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| 1 | PepperHub, an Informatics Hub for the Chili Pepper Research Community显示文摘 | Feng Liu Huiyang Vu Yingtian Deng Jingyuan Zheng Minglei Liu Lijun Ou Bozhi Yang Xiongze Dai Yanqing Ma Shengyu Feng Shuang He Xuefeng Li Zhuqing Zhang Wenchao Chen Shudong Zhou Rong Chen Minmin Liu Sha Yang Ruimin Wei Huadong Li Feng Li Bo Ouyang Xuexiao Zou | 2017 | Molecular Plant2017,10,8: | 13 |
| 2 | Runoff reduction due to environmental changes in the Sanchuanhe river basin显示文摘Recently,runoff in many river basins in China has been decreasing.Therefore,the role that climate change and human activities are playing in this decrease is currently of interest.In this study,we evaluated an assessment method that was designed to quantitatively separate the effects of climate change and human activities on runoff in river basins.Specifically,we calibrated the SIMHYD rainfall runoff model using naturally recorded hydro-meteorologic data pertaining to the Sanchuanhe River basin and then determined the effects of climate change and human activities on runoff by comparing the estimated natural runoff that occurred during the period in which humans disturbed the basin to the runoff that occurred during the period prior to disturbance by humans.The results of this study revealed that the SIMHYD rainfall runoff model performs well for estimating monthly discharge.In addition,we found that absolute runoff reductions have increased in response to human activities and climate change,with average reductions of 70.1% and 29.9% in total runoff being caused by human activities and climate change,respectively.Taken together,the results of this study indicate that human activities are the primary cause of runoff reduction in the Sanchuanhe River basin. | Guoqing WANG Jianyun ZHANG Ruimin HE Naiqian JIANG Xin'ai JING | 2008 | International Journal of Sediment Research2008,23,2: | 9 |
| 3 | Phosphorus sorption and fraction characteristics in the upper, middle and low reach sediments of the Daliao river systems, China 显示文摘 | Lin Chunye Wang Zhigang He Mengchang Li Yanxia Liu Ruimin Yang Zhifeng | 2009 | J Hazard Mater2009,170,1: | 1 |
| 4 | Phosphorus sorption and fraction characteristics in the upper, middle and low reach sediments of the Daliao river systems, China显示文摘 | Chunye Lin Zhigang Wang Mengchang He Yanxia Li Ruimin Liu Zhifeng Yang | 2009 | Journal of Hazardous Materials2009,,1: | 1 |
| 5 | Attribution for decreasing streamflow of the Haihe River basin, northern China: Climate variability or human activities?显示文摘 | Zhenxin Bao Jianyun Zhang Guoqing Wang Guobin Fu Ruimin He Xiaolin Yan Junliang Jin Yanli Liu Aijing Zhang | 2012 | Journal of Hydrology2012,,: | 1 |
| 6 | Assessing the effect of climate natural variability in water resources evaluation impacted by climate change显示文摘 | Yanli Liu Jianyun Zhang Guoqing Wang Jiufu Liu Ruimin He Hongjie Wang Cuishan Liu Junliang Jin | 2012 | Hydrol. Process2012,,7: | 1 |
| 7 | Comparison of regionalization approaches based on regression and similarity for predictions in ungauged catchments under multiple hydro-climatic conditions显示文摘 | Zhenxin Bao Jianyun Zhang Jiufu Liu Guobin Fu Guoqing Wang Ruimin He Xiaolin Yan Junliang Jin Hongwei Liu | 2012 | Journal of Hydrology2012,,: | 1 |
| 8 | A Strategy to Deal with Water Crisis under Climate Change for mainstream in the middle reaches of Yellow River 显示文摘 | Wang Xiaojun Zhang Jianyun He Ruimin etc | 2011 | Mitigation and Adaptation Strategies for Global Change2011,,5: | 1 |
| 9 | Assessment of carbon sink potential and methane reduction scenarios of marine macroalgae(Gracilaria)cultivation显示文摘Marine macroalgae cultivation is an important part of the effort to address climate change through carbon sinks.Gracilaria,especially Gracilaria lemaneiformis and Gracilaria lichenoides are the major macroalgae cultivated in China.This study proposes a method to assess the net carbon sink of marine macroalgae(Gracilaria)cultivation.First,the net carbon sink of Gracilaria cultivation in China is calculated based on the yield of annual cultivated Gracilaria recorded in China Fishery Statistical Yearbook from 2011 to 2020.Next,we predict the net carbon sink trend of Gracilaria cultivation from 2021 to 2030 using the autoregressive integrated moving average model(ARIMA).Finally,the potential carbon sink increase and methane reduction related to Gracilaria cultivation in China is explored through a scenario analysis.We find that the net carbon sink of Gracilaria cultivation in China was about 32.1-92.4 kilotons per year from 2011 to 2020,and shows a great annual growth trend.Moreover,the predicted net carbon sink of Gracilaria cultivation would increase to 77.8-191.4 kilotons per year from 2021 to2030,thereby could contribute considerably in the achievement of China's carbon peak goal.Under a scenario of producing ruminant green feed with additional Gracilaria cultivation,each ton of macroalgae is predicted to reduce carbon emission(i.e.,methane)by 0.33-0.68 tons.Thus,marine macroalgae cultivation might form a synergistic chain of'carbon sink increase-water purification-economy-methane reduction'.This study proposes a synergistic new model that operates through marine macroalgae cultivation,economic aquaculture,and green feed production. | Yifan XU Huanping LIU Yufeng YANG Hongtao SHEN Ruimin ZHANG Cheng WANG Zhijian HUANG Jianguo HE Zhili HE Qingyun YAN | 2023 | Science China Earth Sciences2023,66,5: | 0 |
| 10 | Immunostimulant nanomodulator boosts antitumor immune response in triple negative breast cancer by synergism of vessel normalization and photothermal therapy显示文摘Tumor vascular dysfunction and immune suppression predict poor outcomes of tumor therapy.Combination of photothermal therapy(PTT)and vessel normalization with tumor immunotherapy is promising to augment antitumor benefit.Herein,we develop a potential immunostimulatory nanomodulator for treatment of triple-negative breast cancer(TNBC)treatment via synergism of PTT,vessel normalization,and priming of tumoral suppressive immune microenvironment by blocking transforming growth factor-β(TGF-β)pathway.The nanomodulator,namely Vac@Apt@BPs,is developed by conjugation of TGF-βinhibitor Vactosertib(Vac)and nucleolin-recognizing aptamer(Apt)on the surface of black phosphorus nanoparticles(BPs).Vac@Apt@BPs show good accumulation in TNBC via aptamer-induced active targeting of TNBC.Via the blockade of TGF-βsignaling,Vac@Apt@BPs effectively inhibit the formation of tumor neovascular,and normalize the vessels to recover vascular integrity and alleviate the hypoxia stress.Together with the tumor eradication and immunogenic cell death via PTT,robust immune response was boosted by promoted maturation of dendritic cells,suppression of regulatory T cells,and stimulation of effective T cells.This synergistic therapeutic strategy potentially suppresses the growth of TNBC in mice. | Hao Jiang Yilang He Jia Zhao Ruimin Chang Hailun He Tan Li Xingyu Zhang Bo Shu Wenxuan Zhang Huaiyu Wang Jing Liu Shubing Zhang Yuetao Zhao | 2023 | Nano Research2023,16,8: | 0 |
| 11 | Research on the Trend of Evaluation and Examination of Human Resources显示文摘 | Ruimin Wang He Bu | 2006 | Chinese Business Review2006,5,2: | 0 |