Scientia Agricultura Sinica ›› 2018, Vol. 51 ›› Issue (16): 3117-3129.doi: 10.3864/j.issn.0578-1752.2018.16.008
• SOIL & FERTILIZER·WATER-SAVING IRRIGATION·AGROECOLOGY & ENVIRONMENT • Previous Articles Next Articles
JIANG GuiYing1, ZHANG YuJun1, WEI Xi1, ZHANG DongXu1, LIU ShiLiang1, LIU KaiLou3, HUANG ShaoMin2, SHEN FengMin1
| [1] Kong A Y Y, Six J, Bryant D C, Denison R F, Kessel C V. The relationship between carbon input, aggregation, and soil organic carbon stabilization in sustainable cropping systems. Soil Science Society of America Journal, 2005, 69(4): 1078-1085.
[2] Kundu S, Bhattacharyya R, Prakash V, Ghosh B N, Gupta H S. Carbon sequestration and relationship between carbon addition and storage under rainfed soybean-wheat rotation in a sandy loam soil of the Indian Himalayas. Soil and Tillage Research, 2007, 92(1): 87-95.
[3] Six J, Conant R T, Paul E A, Paustian K. Stabilization mechanisms of soil organic matter: Implications for C-saturation of soils. Plant and Soil, 2002, 241: 155-176.
[4] 吴景贵, 席时权, 姜岩. 红外光谱在土壤有机质研究中的应用. 光谱学与光谱分析, 1998, 18(1): 53-58.
Wu J G, Xi S Q, JIANG Y. Infrared spectroscopy application in soil organic matter. Spectroscopy and Spectral Analysis, 1998, 18(1): 53-58. (in Chinese)
[5] 张福韬, 乔云发. 红外光谱与核磁共振在土壤有机质结构研究中的应用. 安徽农业科学, 2015, 43(7): 81-84.
Zhang F T, Qiao Y F. Application of infrared spectroscopy and nuclear magnetic resonance in soil organic matter structure research. Journal of Anhui Agricultural Sciences, 2015, 43(7): 81-84. (in Chinese)
[6] 张雅洁, 陈晨, 陈曦, 常江, 章力干, 郜红建. 小麦-水稻秸秆还田对土壤有机质组成及不同形态氮含量的影响. 农业环境科学学报, 2015, 34(11): 2155-2161.
Zhang Y J, Chen C, Chen X, Chang J, Zhang L G, Gao H J. Effects of wheat and rice straw returning on soil organic matter composition and content of different nitrogen forms in soil. Journal of Agro-Environment Science, 2015, 34(11): 2155-2161. (in Chinese)
[7] 朱姝, 窦森, 陈丽珍. 秸秆深还对土壤团聚体中胡敏酸结构特征的影响. 土壤学报, 2015, 52(4): 747-758.
Zhu S, Dou S, Chen L Z. Effect of deep application of straw on composition of humic acid in soil aggregates. Acta Pedologica Sinica, 2015, 52(4): 747-758. (in Chinese)
[8] 董珊珊, 窦森, 邵满娇, 靳亚双, 李立波, 谭岑, 林琛茗. 秸秆深还不同年限对黑土腐殖质组成和胡敏酸结构特征的影响. 土壤学报, 2017, 54(1): 150-159.
Dong S S, Dou S, Shao M J, Jin Y S, Li LB, Tan C, Lin C M. Effect of corn stover deep incorporation with different years on composition of soil humus and structural characteristics of humic acid in Black soil. Acta Pedologica Sinica, 2017, 54(1): 150-159. (in Chinese)
[9] 孙建英, 李民赞, 唐宁, 郑立华. 东北黑土的光谱特性及其与土壤参数的相关性分析. 光谱学与光谱分析, 2007, 27(8): 1502-1505.
Sun J Y, Li M Z, Tang N, Zheng L H. Spectral characteristics and their correlation with soil parameters of Black Soil in Northeast China. Spectroscopy and Spectral Analysis, 2007, 27(8): 1502-1505. (in Chinese)
[10] 罗璐, 周萍, 童成立, 石辉, 吴金水, 黄铁平. 长期施肥措施下稻田土壤有机质稳定性研究. 环境科学, 2013, 34(2): 692-697.
