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[31]jianghong.Thermochemical Behavior of Tris(2-Butoxyethyl) Phosphate (TBEP) during Co-pyrolysis with Biomass.ENVIRONMENTAL SCIENCE & TECHNOLOGY,2014,48(18):10734-10742.
[32]jianghong.Migration of Phosphorus in Sewage Sludge during Different Thermal Treatment Processes.ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2014,2(6):1411-1419.
[33]jianghong.Preparation of high adsorption performance and stable biochar granules by FeCl3-catalyzed fast pyrolysis.RSC ADVANCES,2015,6(15):12226-12234.
[34]jianghong.Improving Capacitance by Introducing Nitrogen Species and Defects into Graphene.CHEMELECTROCHEM,2015,2(6):859-866.
[35]jianghong.Comparative Investigation on Photoreactivity and Mechanism of Biogenic and Chemosythetic Ag/C3N4 Composites under Visible Light Irradiation.ACS SUSTAINABLE CHEMISTRY & ENGINEERING,2015,3(2):269-276.
[36]jianghong.Self-heating co-pyrolysis of excessive activated sludge with waste biomass: Energy balance and sludge reduction.BIORESOURCE TECHNOLOGY,2013,13316-22.
[37]jianghong.Selective hydrogenation of lignin to produce chemical commodities by using a biochar supported Ni-Mo2C catalyst obtained from biomass.GREEN CHEMISTRY,2015,18(14):4032-4041.
[38]jianghong.The thermochemical conversion of non-lignocellulosic biomass to form biochar: A review on characterizations and mechanism elucidation.BIORESOURCE TECHNOLOGY,2017,24657-68.
[39]jianghong.Achieving high-efficiency and ultrafast removal of Pb(II) by one-pot incorporation of a N-doped carbon hydrogel into FeMg layered double hydroxides.JOURNAL OF MATERIALS CHEMISTRY A,2015,4(26):10336-10344.
[40]jianghong.Improvement of phenol photodegradation efficiency by a combined g-C3N4/Fe(III)/persulfate system.CHEMOSPHERE,2016,14834-40.
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