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| 1 | Advances in the reintroduction of rare and endangered wild plant species显示文摘Human disturbance and climate change have increased the risk of extinction for rare and endangered wild plant species.One effective way to conserve these rare and endangered species is through reintroduction.In this review,we summarize the advances in wild plant reintroduction from five perspectives:the establishment of reintroduction biology as an important tool for biodiversity conservation;the importance of genetic diversity in reintroduction;reintroduction under global climate change;recruitment limitation in reintroduction;and reintroduction and ecological restoration.In addition,we consider the future of plant reintroduction strategies. | REN Hai JIAN ShuGuang LIU HongXiao ZHANG QianMei LU HongFang | 2014 | Science China(Life Sciences)2014,57,6: | 20 |
| 2 | Bottom water temperature measurements in the South China Sea,eastern Indian Ocean and western Pacific Ocean显示文摘文章报道了一批新的海底底水温度(BWT)数据,其中南海(SCS)158个站位、东印度洋(EIO)30个站位及西太平洋(WPO)37个站位。基于这批新的BWT数据,获得南海和西太平洋海域底水温度与水深经验关系,可为地球物理和物理海洋提供准确、可靠的海底温度边界。这将有助于海底油气资源调查与评估。同时,这批实测数据表明:1)水深超过3500m的海域,其底水温度在南海约为2.47℃,比东印度洋(~1.34℃)和西太平洋(~1.60℃)稍微偏高。这与大洋传送带模式所预测的情况比较吻合。该模式认为:低温高盐的海水,从北大西洋格陵兰岛和冰岛附近海域下沉到深层,然后向南流动,再与南极洲周围海域的低温高盐海水一同向北进入印度洋和太平洋。而南海是一个相对比较封闭的热带边缘海,其内部海水与印度洋和菲律宾海交换有限,导致海水温度整体高于印度洋和太平洋。2)台西南盆地水深在2700~3000m的部分站位,其底水温高达约3.00℃,明显高于其周边同水深海域底水温度(平均值约为2.33℃)。这可能是台西南盆地海底水热活动导致的结果。3)在东印度洋和西太平洋水深超过4800m海域,底水温度随着水压增大稍有升高,其升高率分别为10.6mK·MPa^(-1)和12.0mK·MPa^(-1)。这与理论估算的深层底水绝热压力温度梯度范围较为吻合。这也意味着东印度洋和西太平洋深层底水,主要由绝热自压作用导致其温度随着深度的增大而升高。 | YANG Xiaoqiu SHI Xiaobin ZHAO Junfeng YU Chuanhai GAO Hongfang CHEN Aihua LU Yuanzheng CEN Xianrong LIN Weiren ZENG Xin XU Hehua REN Ziqiang ZHOU Shengqi XU Ziying SUN Jinlong KAMIYA Nana LIN Jian | 2018 | 热带海洋学报2018,37,5: | 8 |
| 3 | High-risk phenotypes of genetic disease in a Neonatal Intensive Care Unit population显示文摘To the Editor: Genetic diseases contribute to 35% of deaths during the first year of life and are a significant cause of intensive care.[1] A previous study based on the China Neonatal Genomes Project investigated the genetic causes of early infant deaths and found that >25% of deceased neonates with genetic diagnoses can be cured if diagnosed in time.[2] Therefore, it is crucial to target and diagnose neonates with genetic diseases as early as possible. According to our experience, the typical phenotypes, such as special facial features or multiple congenital anomalies (MCAs), indicate a high risk of genetic disease and lead physicians to perform genetic testing in neonates as early as possible. However, in practice, infants without typical phenotypes typically undergo a long and costly diagnostic process before genetic diagnoses are confirmed. Moreover, a recent survey by the American College of Medical Genetics and Genomics (ACMG) and other national professional organizations indicated that there are insufficient numbers of qualified geneticists to fulfil genetic service needs.[3] The ACMG published the general clinical features for genetic testing indications. For example, patients with phenotypes or family history data that strongly implicate a genetic cause may undergo genetic testing.[1] However, the study indicated that many genetic conditions arise de novo or are inherited with no family history.[1] A previous study attempted to apply the non-phenotype-driven panel approach in neonates admitted to the neonate intensive care unit (NICU).[4] However, at present, the diagnostic yield is only 3.45% (1/29).[4] In addition, the economic and ethical issues associated with genomic screening remain challenging. Therefore, the available indications for genetic testing may improve the management of genetic diseases. | Tiantian Xiao Qi Ni Huiyao Chen Huijun Wang Lin Yang Bingbing Wu Yun Cao Guoqiang Cheng Laishuan Wang Liyuan Hu Hongfang Mei Yulan Lu Mengchun Gong Xinran Dong Wenhao Zhou | 2022 | Chinese Medical Journal2022,,5: | 2 |
| 4 | Energy study on dike-pond eco-agricultural engineering modes显示文摘 | LU Hongfang LAN Shengfang CHEN Feipeng | 2002 | Transactions of the CSAE2002,18,5: | 1 |
