[1] 张璐, 张文菊, 徐明岗, 等.长期施肥对中国3种典型农田土壤活性有机碳库变化的影响[J].中国农业科学, 2009, 42(5):1646-1655.

ZHANG Lu, ZHANG Wenju, XU Minggang, et al. Effects of long-term fertilization on change of labile organic carbon in three typical upland soils of China[J]. Sci Agric Sin, 2009, 42(5):1645-1655.
[2] COULTER J A, NAFZIGER E D, WANDER M M. Soil organic matter response to cropping system and nitrogen fertilization[J]. Agron J, 2009, 101(3):592-599.
[3] 赵广帅, 李发东, 李运生, 等.长期施肥对土壤有机质积累的影响[J].生态环境学报, 2012, 21(5):840-847.

ZHAO Guangshuai, LI Fadong, LI Yunsheng, et al. Effects of long-term fertilization on soil organic matter accumulation[J]. Ecol Environ Sci, 2012, 21(5):840-847.
[4] 邵兴华, 徐金仁, 张建忠, 等.长期施肥对旱地红壤肥力和酶活性的影响[J].生态环境学报, 2011, 20(2):266-269.

SHAO Xinghua, XU Jinren, ZHANG Jianzhong, et al. Effects of long-term fertilizer on soil fertility and soil enzyme activities in upland red soils[J]. Ecol Environ Sci, 2011, 20(2):266-269.
[5] LAL R, KIMBLE J M. Conservation tillage for carbon sequestration[J]. Nutr Cycl Agroecosys, 1997, 49(1/3):243-253.
[6] 黄东迈, 朱培立, 王志明, 等.旱地和水田有机碳分解速率的探讨与质疑[J].土壤学报, 1998, 35(4):482-492.

HUANG Dongmai, ZHU Peili, WANG Zhiming, et al. A study and question on the decomposition rate of organic carbon under upland and submerged soil conditions[J]. Acta Pedol Sin, 1998, 35(4):482-492.
[7] LIANG Biqing, LEHMANN J, SOLOMON D, et al. Stability of biomass derived black carbon in soils[J]. Geochimi Cosmochim Acta, 2008, 72(24):6069-6078.
[8] SKJEMSTAD J O, CLARKE P, TAYLOR J A, et al. The chemistry and nature of protected carbon in soil[J]. Aust J Soil Res, 1996, 34(2):251-271.
[9] WU Qinglan, BLUME H-P, BEYER L, et al. Method for characterization of inert organic carbon in Urbic Anthrosols[J]. Communic Soil Sci Plant Anal, 1999, 30(9/10):1497-1506.
[10] 刘兆云, 章明奎.林地土壤中黑碳的出现及分布特点[J].浙江林学院学报, 2009, 26(3):341-345.

LIU Zhaoyun, ZHANG Mingkui. Black carbon occurrence and distribution in forest soils in Zhejiang Province, China[J]. J Zhejiang For Coll, 2009, 26(3):341-345.
[11] 杨基峰, 应光国, 赵建亮, 等.黑碳对污染物环境地球化学过程的影响[J].生态环境, 2008, 17(4):1685-1689.

YANG Jifeng, YING Guangguo, ZHAO Jianliang, et al. Advance in research on the influence of black carbon on the environmental geochemistry processes of environmental contaminants[J]. Ecol Environ, 2008, 17(4):1685-1689.
[12] GHOSH U, ZIMMERMAN J R, LUTHY R G. PCB and PAH speciation among particle types in contaminated harbor sediments and effects on PAH bioavailability[J]. Environ Sci & Technol, 2003, 37(10):2209-2217.
[13] YANG Z, SINGH B R, SITAULA B K. Fractions of organic carbon in soils under different crop rotations, cover crops and fertilization practices[J]. Nut Cycl Agroecosys, 2004, 70(2):161-166.
[14] 鲁如坤.土壤农业化学分析方法[M].北京:中国农业科技出版社, 1999.
[15] 刘兆云, 章明奎.浙江省几种人为土壤中黑碳的含量[J].浙江大学学报:农业与生命科学版, 2010, 36(5):542-546.

LIU Zhaoyun, ZHANG Mingkui. Contents of black carbon in some anthrosols from Zhejiang Province[J]. J Zhejiang Univ Agric & Life Sci, 2010, 36(5):542-546.
[16] HALVORSON A D, REULE C A, FOLLETT R F. Nitrogen fertilization effects on soil carbon nitrogen in dryland cropping system[J]. Soil Sci Soc Am J, 1999, 63(4):912-917.
[17] 李新爱, 童成立, 蒋平, 等.长期不同施肥对稻田土壤有机质和全氮的影响[J].土壤, 2006, 38(3):298-303.

LI Xin'ai, TONG Chengli, JIANG Ping, et al. Effects of long-term fertilization on soil organic matter and total nitrogen in paddy soil[J]. Soils, 2006, 38(3):298-303.
[18] 李忠佩, 张桃林, 陈碧云, 等.红壤稻田土壤有机质的积累过程特征分析[J].土壤学报, 2003, 40(3):344-352.

LI Zhongpei, ZHANG Taolin, CHEN Biyun, et al. Soil organic matter dynamics in a cultivation chronosequence of paddy fields in subtropical China[J]. Acta Pedol Sin, 2003, 40(3):344-352.
[19] CAMPBELL C A, BOWREN K E, SCHNITZER M, et al. Effect of crop rotations and fertilization on soil organic matter and some biochemical properties of a thick Black Cherokee[J]. Can J Soil Sci, 1991, 71:377-387.
[20] 王嫒华, 苏以荣, 李杨, 等.稻草还田条件下水田与旱地土壤有机碳矿化特征与差异[J].土壤学报, 2011, 48(5):979-987.

WANG Aihua, SU Yirong, LI Yang, et al. Characteristics of mineralization of soil organic carbon in paddy and upland with rice straw incorporated and differences between the two[J]. Acta Pedol Sin, 2011, 48(5):979-987.
[21] KUZYAKOV Y, SUBBOTINA I, CHEN Haiqing, et al. Black carbon decomposition and incorporation into soil microbial biomass estimated by 14C labeling[J]. Soil Biol Biochem, 2009, 41(2):210-219.
[22] FORBES M S, RAISON R J, SKJEMSTAD J O. Formation, transformation and transport of black carbon (charcoal) in terrestrial and aquatic ecosystems[J]. Sci Tot Environ, 2006, 370(1):190-206.