Renewable energy driven N_(2) electroreduction with air as nitrogen source holds great promise for realizing scalable green ammonia production.However,relevant out-lab research is still in its infancy.Herein,a novel S...Renewable energy driven N_(2) electroreduction with air as nitrogen source holds great promise for realizing scalable green ammonia production.However,relevant out-lab research is still in its infancy.Herein,a novel Sn-based MXene/MAX hybrid with abundant Sn vacancies,Sn@Ti_(2)CTX/Ti_(2)SnC–V,was synthesized by controlled etching Sn@Ti_(2)SnC MAX phase and demonstrated as an efficient electrocatalyst for electrocatalytic N2 reduction.Due to the synergistic effect of MXene/MAX heterostructure,the existence of Sn vacancies and the highly dispersed Sn active sites,the obtained Sn@Ti2CTX/Ti_(2)SnC–V exhibits an optimal NH_(3) yield of 28.4μg h^(−1) mg_(cat)^(−1) with an excellent FE of 15.57% at−0.4 V versus reversible hydrogen electrode in 0.1 M Na_(2)SO_(4),as well as an ultra-long durability.Noticeably,this catalyst represents a satisfactory NH3 yield rate of 10.53μg h^(−1) mg^(−1) in the home-made simulation device,where commercial electrochemical photovoltaic cell was employed as power source,air and ultrapure water as feed stock.The as-proposed strategy represents great potential toward ammonia production in terms of financial cost according to the systematic technical economic analysis.This work is of significance for large-scale green ammonia production.展开更多
Anthropometric variations can affect resting energy expenditure,VO_(2) max and anaerobic capacity of young,healthy individuals.Studies have shown that body fat percentage,weight,and height can all affect the three mea...Anthropometric variations can affect resting energy expenditure,VO_(2) max and anaerobic capacity of young,healthy individuals.Studies have shown that body fat percentage,weight,and height can all affect the three measures.The study aimed to study VO_(2) max and 24-hour thermogenesis measures in predominantly sedentary individuals and weight changes afterwards.VO_(2) max-associated research shows that taller individuals tend to have higher VO_(2) max levels compared to shorter individuals.This could be because taller individuals have a larger lung capacity and greater oxygen delivery to the muscles.Weight can also affect VO_(2) max,as heavier individuals tend to have higher VO_(2) max levels than lighter individuals.Weight is also associated with resting energy expenditure,as heavier individuals tend to have a higher resting energy expenditure than lighter individuals.The purpose of this study was to conduct a systematic review of the existing literature related to resting energy expenditure and metabolic effects of VO_(2) max,and anaerobic capacity in sedentary active adults of anthropometric variations.Several studies have recently examined the possibility of improving aerobic and metabolic functions ensuring cardiorespiratory fitness within the population of anthropometric variations.Everyday physical activity and heredity ability influenced mainly the gold standard measuring tool for cardiorespiratory fitness,VO_(2) max,predicting mortality and morbidity.Weight gain has also been shown to be associated with lower cardiorespiratory fitness,regardless of physical activity levels.The VO_(2) max may have a different effect on energy balance apart from physical activity’s energy expenditure(EE),possibly by affecting the resting metabolic rate(RMR)or triggering a common mechanism associated with diet-induced thermogenesis.Weight change is predicted by sedentary energy expenditure,but directly measured VO_(2) max does not appear to be correlated with weight change.The relationship between resting energy expenditure,VO_(2) max,and anaerobic capacity in individuals is complex.Resting energy expenditure is directly related to anaerobic capacity,as it is an indicator of the body’s ability to work anaerobically.VO_(2) max is also related to anaerobic capacity,as it reflects the body’s maximal aerobic power.However,the strength of this relationship is not known.Overall,both resting energy expenditure and VO_(2) max are important determinants of anaerobic capacity in individuals and are worth considering when evaluating an individual’s anaerobic potential.展开更多
基金This work was supported by the National Natural Science Foundation of China(Nos.22308139,52071171,52202248)Natural Science Foundation of Liaoning Province(2023-MS-140)+11 种基金Liaoning BaiQianWan Talents Program(LNBQW2018B0048)Shenyang Science and Technology Project(21-108-9-04)Young Scientific and Technological Talents Project of the Department of Education of Liaoning Province(LQN202008)Key Research Project of Department of Education of Liaoning Province(LJKZZ20220015)Foundation of State Key Laboratory of Clean and Efficient Coal Utilization,Taiyuan University of Technology(MJNYSKL202301)Foundation of State Key Laboratory of High-efficiency Utilization of Coal and Green Chemical Engineering(KF2023006)Anhui Province Key Laboratory of Coal Clean Conversion and High Valued Utilization,Anhui University of Technology(CHV22-05)Australian Research Council(ARC)through Future Fellowship(FT210100298,FT210100806)Discovery Project(DP220100603)Linkage Project(LP210100467,LP210200504,LP210200345,LP220100088)Industrial Transformation Training Centre(IC180100005)schemesthe Australian Government through the Cooperative Research Centres Projects(CRCPXIII000077).