| 5 | Globalfield synergy optimization and entropy generation as-sessment for CO2 capture process显示文摘 | YU Yunsong LI Yun LU Hongfang | 2011 | InternationalJournal of Greenhouse Gas Control2011,,4: | 1 |
| 6 | Wild plant species with extremely small populations require conservation and reintroduction in China显示文摘 | REN Hai ZHANG Qianmei LU Hongfang | 2012 | Ambio2012,41,: | 1 |
| 7 | Sonneratia apetala Buch in the mangrove ecosystems of China: An invasive species or restoration species?显示文摘 | REN Hai LU Hongfang SHEN Weijun | 2009 | Ecological Engineering2009,35,8: | 1 |
| 8 | Study on buttresses distance of gas pipelines in the deviated well based on stress analysis method显示文摘 | Huang Kun Lu Hongfang Shen Kunrong? | 2013 | Advance Journal of Food Science & Technology2013,5,9: | 1 |
| 9 | Quantifying ecological memory during forest succession: A case study from lower subtropical forest ecosystems in South China显示文摘 | Zhongyu Sun Hai Ren Valentin Schaefer Hongfang Lu Jun Wang Linjun Li Nan Liu | 2013 | Ecological Indicators2013,,: | 1 |
| 10 | Study on dike-pond eco-agricultural engineering models显示文摘 | LU HONGFANG LAN SHENGFANG CHENG FEI-PENG | 2002 | Transaction of the CSAE2002,18,: | 1 |
| 11 | Curcumin-induced cell cycle arrest and apoptosis in human acute promyelocytic leukemia HL-60 cells via MMP changes and caspase-3 activation 显示文摘 | Tan Tin Wee Tsai HR Lu Hongfang | 2006 | Anticancer Res2006,26,6: | 1 |
| 12 | Wild Plant Species with Extremely Small Populations Require Conservation and Reintroduction in China显示文摘 | Hai Ren Qianmei Zhang Hongfang Lu Hongxiao Liu Qinfeng Guo Jun Wang Shuguang Jian Hai’ou Bao | 2012 | AMBIO2012,,8: | 1 |
| 13 | Comparative Analysis of FRP and Seamless Steel Pipe on Crude Oil Trans- portation Performance 显示文摘 | Huang Kun Lu Hongfang Pan Weiqing | 2014 | Asian Journal of Chemistry2014,26,17: | 1 |
| 14 | Recovery of waste heat in cement plants for the capture of CO2显示文摘大量精力在特别在也射出大量 CO2 的锻烧过程期间生产水泥期间被消费。精力的大部分使用了在形成过程中水泥作为浪费热被释放。由集成浪费热的恢复和利用捕获 CO2 的一个过程被设计了。白杨正软件被用来计算浪费热的数量和精力利用的效率。在这研究使用的数据与 1 Mt/y 的水泥产量与 5 阶段 preheater 和 precalciner 基于干燥进程水泥植物。根据计算:1 ) 浪费热恢复系统的产生能力是 4.9 MW。2 ) 全面 CO2 移动率象 78.5% 一样高。3 ) 利用在生产过程的水泥以后增加了的精力的效率与这个综合图案被翻新。 | Ruifeng DONG Zaoxiao ZHANG Hongfang LU Yunsong YU | 2012 | Frontiers of Chemical Science and Engineering2012,6,1: | 1 |
| 15 | Comparative Analysis of FRP and Seamless Steel Pipe on Crude Oil Trans- portation Performance 显示文摘 | Chen Liqiong Wu Shijuan Lu Hongfang | 2014 | Journal of Chemical and Pharma- ceutical Research2014,6,7: | 1 |
| 16 | Integrated emergy, energy and economic evaluation of rice and vegetable production systems in alluvial paddy fields: Implications for agricultural policy in China显示文摘 | Lu Hongfang Bai Yu Ren Hal | 2010 | J Environ Manage2010,91,: | 1 |
| 17 | Emergy evaluations of three aquaculture systems on wetlands surrounding the Pearl River Estuary,China显示文摘 | Li Linjun Lu Hongfang Ren Hai | 2011 | Ecol Indic2011,11,: | 1 |
| 18 | Study on buttresses distance of gas pipelines in the deviated well based on stress analysis method显示文摘 | Huang Kun Lu Hongfang Shen Kunrong | 2013 | Advance Journal of Food Science & Technology2013,5,9: | 1 |
| 19 | A feasible process for simultaneous removal of CO 2 , SO 2 and NO x in the cement industry by NH 3 scrubbing显示文摘 | Ruifeng Dong Hongfang Lu Yunsong Yu Zaoxiao Zhang | 2011 | Applied Energy2011,,: | 1 |
| 20 | High-temperature phase relations of ZrN–ZrO_2–Y_2O_3 ternary system显示文摘Zirconium nitride(ZrN) ceramics were prepared via hot pressed sintering(HP) at 1750 ℃ in N_2 atmosphere with ZrO_2–Y_2O_3 as sintering additive. X-ray diffraction was applied to analyze the phase composition of the as-prepared ceramics to study the high temperature phase relation in ZrN –ZrO_2–Y_2O_3 ternary system and establish ZrN –ZrO_2–Y_2O_3 ternary phase diagrams. The results show that ZrN and tetragonal ZrO_2(t-ZrO_2) solid solution, face-centered cubic ZrO_2(c-ZrO_2) solid solution, body-centered cubic Y_2O_3(c-Y_2O_3) solid solution coexist in the system of ZrN –ZrO_2–Y_2O_3. | Youjun LU Zhenxia YUAN Hongfang SHEN Xiaochen HUAI Zhenkun HUANG | 2018 | Journal of Advanced Ceramics2018,7,4: | 1 |