Acta Prataculturae Sinica ›› 2021, Vol. 30 ›› Issue (1): 24-35.DOI: 10.11686/cyxb2020305
Previous Articles Next Articles
Bo JI1,2,3(), Jian-long HE2,3, Xu-dong WU2,3, Zhan-jun WANG2,3, Ying-zhong XIE1(), Qi JIANG2,3()
Received:
2020-06-30
Revised:
2020-09-08
Online:
2021-01-20
Published:
2021-01-08
Contact:
Ying-zhong XIE,Qi JIANG
Bo JI, Jian-long HE, Xu-dong WU, Zhan-jun WANG, Ying-zhong XIE, Qi JIANG. Characteristics of soil organic carbon and active organic carbon in typical natural grassland in Ningxia[J]. Acta Prataculturae Sinica, 2021, 30(1): 24-35.
草地类型 Grassland type | 物种数 Species number | 群落盖度 Community coverage (%) | 丰富度指数 Richness index | 多样性指数 Diversity index | 均匀度指数 Evenness index | 优势度指数 Predominant index |
---|---|---|---|---|---|---|
MS | 27±1 | 94.42±1.62a | 14.96±3.38a | 1.92±0.19a | 0.72±0.04a | 0.78±0.04a |
WS | 22±3 | 83.94±9.90b | 13.67±3.26a | 1.79±0.22a | 0.70±0.05a | 0.75±0.05a |
SD | 10±1 | 57.10±9.70c | 6.84±1.63b | 1.11±0.29b | 0.74±0.13a | 0.55±0.11b |
DS | 12±0 | 56.85±11.64c | 8.19±2.35b | 1.27±0.27b | 0.61±0.10a | 0.59±0.12b |
Table 1 Basic community characteristics of different grasslands (mean±SD)
草地类型 Grassland type | 物种数 Species number | 群落盖度 Community coverage (%) | 丰富度指数 Richness index | 多样性指数 Diversity index | 均匀度指数 Evenness index | 优势度指数 Predominant index |
---|---|---|---|---|---|---|
MS | 27±1 | 94.42±1.62a | 14.96±3.38a | 1.92±0.19a | 0.72±0.04a | 0.78±0.04a |
WS | 22±3 | 83.94±9.90b | 13.67±3.26a | 1.79±0.22a | 0.70±0.05a | 0.75±0.05a |
SD | 10±1 | 57.10±9.70c | 6.84±1.63b | 1.11±0.29b | 0.74±0.13a | 0.55±0.11b |
DS | 12±0 | 56.85±11.64c | 8.19±2.35b | 1.27±0.27b | 0.61±0.10a | 0.59±0.12b |
草地类型 Grassland type | 土层深度 Soil layer (cm) | 容重 Bulk density (g·cm-3) | 全氮 Total nitrogen (g·kg-1) | 全磷 Total phosphorus (g·kg-1) | 全钾 Total potassium (g·kg-1) | pH |
---|---|---|---|---|---|---|
MS | 0~10 | 0.94±0.08d | 3.45±0.50a | 0.77±0.08a | 20.21±0.97a | 7.92±0.34c |
10~20 | 0.97±0.07d | 3.50±0.38a | 0.76±0.07a | 20.10±0.53a | 7.98±0.31c | |
20~40 | 1.04±0.08d | 3.32±0.31a | 0.75±0.07a | 19.38±1.19a | 8.05±0.26c | |
WS | 0~10 | 1.16±0.09c | 1.48±0.51b | 0.63±0.09b | 18.75±0.92b | 8.24±0.22b |
10~20 | 1.16±0.08c | 1.40±0.40b | 0.62±0.11b | 18.70±0.98b | 8.29±0.19b | |
20~40 | 1.29±0.05c | 1.37±0.47b | 0.62±0.09b | 18.35±0.81ab | 8.34±0.19b | |
SD | 0~10 | 1.29±0.05b | 0.61±0.12c | 0.61±0.07b | 19.50±1.12ab | 8.68±0.32a |
10~20 | 1.32±0.12b | 0.59±0.17c | 0.62±0.10b | 19.42±1.40ab | 8.84±0.27a | |
20~40 | 1.31±0.08b | 0.58±0.19c | 0.60±0.09b | 19.30±1.59a | 8.88±0.34a | |
DS | 0~10 | 1.49±0.12a | 0.40±0.21c | 0.38±0.07c | 17.81±0.86c | 8.70±0.27a |
10~20 | 1.49±0.12a | 0.41±0.24c | 0.38±0.04c | 17.46±1.11c | 8.76±0.26a | |
20~40 | 1.49±0.12a | 0.39±0.19c | 0.36±0.06c | 17.27±1.33c | 8.74±0.22a |
