随着外科学和耗材学的飞速发展,各种先进的医用产品在临床上大量使用,对各种高难度手术的开展及提高手术安全系数带来了很大的便利,但同时也给管理工作增加了难度。如何使手术室高值物品在库房管理、领用、登记上更趋于合理化、标准化...随着外科学和耗材学的飞速发展,各种先进的医用产品在临床上大量使用,对各种高难度手术的开展及提高手术安全系数带来了很大的便利,但同时也给管理工作增加了难度。如何使手术室高值物品在库房管理、领用、登记上更趋于合理化、标准化、制度化是护理管理者需要解决的关键问题。品质管理圈(quality control circle,QCC)小组由工作性质相同的人员组成,围绕单位部署、方针、目标和现场存在的问题,以改进质量、降低消耗、展开更多
Photoelectrocatalysis(PEC)is a promising approach that can convert renewable solar energy into chemical energy,while most concern is concentrated on PEC water splitting to obtain high‐value‐added fuel—hydrogen.In p...Photoelectrocatalysis(PEC)is a promising approach that can convert renewable solar energy into chemical energy,while most concern is concentrated on PEC water splitting to obtain high‐value‐added fuel—hydrogen.In practice,more economic benefits can be produced based on PEC technique,such as H_(2)O oxidative H_(2)O_(2) synthesis,organic selective oxidation,organic pollutants degradation and CO_(2) reduction.Although there are plenty of excellent reviews focusing on the PEC water splitting system,the production of various high‐value‐added chemicals in PEC systems has not been discussed synthetically.This Account will focus on the production process of various high‐value‐added chemicals through PEC technology.The photoelectrode design,reaction environment and working mechanisms of PEC systems are also discussed in detail.We believe that this comprehensive Account of the expanded application of photoelectrocatalysis can add an inestimable impetus to the follow‐up development of this technology.展开更多
文摘随着外科学和耗材学的飞速发展,各种先进的医用产品在临床上大量使用,对各种高难度手术的开展及提高手术安全系数带来了很大的便利,但同时也给管理工作增加了难度。如何使手术室高值物品在库房管理、领用、登记上更趋于合理化、标准化、制度化是护理管理者需要解决的关键问题。品质管理圈(quality control circle,QCC)小组由工作性质相同的人员组成,围绕单位部署、方针、目标和现场存在的问题,以改进质量、降低消耗、
文摘Photoelectrocatalysis(PEC)is a promising approach that can convert renewable solar energy into chemical energy,while most concern is concentrated on PEC water splitting to obtain high‐value‐added fuel—hydrogen.In practice,more economic benefits can be produced based on PEC technique,such as H_(2)O oxidative H_(2)O_(2) synthesis,organic selective oxidation,organic pollutants degradation and CO_(2) reduction.Although there are plenty of excellent reviews focusing on the PEC water splitting system,the production of various high‐value‐added chemicals in PEC systems has not been discussed synthetically.This Account will focus on the production process of various high‐value‐added chemicals through PEC technology.The photoelectrode design,reaction environment and working mechanisms of PEC systems are also discussed in detail.We believe that this comprehensive Account of the expanded application of photoelectrocatalysis can add an inestimable impetus to the follow‐up development of this technology.