文摘Renewable energy driven N_(2) electroreduction with air as nitrogen source holds great promise for realizing scalable green ammonia production.However,relevant out-lab research is still in its infancy.Herein,a novel Sn-based MXene/MAX hybrid with abundant Sn vacancies,Sn@Ti_(2)CTX/Ti_(2)SnC–V,was synthesized by controlled etching Sn@Ti_(2)SnC MAX phase and demonstrated as an efficient electrocatalyst for electrocatalytic N2 reduction.Due to the synergistic effect of MXene/MAX heterostructure,the existence of Sn vacancies and the highly dispersed Sn active sites,the obtained Sn@Ti2CTX/Ti_(2)SnC–V exhibits an optimal NH_(3) yield of 28.4μg h^(−1) mg_(cat)^(−1) with an excellent FE of 15.57% at−0.4 V versus reversible hydrogen electrode in 0.1 M Na_(2)SO_(4),as well as an ultra-long durability.Noticeably,this catalyst represents a satisfactory NH3 yield rate of 10.53μg h^(−1) mg^(−1) in the home-made simulation device,where commercial electrochemical photovoltaic cell was employed as power source,air and ultrapure water as feed stock.The as-proposed strategy represents great potential toward ammonia production in terms of financial cost according to the systematic technical economic analysis.This work is of significance for large-scale green ammonia production.
文摘Anthropometric variations can affect resting energy expenditure,VO_(2) max and anaerobic capacity of young,healthy individuals.Studies have shown that body fat percentage,weight,and height can all affect the three measures.The study aimed to study VO_(2) max and 24-hour thermogenesis measures in predominantly sedentary individuals and weight changes afterwards.VO_(2) max-associated research shows that taller individuals tend to have higher VO_(2) max levels compared to shorter individuals.This could be because taller individuals have a larger lung capacity and greater oxygen delivery to the muscles.Weight can also affect VO_(2) max,as heavier individuals tend to have higher VO_(2) max levels than lighter individuals.Weight is also associated with resting energy expenditure,as heavier individuals tend to have a higher resting energy expenditure than lighter individuals.The purpose of this study was to conduct a systematic review of the existing literature related to resting energy expenditure and metabolic effects of VO_(2) max,and anaerobic capacity in sedentary active adults of anthropometric variations.Several studies have recently examined the possibility of improving aerobic and metabolic functions ensuring cardiorespiratory fitness within the population of anthropometric variations.Everyday physical activity and heredity ability influenced mainly the gold standard measuring tool for cardiorespiratory fitness,VO_(2) max,predicting mortality and morbidity.Weight gain has also been shown to be associated with lower cardiorespiratory fitness,regardless of physical activity levels.The VO_(2) max may have a different effect on energy balance apart from physical activity’s energy expenditure(EE),possibly by affecting the resting metabolic rate(RMR)or triggering a common mechanism associated with diet-induced thermogenesis.Weight change is predicted by sedentary energy expenditure,but directly measured VO_(2) max does not appear to be correlated with weight change.The relationship between resting energy expenditure,VO_(2) max,and anaerobic capacity in individuals is complex.Resting energy expenditure is directly related to anaerobic capacity,as it is an indicator of the body’s ability to work anaerobically.VO_(2) max is also related to anaerobic capacity,as it reflects the body’s maximal aerobic power.However,the strength of this relationship is not known.Overall,both resting energy expenditure and VO_(2) max are important determinants of anaerobic capacity in individuals and are worth considering when evaluating an individual’s anaerobic potential.