Chinese Medicine Industry Project(No.PZYF202103).
文摘Reductive soil disinfestation(RSD)is commonly employed for soil remediation in greenhouse cultivation.However,its influence on antibiotic resistance genes(ARGs)in soil remains uncertain.This study investigated the dynamic changes in soil communities,potential bacterial pathogens,and ARG profiles under various organicmaterial treatments during RSD,including distillers’grains,potato peel,peanut vine,and peanut vine combined with charcoal.Results revealed that applying diverse organic materials in RSD significantly altered bacterial community composition and diminished the relative abundance of potential bacterial pathogens(P<0.05).The relative abundance of high-risk ARGs decreased by 10.7%-30.6%after RSD treatments,the main decreased ARG subtypeswere AAC(3)_Via,dfrA1,ErmB,lnuB,aadA.Actinobacteria was the primary host of ARGs and was suppressed by RSD.Soil physicochemical properties,such as total nitrogen,soil pH,total carbon,were crucial factors affecting ARG profiles.Our findings demonstrated that RSD treatment inhibited pathogenic bacteria and could be an option for reducing high-risk ARG proliferation in soil.