MA Q, SONG W, WANG R, et al. Physicochemical properties of biochar derived from anaerobically digested dairy manure[J]. Waste Management, 2018, 79:729-734.
MOHAN D, SARSWAT A, OK Y S, et al. Organic and inorganic contaminants removal from water with biochar, a renewable, low cost and sustainable adsorbent-a critical review[J]. Bioresource Technology, 2014, 160:191-202.
QIAN K, KUMAR A, ZHANG H, et al. Recent advances in utilization of biochar[J]. Renewable and Sustainable Energy Reviews, 2015, 42:1055-1064.
GLASER B, HAUMAIER L, GUGGENBERGER G, et al. The ‘Terra Preta’ phenomenon:A model for sustainable agriculture in the humid tropics[J]. Naturwissenschaften, 2001, 88(1):37-41.
HARDIE M, CLOTHIER B, BOUND S, et al. Does biochar influence soil physical properties and soil water availability?[J]. Plant and Soil, 2014, 376(1-2):347-361.
何云勇, 李心清, 杨放, 等. 裂解温度对新疆棉秆生物炭物理化学性质的影响[J]. 地球与环境, 2016, 44(1):19-24. HE Y Y, LI X Q, YANG F, et al. Effect of pyrolysis temperature on physicochemical properties of Xinjiang cotton stalk biochar[J]. Earth and the Environment, 2016, 44(1):19-24(in Chinese).
王丹丹, 郑纪勇, 颜永毫, 等. 生物炭对宁南山区土壤持水性能影响的定位研究[J]. 水土保持学报, 2013, 27(2):101-104 , 109. WANG D D, ZHENG J Y, YAN Y H, et al. Localization study on effect of biochar on soil water holding capacity in southern Ningxia region[J]. Journal of Soil and Water Conservation, 2013, 27(2):101-104, 109(in Chinese).
GLASER B, LEHMANN J, ZECH W. Ameliorating physical and chemical properties of highly weathered soils in the tropics with charcoal-A review[J]. Biology and Fertility of Soils, 2002, 35:219-230.
JEFFERY S, VERHEIJEN FG, VAN DER VELDE M, et.al. A quantitative review of theeffects of biochar application to soils on crop productivity using meta-analysis[J]. Agriculture, Ecosystems & Environment, 2011, 144(1):175-187.
CHAN K Y, VAN ZWIETEN L, MESZAROS I, et al. Agronomic values of greenwaste biochar as a soil amendment[J]. Soil Research, 2008, 45(8):629-634.
CHEN W H, LIN B J, COLIN B, et al. Hygroscopic transformation of woody biomass torrefaction for carbon storage[J]. Applied Energy, 2018, 231:768-776.
赵力, 陈建, 李浩, 等. 裂解温度和酸处理对生物炭中持久性自由基产生的影响[J]. 环境化学, 2017, 36(11):2472-2478. ZHAO L, CHEN J, LI H, et al. Effects of pyrolysis temperature and acid treatment on the generation of free radicals in biochars[J]. Environmental Chemistry, 2017, 36(11):2472-2478(in Chinese).
CHENG C H, LEHMANN J, ENGELHARD M H. Natural oxidation of black carbon in soils:Changes in molecular form and surface charge along a climosequence[J]. Geoehimicaet Cosmochimica Acta, 2008, 72:1598-1610.
林珈羽, 童仕唐. 生物炭的制备及其性能研究[J]. 环境科学与技术, 2015, 38(12):54-58. LIN J Y, TONG S T. Preparation and properties of biochar[J]. Environmental Science and Technology, 2015, 38(12):54-58(in Chinese).
吴伟祥, 孙雪, 董达, 等. 生物质炭土壤环境效应[M]. 北京:科学出版社, 2015. WU W X, SUN X, DONG D, et al. Environmental effects of biochar in soil[M]. Beijing:Science Press, 2015(in Chinese).
常西亮, 胡雪菲, 蒋煜峰, 等. 不同温度下小麦秸秆生物炭的制备及表征[J]. 环境科学与技术, 2017, 40(4):24-29. CHANG X L, HU X F, JIANG Y F, et al. Preparation and characterization of wheat straw biochar at different temperatures[J]. Environmental Science and Technology, 2017, 40(4):24-29(in Chinese).
PETERSON S C, APPELL M, JACKSON M A, et al. Comparing corn stover and switchgrass biochar:Characterization and sorption properties[J]. Journal of Agricultural Science, 2013, 5(1):1-8.
CHEN H, LIN G, WANG X, et al. Physicochemical properties and hygroscopicity of tobacco stem biochar pyrolyzed at different temperatures[J]. Journal of Renewable and Sustainable Energy, 2016, 8(1):013112.
韦思业. 不同生物质原料和制备温度对生物炭物理化学特征的影响[D]. 广州:中国科学院大学, 2017. WEI S Y. Effects of different biomass raw materials and preparation temperature on physicochemical characteristics of biochar[D]. Guangzhou:University of Chinese Academy of Sciences (Guangzhou Institute of Geochemistry, Chinese Academy of Sciences), 2017(in Chinese).
SHARMA R K, WOOTEN J B, BALIGA V L, et al. Characterization of chars from pyrolysis of lignin[J]. Fuel, 2004, 83(11-12):1469-1482.
许冬倩. 玉米秸秆生物炭制备及结构特性分析[J]. 广西植物, 2018, 38(9):1125-1135. XU D Q. Preparation and structural characteristics of corn straw biochar[J]. Guangxi Plants, 2018, 38(9):1125-1135(in Chinese).