Luo L, Zhou P, Tong C L, Shi H, Wu J S, Huang T P. Study on mechanism of SOM stabilization of paddy soils under long-term fertilizations. Environmental Science, 2013, 34(2): 692-697. (in Chinese)
[11] 刘鑫, 窦森, 李长龙, 王培宇. 开垦年限对稻田土壤腐殖质组成和胡敏酸结构特征的影响. 土壤学报, 2016, 53(1): 137-145.
Liu X, Dou S, Li C L, Wang P Y. Composition of humus and structure of humic acid as a function of age of paddy field. Acta Pedologica Sinica, 2016, 53(1): 137-145. (in Chinese)
[12] 郭素春, 郁红艳, 朱雪竹, 高彦征, 丁维新. 长期施肥对潮土团聚体有机碳分子结构的影响. 土壤学报, 2013, 50(5): 922-930.
Guo S C, Yu H Y, Zhu X Z, Gao Y Z, Ding W X. Effect of long-term fertilization on molecular structure of organic carbon in soil aggregates in Fluvo-aquic soil. Acta Pedologica Sinica, 2013, 50(5): 922-930. (in Chinese)
[13] 李民赞, 郑立华, 安晓飞, 孙红. 土壤成分与特性参数光谱快速检测方法及传感技术. 农业机械学报, 2013, 44(3): 73-87.
Li M Z, Zheng L H, An X F, Sun H. Fast measurement and advanced sensors of soil parameters with NIR spectroscopy. Transactions of the Chinese Society for Agricultural Machinery, 2013, 44(3): 73-87. (in Chinese)
[14] 姜桂英. 中国农田长期不同施肥的固碳潜力及预测[D]. 北京: 中国农业科学院, 2013.
Jiang G Y. Prediction of carbon sequestration potential of Chinese arable land under long-term fertilizations[D]. Beijing: Chinese Academy of Agricultural Sciences, 2013. (in Chinese)
[15] Stewart C E, Plante A F, Paustian K, Six J. Soil carbon saturation: linking concept and measurable carbon pools. Soil Science Society of America Journal, 2008, 72(2): 379-392.
[16] Feng W, Plante A F, Six J. Improving estimates of maximal organic carbon stabilization by fine soil particles. Biogeochemistry, 2011, 112(1): 81-93.
[17] 吴焕焕, 吕家珑, 段英华, 张文菊, 徐明岗. 激光衍射法测定中国典型土壤颗粒分布的模型建立与验证. 中国农业科学, 2013, 46(20): 4293-4300.
Wu H H, Lv J L, Duan Y H, Zhang W J, Xu M G. Establishment and validation of model of soil particle size distribution of main soils in China by laser diffraction method. Scientia Agricultura Sinica, 2013, 46(20): 4293-4300. (in Chinese)
[18] 张福韬, 乔云发, 苗淑杰, 韩晓增, 李娜, 李雪峰. 轮作对黑土团聚体有机质光谱特征的影响. 水土保持学报, 2015, 29(6): 208-214.
Zhang F T, Qiao Y F, Miao S J, Han X Z, Li N, Li X F. Effects of crop rotation on spectrum characteristics of organic matter in Mollisol aggregates. Journal of Soil and Water Conservation, 2015, 29(6): 208-214. (in Chinese)
[19] Zhang W J, Wang X J,Xu M G, Huang S M, Liu H, Peng C. Soil organic carbon dynamics under long-term fertilizations in arable land of northern China. Biogeosciences, 2010, 7: 409-425.
[20] Zhang W J, Xu M G, Wang X J, Huang Q H, Nie J, Li Z Z, LiS L, Hwang S W, Lee, K B. Effects of organic amendments on soil carbon sequestration in paddy fields of subtropical China. Journal of Soils Sediments, 2012, 12: 457-470.
