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5篇 您的检索式:作者名="Fengmin Chang"
    题名 作者 年代 出处 被引量
1L1/2 Regularization: A Thresholding Representation Theory and a Fast Solver 显示文摘XU Zongben CHANG Xiangyu XU Fengmin 2012IEEE Trans Neural Network and Learning Systems2012,23,7:1
2L-1/2 Regularization: a Thresholding Representation Theory and a Fast Solver 显示文摘Xu Zongben Chang Xiangyu Xu Fengmin 2012IEEE Transactions on Neural Networks and Learning Systems2012,23,7:1
3L-l/2 Regularization: A thresholding representation theory and a fast solver 显示文摘XU ZONGBE CHANG X1ANGYU XU FENGMINe 2012IEEE Transactions on neural net-works and learning systems2012,23,7:1
4Biofuel Recovery from Plantain and Banana Plant Wastes:Integration of Biochemical and Thermochemical Approach显示文摘Globally,fossil fuel dependence has created several environmental challenges and climate change.Hence,creating other alternative renewable and ecologically friendly bio-energy sources is necessary.Lignocellulosic biomass has gained significant attention recently as a renewable material for biofuel production.The large amounts of plantain and banana plant parts wasted after harvesting,as well as the peels generated daily by the fruit market and industries,demonstrate the potential of bioenergy resources.This review briefly assesses plantain and banana plant biomass(PBB)generated in the developing,developed,and underdeveloped countries,the consumable parts,and feasible products yield.It emphasized the advantages and disadvantages of the commonly adopted treatment technologies of composting,incineration,and landfilling.Further,the utilization of PBB as catalysts in biodiesel synthesis was briefly highlighted.To optimize recovery of biofuel,different integration routes of pyrolysis,anaerobic digestion,fermentation,hydrothermal carbonization,hydrothermal liquefaction,and hydrothermal gasification for the valorization of the PBB were proposed.The complex compounds present in the PBB(hemicellulose,cellulose,and lignin)can be converted into valuable bio-products such as methane gas and bio-ethanol for bioenergy,and nutrients to promote bioactive ingredients.The investigation of the viability and innovation potential of the integrated routes’technology is necessary to improve the circular bio-economy and the recovery of biofuels from biomass waste,particularly PBB.Abdulmoseen Segun Giwa Mingqiang Sheng Ndungutse Jean Maurice Xinxin Liu Zelong Wang Fengmin Chang Bo Huang Kaijun Wang 2023Journal of Renewable Materials2023,11,6:0
5Enhanced triallyl isocyanurate(TAIC)degradation through application of an 03/UV process:Performance optimization and degradation pathways显示文摘Triallyl isocyanurate(TAIC,C12H15N3O3)has featured in wastewater treatment as a refractory organic compound due to the significant production capability and negative environmental impact.TAIC degradation was enhanced when an ozone(O3)/ultraviolet(UV)process was applied compared with the application of an independent O3 process.Although 99%of TAIC could be degraded in 5 min during both processes,the O3/UV process had a 70%mineralization rate that was much higher than that of the independent O3 process(9%)in 30 min.Four possible degradation pathways were proposed based on the organic compounds of intermediate products identified during TAIC degradation through the application of independent 03 and O3/UV processes.pH impacted both the direct and indirect oxidation processes.Acidic and alkaline conditions preferred direct and indirect reactions respectively,with a pH of 9 achieving maximum Total Organic Carbon(TOC)removal.Both CO32-and HCO3-decreased TOC removal,however only CO32-negatively impacted TAIC degradation.Effects of Cl-as a radical scavenger became more marked only at high concentrations(over 500 mg/L Cl-).Particulate and suspended matter could hinder the transmission of ultraviolet light and reduce the production of HO·accordingly.Yapeng Song Hui Gong Jianbing Wang Fengmin Chang Kaijun Wang 2020Frontiers of Environmental Science & Engineering2020,14,4:0
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