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4篇 您的检索式:作者名="Tang Mingchen"
    题名 作者 年代 出处 被引量
1Cholelithiasis and risk of pancreatic cancer: systematic review and meta-analysis of 21 observational studies显示文摘Yuanfeng Gong Siying Li Yunqiang Tang Cong Mai Mingchen Ba Peng Jiang Hui Tang 2014Cancer Causes & Control2014,,:1
2Pyrolysis characteristics and kinetics of residue from China Shenhua industrial direct coal liquefaction plant显示文摘Xu Long Tang Mingchen Duan Lin'e 2014Thermochimica Acta2014,589,:1
3B ultrasound-guided hyperthermic intraperitoneal perfusion chemotherapyfor the treatment of malignant ascites显示文摘Shuzhong Cui Mingchen Ba Yunqiang Tang Jifang Liu Yinbing Wu Bin Wang Xiangliang Zhang Hongsheng Tang Shizhen Zhong 2012Oncology Reports2012,,4:1
4Removal of ions from produced water using Powder River Basin coal显示文摘In addition to being used as an energy source,coal also has significant potential for other,more sustainable uses including water treatment.In this study,we present a simple approach to treat water that was produced during oil production and contained a total dissolved solids(TDS)content of over 150 g/L using Powder River Basin(PRB)coal.PRB coal used as packing material in a flow-through column effectively removed 60%–80%of the cations and anions simultaneously.Additionally,71%–92%of the total organic carbon in the produced water was removed as was all of the total suspended solids.The removal mechanisms of both cations and anions were investigated.Cations were removed by ion exchange with protons from oxygen-containing functional groups such as carboxylic and phenolic hydroxyl groups.Anions,mainly Cl−1,appeared to be removed through either the formation of resonance structures as a result of delocalization of electrons within coal molecules or through ion–πinteractions.We propose that coal is a“pseudo-amphoteric”exchange material that can remove cations and anions simultaneously by exchanging ions with both ionized and non-ionized acids that are ubiquitous in coal structure or resonance effect.Zaixing Huang Fangjing Liu Mingchen Tang Yangyan Gao David MBagley Xin He Alexander Goroncy Maohong Fan 2022International Journal of Coal Science & Technology2022,9,1:0
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