[21] Stewart C E, Paustian K, Conant R T, Plante A F., Six J. Soil carbon saturation Implications for measurable carbon pool dynamics in long term incubations. Soil Biology and Biochemistry, 2009, 47: 357-366.
[22] 徐香茹, 蔡岸冬, 徐明岗, 汪景宽, 张文菊. 长期施肥下水稻土有机碳固持形态与特征. 农业环境科学学报, 2015, 34(4): 753-760.
Xu X R, Cai A D, Xu M G, Wang J K, Zhang W J. Characteristics of organic carbon stabilization in paddy soil under long-term different fertilization. Journal of Agro-Environment Science, 2015, 34(4): 753-760. (in Chinese)
[23] Castellano M J, Mueller K E, Olk D C, Sawyer J E, Six J. Integrating plant litter quality, soil organic matter stabilization, and the carbon saturation concept. Global Change Biology, 2015, 21: 3200-3209.
[24] Hoyle F C, Baldock J A, Murphy D V. Soil Organic Carbon – Role in Rainfed Farming Systems. Rainfed Farming Systems. Netherlands: Springer, 2011: 339-361.
[25] 周萍, 宋国菡, 潘根兴, 李峦卿, 张旭辉, Wu Laosheng. 南方三种典型水稻土长期试验下有机碳积累机制研究Ⅰ.团聚体物理保护作用. 土壤学报, 2008, 45(6): 1063-1071.
Zhou P, Song G H, Pan G X, Li L Q, Zhang X H, Wu L. SOC accumulation in three major types of paddy soils under long-term agro-ecosystem experiments from south China Ⅰ Physical protection in soil micro-aggregates SOC. Acta Pedologica Sinica, 2008, 45(6): 1063-1071. (in Chinese)
[26] Osuna-canizalez F J, Dedetta S K, Bonman J M. Nitrogen form and silicon nutrition effects on resistance to blast disease of rice. Plant and Soil, 1991, 135(2): 223-231.
[27] 刘鸣达, 张玉龙. 水稻土硅素肥力的研究现状与展望. 土壤通报, 2001, 32(4): 187-192.
Liu M D, Zhang Y L. Advance in the study of silicon fertility in paddy fields. Chinese Journal of Soil Science, 2001, 32(4): 187-192. (in Chinese)
[28] 黄海龙. 饼粕型烟草有机肥生产及其应用效果研究[D]. 长沙: 湖南农业大学, 2009.
Huang H L. Studies on bean of cake organic fertilizer of tobacco and its application. Changsha: Hunan Agricultural University, 2009. (in Chinese)
[29] 宋迪思, 盛浩, 周清, 周萍, 王翠红, 张杨珠. 不同母质发育土壤的中红外吸收光谱特征. 土壤通报, 2016, 47(1): 7-13.
Song D S, Sheng H, Zhou Q, Zhou P, Wang C H, Zhang Y Z. Characteristics of middle-infrared absorption spectrum of soils derived from different parent materials. Chinese Journal of Soil Science, 2016, 47(1): 7-13. (in Chinese)
[30] 冯蕾, 童成立, 石辉, 吴金水, 李勇, 黄铁平, 夏海鳌. 水稻碳氮吸收、分配与积累对施肥的响应. 环境科学, 2011, 32(2): 574-580.
Feng L, Tong C L, Shi H, Wu J S, Li Y, Huang T P, Xia H A. Effect of fertilization on the absorption, partition and accumulation of carbon and nitrogen of rice under the equal N conditions. Environmental Science, 2011, 32(2): 574-580. (in Chinese)
[31] Baumann K, Schöning I, Schrumpf M, Ellerbrockc Ruth H, Leinwebera P. Rapid assessment of soil organic matter: soil color analysis and fourier transform infrared spectroscopy. Geoderma, 2016, 278: 49-57.
[32] 徐基胜, 赵炳梓, 张佳宝. 长期施有机肥和化肥对潮土胡敏酸结构特征的影响. 土壤学报, 2017, 54(3): 648-657.
