[1] LIU H, JIANG G, ZHUANG H, et al.Distribution, utilization structure and potential of biomass resources in rural China: With special references of crop residues[J].Renewable and Sustainable Energy Reviews,2008,12(5):1402-1418
[2] IOANNIDOU O, ZABANIOTOU A.Agricultural residues as precursors for activated carbon production:A review[J].Renewable and Sustainable Energy Reviews,2007,11(9):1966-2005
[3] KARAMAN I, YAGMUR E, BANFORD A, et al.The effect of process parameters on the carbon dioxide based production of activated carbon from lignite in a rotary reactor[J].Fuel Processing Technology,2014,118:34-41
[4] HEIDARI A, YOUNESI H, RASHIDI A, et al.Adsorptive removal of CO2 on highly microporous activated carbons prepared from Eucalyptus camaldulensis wood: Effect of chemical activation[J].Journal of the Taiwan Institute of Chemical Engineers,2014,45(2):579-588
[5] TAY T, UCAR S, KARAGOZ S.Preparation and characterization of activated carbon from waste biomass[J].Journal of Hazardous Materials,2009,165(1/2/3):481-485
[6] LUA A C, LAU F Y, GUO J.Influence of pyrolysis conditions on pore development of oil-palm-shell activated carbons[J].Journal of Analytical and Applied Pyrolysis,2006,76(1/2):96-102
[7] FU K, YUE Q, GAO B, et al.Preparation, characterization and application of lignin-based activated carbon from black liquor lignin by steam activation[J].Chemical Engineering Journal,2013,228:1074-1082
[8] ZHU K, FU H, ZHANG J, et al.Studies on removal of NH+4-N from aqueous solution by using the activated carbons derived from rice husk[J].Biomass and Bioenergy,2012,43:18-25
[9] FU P, YI W, BAI X, et al.Effect of temperature on gas composition and char structural features of pyrolyzed agricultural residues[J].Bioresource Technology,2011,102(17):8211-8219
[10] LEBRECH Y, JIA L, CISS S, et al.Mechanisms of biomass pyrolysis studied by combining a fixed bed reactor with advanced gas analysis[J].Journal of Analytical and Applied Pyrolysis,2016,117:334-346
[11] IOANNIDOU O, ZABANIOTOU A, ANTONAKOU E V, et al.Investigating the potential for energy, fuel, materials and chemicals production from corn residues (cobs and stalks) by non-catalytic and catalytic pyrolysis in two reactor configurations[J].Renewable and Sustainable Energy Reviews,2009,13(4):750-762
[12] PARK J, LEE Y, RYU C, et al.Slow pyrolysis of rice straw: analysis of products properties, carbon and energy yields[J].Bioresource Technology,2014,155:63-70
[13] JUSOH A, HARTINI W J H, ALI N A, et al.Study on the removal of pesticide in agricultural run off by granular activated carbon[J].Bioresource Technology,2011,102(9):5312-5318
[14] HAMEED B H, SALMAN J M, AHMAD A L.Adsorption isotherm and kinetic modeling of 2,4-D pesticide on activated carbon derived from date stones[J].Journal of Hazardous Materials,2009,163(1):121-126
[15] NJOKU V O, ISLAM M A, ASIF M, et al.Utilization of sky fruit husk agricultural waste to produce high quality activated carbon for the herbicide bentazon adsorption[J].Chemical Engineering Journal,2014,251:183-191
[16] VUKˇEVI' M M, KALIJADIS A M, VASILJEVI' T M, et al.Production of activated carbon derived from waste hemp (Cannabis sativa) fibers and its performance in pesticide adsorption[J].Microporous and Mesoporous Materials,2015,214:156-165
[17] VITHANAGE M, MAYAKADUWA S S, HERATH I, et al.Kinetics, thermodynamics and mechanistic studies of carbofuran removal using biochars from tea waste and rice husks[J].Chemosphere,2016,150:781-789
[18] MEGHARAJ M, VENKATESWARLU K, NAIDU R.Effects of carbaryl and 1-naphthol on soil population of cyanobacteria and microalgae and select cultures of diazotrophic cyanobacteria[J].Bulletin of Environmental Contamination and Toxicology,2011,87(3):324-329
[19] LIU H, GAO Q, DAI P, et al.Preparation and characterization of activated carbon from lotus stalk with guanidine phosphate activation: Sorption of Cd(Ⅱ)[J].Journal of Analytical and Applied Pyrolysis,2013,102:7-15
[20] ZHANG P, SUN H, YU L, et al.Adsorption and catalytic hydrolysis of carbaryl and atrazine on pig manure-derived biochars: Impact of structural properties of biochars[J].Journal of Hazardous Materials,2013,244-245:217-224
[21] KEARNS J P, WELLBORN L S, SUMMERS R S, et al.2,4-D adsorption to biochars: Effect of preparation conditions on equilibrium adsorption capacity and comparison with commercial activated carbon literature data[J].Water Research,2014,62:20-28
[22] SAN M G, FOWLER G D, SOLLARS C J.A study of the characteristics of activated carbons produced by steam and carbon dioxide activation of waste tyre rubber[J].Carbon,2003,41(5):1009-1016
[23] IOANNIDOU O A, ZABANIOTOU A A, STAVROPOULOS G G, et al.Preparation of activated carbons from agricultural residues for pesticide adsorption[J].Chemosphere,2010,80(11):1328-1336
[24] 马锋锋,赵保卫.不同热解温度制备的玉米芯生物炭对对硝基苯酚的吸附作用[J].环境科学,2017,38(2):837-844
[25] 郎印海,刘伟,王慧.生物炭对水中五氯酚的吸附性能研究[J].中国环境科学,2014,34(8):2017-2023
[26] MIAO Q, TANG Y, XU J, et al.Activated carbon prepared from soybean straw for phenol adsorption[J].Journal of the Taiwan Institute of Chemical Engineers,2013,44(3):458-465
[27] SALMAN J M, HAMEED B H.Removal of insecticide carbofuran from aqueous solutions by banana stalks activated carbon[J].Journal of Hazardous Materials,2010,176(1/2/3):814-819
[28] SALMAN J M, HAMEED B H.Adsorption of 2,4-dichlorophenoxyacetic acid and carbofuran pesticides onto granular activated carbon[J].Desalination,2010,256(1/2/3):129-135