Asai H, Samson BK, Stephan HM, Songyikhangsuthor K, Homma K, Kiyono Y, Inoue Y, Shiraiwa T, Horie T. 2009. Biochar amendment techniques for upland rice production in Northern Laos 1: soil physical properties, leaf SPAD and grain yield. Field Crops Research, 111(1/2): 81-84
[2]
Bao SD. 1998. Soil agricultural chemistry analysis. Beijing: China Agriculture Press, pp. 29-37 (in Chinese) [鲍士旦. 1998. 土壤农化分析. 北京: 中国农业出版社, pp. 29-
[3]
Brussaard L. 1997. Biodiversity and ecosystem functioning in soil.Ambio, 26: 563-570
[4]
Dong NY, Jiao YJ, Yang JX, Wang Y, Jiang SJ. 2013. Mechanism analysis of the influences on flue-cured tobacco soil health of different previous crops and exploration of soil health remediation technology. Journal of Henan Agricultural Sciences, 42(10): 46-50 (in Chinese) [董宁禹, 焦永吉, 杨建新, 王永, 蒋士君. 2013. 不同前作对烤烟土壤健康状况的影响. 河南农业科学, 42(10): 46-
[5]
Glaser B, Haumaier L, Guggenberger G, Zech W. 2001. The‘Terra Preta’ phenomenon: a model for sustainable agriculture in the humid tropics. Naturwissenschaften, 88(1): 37-41
[6]
Guan SY. 1986. Soil enzyme and its study method. Beijing: China Agriculture Press, pp. 274-294 (in Chinese) [关松荫. 1986. 土壤酶及其研究法. 北京: 农业出版社, pp. 274-
[7]
He C, Liu GS, Li ZL, Qiao BM, Ding NY, Jiang SJ. 2011. Effect of continuous cropping on tobacco soil organic carbon, enzyme activities, and its relationship with soil-borne diseases. Journal of Henan Agricultural University, 22(3): 57-60 (in Chinese) [何川, 刘国顺, 李祖良, 乔保明, 董宁禹, 蒋士君. 2011. 连作对植烟土壤有机碳和酶活性的影响及其与土传病害的关系. 河南农业大学学报, 22(3): 57-
[8]
He JQ, Zhang GJ, Yue HM, Wu YF. 2010. Identification of the antagonistic actinomycetes strain 10-4 against tomato early blight. Journal of Plant Protection, 37(4): 307-312 (in Chinese) [何建清, 张格杰, 岳海梅, 吴云锋. 2010. 番茄早疫病菌拮抗放线菌10-4的鉴定. 植物保护学报, 37(4): 307-
[9]
Kishimoto S, Sugiura G. 1985. Charcoal as a soil conditioner.//Symposium on forest products research, international-achievements and the future. Pretoria, South Africa: CSIR Conference Centre, 5: 12-23
[10]
Li KF, Yuan F. 2003. Occurrence regularity and control techniques of wheat root-rot. Journal of Henan Agricultural Sciences, (5): 58-59 (in Chinese) [李可凡, 袁方. 2003. 小麦根腐病的发生规律及防治技术. 河南农业科学, (5): 58-
[11]
Liang CQ. 2009. Research on the microbial soil additives with both decomposition of maize straw and controlling wheat soil-borne diseases. Master Thesis. Baoding: Agricultural University of Hebei, pp. 31 (in Chinese) [梁春启. 2009. 兼具分解玉米秸秆和防治小麦土传病害作用的微生物土壤添加剂研究. 硕士毕业论文. 保定: 河北农业大学, pp.
[12]
Microbiology Laboratory of Institute of Soil Science of Nanjing Branch of Chinese Academy of Sciences. 1985. Studies on soil microorganism. Nanjing: Science Press, pp. 54-57 (in Chinese) [中国科学院南京土壤研究所微生物室. 1985. 土壤微生物研究法. 南京: 科学出版社, pp. 54-
[13]
Oguntunde PG, Abiodun BJ, Ajayi AE, van de Giesen N. 2008. Effects of charcoal production on soil physical properties in Ghana. Journal of Plant Nutrition and Soil Science, 171(4): 591-596
[14]
Steiner C, Das KC, Garcia M, F?rster B, Zech W. 2008a. Charcoal and smoke extract stimulate the soil microbial community in a highly weathered xanthic Ferralsol. Pedobiologia, 51(5/6): 359-366
[15]
Steiner C, Glaser B, Teixeira WG, Lehmann J, Blum WEH, Zech W. 2008b. Nitrogen retention and plant uptake on a highly weathered central Amazonian Ferralsol amended with compost and charcoal. Journal of Plant Nutrition and Soil Science, 171(6): 893-899
[16]
Steiner C, Teixeira WG, Lehmann J, Nehls T, de Macêdo JLV, Blum WEH, Zech W. 2007. Long term effects of manure, charcoal and mineral fertilization on crop production and fertility on a highly weathered Central Amazonian upland soil. Plant and Soil, 291(1/2): 275-290
[17]
Sun XC, An DR, Li AR, Liu CJ. 2005. Effect of the metabolite of antifungal soil actinomycete s-930-6 strain. Journal of Plant Protection, 32(1): 33-36 (in Chinese) [孙现超, 安德荣, 李爱荣, 刘翠娟. 2005. 土壤拮抗放线菌s-930-6菌株活性产物抑菌作用. 植物保护学报, 32(1): 33-
[18]
van Bruggen AHC. 1995. Plant severity in high-input compared to reduced-input and organic farming systems. Plant Disease, 79(10): 976-984
[19]
van Bruggen AHC, Semenov AM. 2000. In search of biological indicators for soil health and diseases suppression. Applied Soil Ecology, 15(1): 13-24
[20]
van Zwieten L, Kimber S, Morris S, Chan KY, Downie A, Rust J, Joseph S, Cowie A. 2010. Effects of biochar from slow pyrolysis of papermill waste on agronomic performance and soil fertility. Plant and Soil, 327(1/2): 235-246
[21]
更多...
[22]
Wang LY, Liu GS, Wang LH, Zhang KX, Liu HE, Ding SS, Jia FF. 2014. Effects of biochar on dry matter accumulation of flue-cured tobacco and physical and chemical property of rhizosphere soil. Acta Agriculturae Boreali-Sinica, 29(1): 140-144 (in Chinese) [王丽渊, 刘国顺, 王林虹, 张康旭, 刘红恩, 丁松爽, 贾方方. 2014. 生物质炭对烤烟干物质积累量及根际土壤理化性质的影响. 华北农学报, 29(1): 140-
[23]
Welbaum GE, Sturz AV, Dong ZM, Nowak J. 2004. Managing soil microorganisms to improve productivity of agro-ecosystems. Critical Reviews in Plant Sciences, 23(2): 175-193
[24]
Workneh F, van Bruggen AHC. 1994. Microbial density, composition and diversity in organically and conventionally managed rhizosphere soil in relation to suppression of corky root of tomato. Applied Soil Ecology, 1(3): 219-230
[25]
Xu Q, Rui WY, Liu JL, Liu Z, Yang L, Yin YJ, Zhang WJ. 2006. Spatial variation of coupling characteristics of soil carbon and nitrogen in farmland of China. Journal of Ecology and Rural Environment, 22(3): 57-60 (in Chinese) [许泉, 芮雯奕, 刘家龙, 刘智, 杨玲, 尹宇静, 张卫健. 2006. 我国农田土壤碳氮耦合特征的区域差异. 生态与农村环境学报, 22(3): 57-