Xu J S, Zhao B Z, Zhang J B. Effects of long-term application of organic manure and chemical fertilizer on structure of humic acid in Fluvo-aquic soil. Acta Pedologica Sinica, 2017, 54(3): 648-657. (in Chinese)
[33] 王玉, 张一平, 陈思根. 中国6种地带性土壤红外光谱特征研究. 西北农林科技大学学报(自然科学版), 2003, 31(1): 57-61.
Wang Y, Zhang Y P, Chen S G. The characteristics of infrared spectrum of 6 typical zonal soils in China. Journal of Northwest Sci-Tech University of Agriculture and Forest (Natural Science Edition), 2003, 31(1): 57-61. (in Chinese)
[34] 彭杰, 周清, 张杨珠, 向红英. 有机质对土壤光谱特性的影响研究. 土壤学报, 2013, 50(3): 517-524.
Peng J, Zhou Q, Zhang Y Z, Xiang H Y. Effect of soil organic matter on spectral characteristics of soil. Acta Pedologica Sinica, 2013, 50(3): 517-524. (in Chinese) |
| [1] | WANG RenZhuo, LI YueYing, HUANG ShaoMin, JIANG GuiYing, ZHANG Qi, LIU ChaoLin, YANG Jin, WANG MengRu, WANG BeiBei, LIU Fang, GUO DouDou, JIE XiaoLei, SONG Lian, LIU ShiLiang. Effects of Long-Term Combination of Organic and Inorganic Fertilizers on Bacterial Community Structure, Ecological Network, and Key Species in Fluvo-Aquic Soil [J]. Scientia Agricultura Sinica, 2026, 59(2): 354-367. |
| [2] | WANG BingJie, QIN ShiHan, LI DeCheng, HU WenYou, JIANG Jun, CHI FengQin, ZHANG Chao, ZHANG JiuMing, XU YingDe, WANG JingKuan. Spatial Distribution Pattern and Transfer Function Construction of Soil Bulk Density in Nenjiang City, Heilongjiang Province [J]. Scientia Agricultura Sinica, 2025, 58(9): 1791-1803. |
| [3] | FANG KangRui, DING ShiJie, CHEN YuShan, YANG BingGeng, GUO TengFei, XU XinPeng, ZHAO ShiCheng, WANG XiuBin, HUANG ShaoMin, QIU ShaoJun, HE Ping, ZHOU Wei. In-Season Release Rate of Nitrogen and Phosphorus in Manure Fertilizers During the Wheat Season in Typical Fluvo-Aquic Soil Under the Combined Application of Chemical and Manure Fertilizers [J]. Scientia Agricultura Sinica, 2025, 58(24): 5234-5246. |
| [4] | GUO DouDou, ZHANG KeKe, HUANG ShaoMin, SONG Xiao, ZHANG ShuiQing, YUE Ke, DING ShiJie, GUO TengFei. Effects of Long-Term Fertilization on Phosphorus Adsorption and Desorption Characteristics of Fluvo-Aquic Soils [J]. Scientia Agricultura Sinica, 2025, 58(14): 2805-2820. |
| [5] | WANG ShiJi, LI YueYing, CHEN Chen, JIANG GuiYing, LIU ChaoLin, ZHU ChangWei, YANG Jin, WANG MengRu, JIE XiaoLei, LIU Fang, LIU ShiLiang. The Characteristics of Ammonia Volatilization and Crop Yield Under Legume-Wheat Rotation System in Fluvo-Aquic Soil in Northern Henan Province [J]. Scientia Agricultura Sinica, 2025, 58(13): 2614-2629. |
| [6] | LI LianYi, WANG ShiJi, JIANG GuiYing, LI Yang, YANG Jin, ZHU XuanLin, ZHU ChangWei, WANG RenZhuo, LIU Fang, JIE XiaoLei, LIU ShiLiang. Rotation Tillage Mode Improves Wheat Root and Yield in Fluvo- Aquic Soil in Norther Henan Province [J]. Scientia Agricultura Sinica, 2024, 57(18): 3626-3641. |
