Polygonatum is a traditional and precious Chinese medicine in China,as well as a traditional medicinal and food homologous material.It has a long history of cultivation and medicinal use.It not only has the effects of...Polygonatum is a traditional and precious Chinese medicine in China,as well as a traditional medicinal and food homologous material.It has a long history of cultivation and medicinal use.It not only has the effects of boosting qi and nourishing yin,nourishing the spleen and lungs,and tonifying the kidney,but also application value in food,health products,ornamental,cosmetics,etc.There are many varieties of Polygonatum resources all over China,which are easy to be mixed.There are three species of medicinal Polygonatum recorded in the 2015 edition of Pharmacopeia of the People s Republic of China.In order to sustainably use and fully develop Polygonatum medicinal resources,we conducted textual research on relevant data and research on the distribution of Polygonatum resources,germplasm identification,genetic diversity and breeding research,so as to provide a reference for the selection and breeding of polygonatum,artificial cultivation and the development and utilization of potential Polygonatum resources and for the solution of the contradiction between supply and demand in the Polygonatum market.展开更多
In October and November of 2018,the upper reach of the Yangtze River was blocked twice by landslide dams.A large landslide dam on a major river can impound a huge amount of water and trigger catastrophic flooding once...In October and November of 2018,the upper reach of the Yangtze River was blocked twice by landslide dams.A large landslide dam on a major river can impound a huge amount of water and trigger catastrophic flooding once it fails,imposing great risk to the downstream communities.Considering the chain of large dams and densely populated cities along the river,there is an urgent need to improve the system resilience of the Yangtze River to the landslide dam break hazard.This study presents a basin-scale emergency risk management framework based on an overtopping-erosion based dam failure model and a 1-D flood routing analysis model.Basin-wide inundation and detailed flood risk analyses are carried out considering engineering risk mitigation measures,which will facilitate the decision-making on future emergency risk mitigation plans.The proposed framework is applied to the landslide dam on the Yangtze River in November 2018.Results show that excavating a 15 m-depth diversion channel could effectively mitigate the flood risk of downstream areas.Further mitigation measures,including evacuation,removal of obstacles in the river,and preparation of certain intercept capacity in downstream reservoirs,are suggested based on the hazard chain risk analysis.The mitigation results in the case prove the effectiveness of the proposed framework.The incorporation of open-access global databases enables the application of the framework to any large river basin worldwide.展开更多
基金Central Major Expenditure Increase or Decrease Program(2060302)Special Fund for Guiding Local Science and Technology Development by the Central Government(2018SZYD0003)+1 种基金Sichuan Provincial Science and Technology Department Talent Project(2016RZ0061)Sichuan Traditional Chinese Medicine Resources Sustainable Development Strategy Research Project(2016ZR0069).
文摘Polygonatum is a traditional and precious Chinese medicine in China,as well as a traditional medicinal and food homologous material.It has a long history of cultivation and medicinal use.It not only has the effects of boosting qi and nourishing yin,nourishing the spleen and lungs,and tonifying the kidney,but also application value in food,health products,ornamental,cosmetics,etc.There are many varieties of Polygonatum resources all over China,which are easy to be mixed.There are three species of medicinal Polygonatum recorded in the 2015 edition of Pharmacopeia of the People s Republic of China.In order to sustainably use and fully develop Polygonatum medicinal resources,we conducted textual research on relevant data and research on the distribution of Polygonatum resources,germplasm identification,genetic diversity and breeding research,so as to provide a reference for the selection and breeding of polygonatum,artificial cultivation and the development and utilization of potential Polygonatum resources and for the solution of the contradiction between supply and demand in the Polygonatum market.
基金financial support from the NSFC/RGC Joint Research Scheme(N_HKUST620/20 and 42061160480)the Project of Hetao Shenzhen-Hong Kong Science and Technology Innovation Cooperation Zone(HZQB-KCZYB-2020083).
文摘In October and November of 2018,the upper reach of the Yangtze River was blocked twice by landslide dams.A large landslide dam on a major river can impound a huge amount of water and trigger catastrophic flooding once it fails,imposing great risk to the downstream communities.Considering the chain of large dams and densely populated cities along the river,there is an urgent need to improve the system resilience of the Yangtze River to the landslide dam break hazard.This study presents a basin-scale emergency risk management framework based on an overtopping-erosion based dam failure model and a 1-D flood routing analysis model.Basin-wide inundation and detailed flood risk analyses are carried out considering engineering risk mitigation measures,which will facilitate the decision-making on future emergency risk mitigation plans.The proposed framework is applied to the landslide dam on the Yangtze River in November 2018.Results show that excavating a 15 m-depth diversion channel could effectively mitigate the flood risk of downstream areas.Further mitigation measures,including evacuation,removal of obstacles in the river,and preparation of certain intercept capacity in downstream reservoirs,are suggested based on the hazard chain risk analysis.The mitigation results in the case prove the effectiveness of the proposed framework.The incorporation of open-access global databases enables the application of the framework to any large river basin worldwide.