[1] 张强,邢智炜,刘欢,等.不同深度脱水污泥的热解特性及动力学分析[J]. 环境化学,2013,32(5):839-846. ZHANG Q,XING Z W,LIU H,et al. Pyrolysis characteristic and kinetic analysis of different deep dewatered sludges[J]. Environmental Chemistry,2013,32(5): 839-846(in Chinese).
[2] 胡艳军,宁方勇,钟英杰,等.城市污水污泥热解特性及动力学规律研究[J]. 热能动力工程,2012,27(2):253-258. HU Y J,NING F Y,ZHONG Y J,et al. Study of the pyrolytic characeristics of and the dynamic law governing municipal sewage water and sludge[J]. Journal of Engineering for Thermal Energy & Power,2012,27(2): 253-258(in Chinese).
[3] 刘文铁,王淑彦,陆慧林,等.污泥的热解动力学及机理研究[J].热能动力工程,2006,21(5):529-531. LIU W T,WANG S Y,LU H L,et al. An investigation of sludge pyrolytic dynamics and its mechanism[J]. Journal of Engineering for Thermal Energy & Power, 2006,21(5): 529-531(in Chinese).
[4] 彭海军,李志光,夏兴良,等. 污泥热解残渣催化市政破膜污泥的热解作用[J]. 环境化学,2014,33(3):508-514. PENG H J,LI Z G,XIA X L,et al. Catalysis of sludge residual carbon to municipal disintegration-membrance sludge pyrolysis[J]. Environmental Chemistry,2014,33(3): 508-514(in Chinese).
[5] ZHANG H,YANG J K,YU W B,et al. Mechanism of red mud combined with Fenton's reagent in sewage sludge conditioning[J]. Water Research,2014. 59: 239-247.
[6] VYAZOVKIN S,BURNHAM A K,CRIADO J M,et al. ICTAC Kinetics Committee recommendations for performing kinetic computations on thermal analysis data[J]. Thermochimica Acta,2011. 520(1-2): 1-19.
[7] STARINK M J. The determination of activation energy from linear heating rateexperiments: A comparison of the accuracy of isoconversion methods[J].Thermochimica Acta,2003.404(1-2): 163-176.
[8] SCOTT S A,DENNIS J S,DAVIDSON J F,et al. An algorithm for determining the kinetics of devolatilisation of complex solid fuels from thermogravimetric experiments[J]. Chemical Engineering Science,2006,61(8): 2339-2348.
[9] HU M,CHEN Z H,GUO D B,et al. Thermogravimetric study on pyrolysis kinetics of Chlorella pyrenoidosa and bloom-forming cyanobacteria[J]. Bioresource Technology,2015,177: 41-50.
[10] CAO H L,XIN Y,WANG D L,et al. Pyrolysis characteristics of cattle manures using a discrete distributed activation energy model[J]. Bioresource Technology,2014,172: 219-225.
[11] HU Z Q,CHEN Z H,LI G B,et al. Characteristics and kinetic studies of Hydrilla verticillata pyrolysis via thermogravimetric analysis[J]. Bioresource Technology,2015,194: 364-372.
[12] ZHANG Q,LIU H,LIU P,et al. Pyrolysis characteristics and kinetic analysis of different dewatered sludge[J]. Bioresource Technology,2014,170: 325-330.