| [7] | WANG Yu, SONG YiFan, ZHANG Rong, MU HaiMeng, SUN LiFang, FU KaiXia, WU ZiJun, HUANG QingQing, XU YingMing, LI GeZi, WANG YongHua, GUO TianCai. Effects of Soil Application of Passivating Agent and Compound Microbial Fertilizer on Cadmium Accumulation in Winter Wheat [J]. Scientia Agricultura Sinica, 2024, 57(1): 126-141. |
| [8] | LI YaZhen, HAN TianFu, QU XiaoLin, MA ChangBao, DU JiangXue, LIU KaiLou, HUANG Jing, LIU ShuJun, LIU LiSheng, SHEN Zhe, ZHANG HuiMin. Spatio-Temporal Variations of Fertilizer Contribution Rate for Rice in China and Its Influencing Factors [J]. Scientia Agricultura Sinica, 2023, 56(4): 674-685. |
| [9] | HUO RunXia, ZHANG Zhe, LI WenPing, ZHANG YangYang, LIAO ShiPeng, REN Tao, LI XiaoKun, LU ZhiFeng, CONG RiHuan, LU JianWei. 40 Years’ Change Characteristics of Soil Basic Properties in the Main Planting Area of Winter Oilseed Rape [J]. Scientia Agricultura Sinica, 2023, 56(23): 4696-4705. |
| [10] | ZHANG LingFei, MA Lei, LI YuDong, ZHENG FuLi, WEI JianLin, TAN DeShui, CUI XiuMin, LI Yan. Effects of Long-Term Synergistic Application of Organic Materials and Chemical Fertilizers on Bacterial Community and Enzyme Activity in Wheat-Maize Rotation Fluvo-Aquic Soil [J]. Scientia Agricultura Sinica, 2023, 56(19): 3843-3855. |
| [11] | CHEN ShuoTong, XIA Xin, DING YuanJun, FENG Xiao, LIU XiaoYu, Marios Drosos, LI LianQing, PAN GenXing. Changes in Topsoil Organic Matter Content and Composition of a Gleyic Stagnic Anthrosol Amended with Maize Residue in Different Forms from the Tai Lake Plain, China [J]. Scientia Agricultura Sinica, 2023, 56(13): 2518-2529. |
| [12] | ZHANG XueLin, WU Mei, HE TangQing, ZHANG ChenXi, TIAN MingHui, LI XiaoLi, HOU XiaoPan, HAO XiaoFeng, YANG QingHua, LI ChaoHai. Effects of Crop Residue Decomposition on Soil Inorganic Nitrogen and Greenhouse Gas Emissions from Fluvo-Aquic Soil and Shajiang Black Soil [J]. Scientia Agricultura Sinica, 2022, 55(4): 729-742. |
| [13] | ZHANG YingQiang,ZHANG ShuiQin,LI YanTing,ZHAO BingQiang,YUAN Liang. Conversion Characteristics of Different Carboxyl-Containing Organic Acids Modified Urea in Calcareous Fluvo-Aquic Soil [J]. Scientia Agricultura Sinica, 2022, 55(17): 3355-3364. |
| [14] | ZHANG WeiLi, FU BoJie, XU AiGuo, YANG Peng, CHEN Tao, ZHANG RenLian, SHI Zhou, WU WenBin, LI JianBing, JI HongJie, LIU Feng, LEI QiuLiang, LI ZhaoJun, FENG Yao, LI YanLi, XU YongBing, PEI Wei. Geostatistical Characteristics of Soil Data from National Soil Survey Works in China [J]. Scientia Agricultura Sinica, 2022, 55(13): 2572-2583. |
| [15] | CUI Shuai,LIU ShuoRan,WANG Yin,XIA ChenZhen,YAN Li,FENG GuoZhong,GAO Qiang. Soil Available Sulfur Content in Jilin Province and Its Correlation with Soil Organic Matter and Soil Total Nitrogen [J]. Scientia Agricultura Sinica, 2022, 55(12): 2372-2383. |
|
||