付鹏. 生物质热解气化气相产物释放特性和焦结构演化行为研究.[D]. 武汉:华中科技大学, 2010. FU P. Study on the release characteristics of gaseous products from biomass pyrolysis and the evolution of coke structure[D]. Wuhan:Huazhong University of Science and Technology, 2010(in Chinese).
林庆毅, 姜存仓, 张梦阳. 生物炭老化后理化性质及微观结构的表征[J]. 环境化学, 2017, 36(10):2107-2114. LIN Z Y, JIANG C C, ZHANG M Y. Characterization of physical and chemical properties and microstructure of biochar after aging[J]. Environmental Chemistry, 2017, 36(10):2107-2114(in Chinese).
DILEK A, SEVGI Ş. Effect of pyrolysis temperature on chemical and surface properties of biochar of rapeseed (Brassica napus L.)[J]. International Journal of Phytoremediation, 2014, 16(7-8):684-693.
MARCO K, PETER S N, MARK G J. Dynamic molecular structure of plant biomass-derived black carbon (biochar)[J]. Environmental Science & Technology, 2010, 44(4):1247-1253.
戴静, 刘阳生. 生物炭的性质及其在土壤环境中应用的研究进展[J]. 土壤通报, 2013, 44(6):1520-1525. DAI J, LIU Y S. Research progress on the properties of biochar and its application in soil environment[J]. Soil Bulletin, 2013, 44(6):1520-1525(in Chinese).
SONG X, XUE X, CHEN D, et al. Application of biochar from sewage sludge to plant cultivation:Influence of pyrolysis temperature and biochar-to-soil ratio on yield and heavy metal accumulation[J]. Chemosphere, 2014,109:213-220.
林珈羽, 张越, 刘沅, 等. 不同原料和炭化温度下制备的生物炭结构及性质[J]. 环境工程学报, 2016, 10(6):3200-3206. LIN J Y, ZHANG Y, LIU W, et al. The structure and properties of biochar prepared at different raw materials and carbonization temperature[J]. Journal of Environmental Engineering, 2016, 10(6):3200-3206(in Chinese).
张向前, 侯国军, 张玉虎, 等. 不同产地水稻秸秆制备生物炭结构特征及其理化性质[J]. 环境工程, 2017, 35(9):122-126. ZHANG X Q, HOU G J, ZHANG Y H, et al. Structural characteristics and physicochemical properties of biochar prepared from rice straw from different habitats[J]. Environmental Engineering, 2017, 35(9):122-126(in Chinese).
郑浩. 芦竹生物炭对农业土壤环境的影响[D]. 青岛:中国海洋大学, 2013. ZHENG H. Effect of biochar on agricultural soil environment[D]. Qingdao:Ocean University of China, 2013(in Chinese).
肖欣. 生物炭的多级结构特征、构效关系及其吸附作用研究[D]. 杭州:浙江大学, 2018. XIAO X. Study on multistage structure, structure-activity relationship and adsorption of biochar[D]. Hangzhou:Zhejiang University, 2018(in Chinese).
余峻峰, 陈培荣, 俞志敏,等. KOH活化木屑生物炭制备活性炭及其表征[J]. 应用化学, 2013, 30(9):1017-1022. YU J F, CHEN P R, YU Z M, et al. Preparation and characterization of activated carbon from KOH activated biochar from sawdust[J]. Applied Chemistry, 2013, 30(9):1017-1022(in Chinese).
林肖庆, 吕豪豪, 刘玉学, 等. 生物质原料及炭化温度对生物炭产率与性质的影响[J]. 浙江农业学报, 2016, 28(7):1216-1223. LIN X Q, LV H H, LIU Y X, et al. Effects of biomass raw materials and carbonization temperature on the yield and properties of biochar[J]. Zhejiang Agricultural Journal, 2016, 28(7):1216-1223(in Chinese).
STEFANIE K, FRANZ Z, ALEX D, et al. Characterization of slow pyrolysis biochars:Effects of feedstocks and pyrolysis temperature on biochar properties[J]. Environ Qual, 2012, 41(4):990-1000.
WANG S, GAO B, ZIMMERMAN A R, et al. Physicochemical and sorptive properties of biochars derived from woody and herbaceous biomass[J]. Chemosphere, 2015, 134:257-262.
简敏菲, 高凯芳, 余厚平. 不同裂解温度对水稻秸秆制备生物炭及其特性的影响[J]. 环境科学学报, 2016, 36(5):1757-1765. JIAN M F, GAO K F, YU H P. Effects of different pyrolysis temperatures on biochar preparation from rice straw[J]. Journal of Environmental Science, 2016, 36(5):1757-1765(in Chinese).
HOSSAIN M K, STREZOV V, CHAN K Y, et al. Influence of pyrolysis temperature on production and nutrient properties of wastewater sludge biochar[J]. Journal of Environmental Management, 2011, 92(1):223-228.
饶潇潇, 方昭, 王建超, 等. 花生壳生物炭的制备、表征及其吸附性能[J]. 环境科学与技术, 2017, 40(6):14-18. RAO X X, FANG Z, WANG J C, et al. Preparation, characterization and adsorption of peanut shell biochar[J]. Environmental Science and Technology, 2017, 40(6):14-18(in Chinese).
BRIGGS C, GRAHAM R C, BREINER J M. Physical and chemical properties of pnus ponderosa charcoal:Implications for soil modification[J]. Soil Science, 2012, 177(4):263-268.