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| 1 | Effect of Different Acclimation Methods on the Performance of Microbial Fuel Cells Using Phenol as Substrate 显示文摘 | Song Tianshun Wu Xiayuan Zhou Charles C | 2014 | Bio- process Biosystems Eng2014,37,2: | 1 |
| 2 | Upgrading CO_(2) into acetate on Bi_(2)O_(3)@carbon felt integrated electrode via coupling electrocatalysis with microbial synthesis显示文摘Upgrading of atmospheric CO_(2) into high-value-added acetate using renewable electricity via electrocatalysis solely remains a great challenge.Here,inspired by microbial synthesis via biocatalysts,we present a coupled system to produce acetate from CO_(2) by bridging inorganic electrocatalysis with microbial synthesis through formate intermediates.A 3D Bi_(2)O_(3)@CF integrated electrode with an ice-sugar gourd shape was fabricated via a straightforward hydrothermal synthesis strategy,wherein Bi_(2)O_(3) microspheres were decorated on carbon fibers.This ice-sugar gourd-shaped architecture endows electrodes with multiple structural advantages,including synergistic contribution,high mass transport capability,high structural stability,and large surface area.Consequently,the resultant Bi_(2)O_(3)@CF exhibited a maximum Faradic efficiency of 92.4%at−1.23 V versus Ag/AgCl for formate generation in 0.5 M KHCO_(3),exceeding that of Bi_(2)O_(3)/CF prepared using a conventional electrode preparation strategy.Benefiting from the high formate selectivity,unique architecture,and good biocompatibility,the Bi_(2)O_(3)@CF electrode attached with enriched CO_(2)-fixing electroautotrophs served as a biocathode.As a result,a considerable acetate yield rate of 0.269±0.009 g L^(−1) day^(−1)(a total acetate yield of 3.77±0.12 g L^(−1) during 14-day operation)was achieved in the electrochemical–microbial system equipped with Bi_(2)O_(3)@CF. | Xiaojing Liu Kang Zhang Yidan Sun Shukang Zhang Zhenyu Qiu Tianshun Song Jingjing Xie Yuping Wu Yuhui Chen | 2023 | SusMat2023,3,2: | 1 |
| 3 | Rapid Detection and Quantification by GC–MS of Camellia Seed Oil Adulterated with Soybean Oil显示文摘 | Jia Xie Tianshun Liu Yingxin Yu Guoxin Song Yaoming Hu | 2013 | Journal of the American Oil Chemists’ Society2013,,5: | 1 |
| 4 | Electricity generation from terephthalic acid using a microbial fuel cell显示文摘 | Song Tianshun Xu Yuan Ye Yejie | 2009 | Chemical Technology and Biotechnology2009,84,3: | 1 |
| 5 | Simultaneous A- nalysis of Organophosphorus Pesticides in Water by Mag- netic Solid-Phase Extraction Coupled with GC - MS 显示文摘 | Jia Xie Tianshun Liu Guoxin Song | 2013 | Chromatogr2013,76,9: | 1 |
| 6 | Removal of Hg2 + as an electron acceptor coupled with power generation using a microbial fuel cell显示文摘 | Song Tianshun Yan Zaisheng Zhao Zhi-wei | 2011 | Bioresource Technology2011,12,10: | 1 |
| 7 | Residue of Organphosphorus Pesticides in Chewing Cane Juices Detected by QuEChERS and GC-NPD Method显示文摘[Objective] The paper was to establish a quick detection method for residue of organphosphorus pesticides in chewing cane juices and provide guarantee for edible safety of chewing juice.[Method] By using QuEChERS and GC-NPD method,a rapid analysis method for residue of six kinds of organphosphorus pesticides( dichlorvos,chlorpyrifos-methyl,malathion,fenthion,chlorpyrifos and triazophos) in sugarcane juices was established.[Result] QuEChERS method was significantly superior to traditional extraction method and could extract six kinds of organphosphorus pesticides from chewing cane juices effectively,which greatly saved organic reagent and time.Good linearity was found in different standard curves;when the concentration of pesticides was from 0.020 to 0.100 mg/L,the recovery rate was from 68.58% to 92.85%,and relative standard deviation( RSD) was ranged from 2.16% to 9.89%.[Conclusion] The sensitivity,accuracy and precision of QuEChERS method were consistent with the technical requirements of pesticide residue determination.It not only could shorten sample processing cycle effectively,but also ensure that no impurity was in the sample peak and the recovery rate was also consistent with the requirements of residual analysis. | Fan Yegeng Liao Jie Liang Jun Mo Leixing Wang Tianshun Ya Yu Liang Qiang Li Song | 2013 | Plant Diseases and Pests2013,4,4: | 1 |
| 8 | Removal of organic matter in freshwater sediment by microbial fuel cells at various external resistances显示文摘 | Song Tianshun Yan Zansheng Zhao Zhiwei | 2010 | Chemical Technology and Biotechnology2010,85,11: | 1 |
| 9 | Rapid Detection and Quantification by GC–MS of Camellia Seed Oil Adulterated with Soybean Oil显示文摘 | Jia Xie Tianshun Liu Yingxin Yu Guoxin Song Yaoming Hu | 2013 | Journal of the American Oil Chemists’ Society2013,,5: | 1 |
| 10 | Simultaneous Analysis of Organophosphorus Pesticides in Water by Magnetic Solid-Phase Extraction Coupled with GC–MS显示文摘 | Jia Xie Tianshun Liu Guoxin Song Yaoming Hu Chunhui Deng | 2013 | Chromatographia2013,,9: | 1 |
| 11 | Electricity generation from terephthalic acid using a microbial fuel cell显示文摘 | Song Tianshun Xu Yuan Ye Yejie | 2009 | Journal of Chemical Technology & Biotechnology2009,84,3: | 1 |