Table 2 Soil bulk density and soil nutrient of typical natural grassland in Ningxia
草地类型 Grassland type | 土层深度 Soil layer (cm) | 容重 Bulk density (g·cm-3) | 全氮 Total nitrogen (g·kg-1) | 全磷 Total phosphorus (g·kg-1) | 全钾 Total potassium (g·kg-1) | pH |
---|---|---|---|---|---|---|
MS | 0~10 | 0.94±0.08d | 3.45±0.50a | 0.77±0.08a | 20.21±0.97a | 7.92±0.34c |
10~20 | 0.97±0.07d | 3.50±0.38a | 0.76±0.07a | 20.10±0.53a | 7.98±0.31c | |
20~40 | 1.04±0.08d | 3.32±0.31a | 0.75±0.07a | 19.38±1.19a | 8.05±0.26c | |
WS | 0~10 | 1.16±0.09c | 1.48±0.51b | 0.63±0.09b | 18.75±0.92b | 8.24±0.22b |
10~20 | 1.16±0.08c | 1.40±0.40b | 0.62±0.11b | 18.70±0.98b | 8.29±0.19b | |
20~40 | 1.29±0.05c | 1.37±0.47b | 0.62±0.09b | 18.35±0.81ab | 8.34±0.19b | |
SD | 0~10 | 1.29±0.05b | 0.61±0.12c | 0.61±0.07b | 19.50±1.12ab | 8.68±0.32a |
10~20 | 1.32±0.12b | 0.59±0.17c | 0.62±0.10b | 19.42±1.40ab | 8.84±0.27a | |
20~40 | 1.31±0.08b | 0.58±0.19c | 0.60±0.09b | 19.30±1.59a | 8.88±0.34a | |
DS | 0~10 | 1.49±0.12a | 0.40±0.21c | 0.38±0.07c | 17.81±0.86c | 8.70±0.27a |
10~20 | 1.49±0.12a | 0.41±0.24c | 0.38±0.04c | 17.46±1.11c | 8.76±0.26a | |
20~40 | 1.49±0.12a | 0.39±0.19c | 0.36±0.06c | 17.27±1.33c | 8.74±0.22a |
1 | Ji B, Li N, Ma F, et al. Effect of main re-vegetation patterns on soil organic carbon sequestration in southern Ningxia. Acta Agriculturae Zhejiangensis, 2017, 29(3): 483-488. |
季波, 李娜, 马璠, 等. 宁南典型退耕模式对土壤有机碳固存的影响.浙江农业学报, 2017, 29(3): 483-488. | |
2 | Li Y Y, Shao M A, Zheng J Y, et al. Impact of grassland recovery and reconstruction on soil organic carbon in the Northern Loess Plateau. Acta Ecologica Sinica, 2007, 27(6): 2279-2287. |
李裕元, 邵明安, 郑纪勇, 等. 黄土高原北部草地的恢复与重建对土壤有机碳的影响. 生态学报, 2007, 27(6): 2279-2287. | |
3 | Huang Y Z, Xin Z B. Effects of different ecological restoration patterns on soil organic carbon in gullies of Loess Plateau. Acta Ecologica Sinica, 2020, 40(3): 778-788. |
黄艳章, 信忠保. 不同生态恢复模式对黄土残塬沟壑区深层土壤有机碳的影响. 生态学报, 2020, 40(3): 778-788. | |
4 | Wu Y C, Li Z C, Cheng C F, et al. Effects of understory removal on soil labile organic carbon pool in a Cinnamomum camphora plantation. Chinese Journal of Applied Ecology, 2013, 24(12): 3341-3346. |
吴亚丛, 李正才, 程彩芳, 等. 林下植被抚育对樟树人工林土壤活性有机碳库的影响. 应用生态学报, 2013, 24(12): 3341-3346. | |
5 | Yan L J, Li G, Wu J Q, et al. Effects of four typical vegetations on soil active organic carbon and soil carbon in Loess Plateau. Acta Ecologica Sinica, 2019, 39(15): 5546-5554. |
闫丽娟, 李广, 吴江琪, 等. 黄土高原4种典型植被对土壤活性有机碳及土壤碳库的影响. 生态学报, 2019, 39(15): 5546-5554. | |
6 | Liu H M, Zhang H F, Zhao J N, et al. Effects of nitrogen addition on labile soil organic carbon and carbon pool management index of Stipa baicalensis steppe in Inner Mongolia, China. Acta Prataculturae Sinica, 2020, 29(8): 18-26. |
刘红梅, 张海芳, 赵建宁, 等. 氮添加对贝加尔针茅草原土壤活性有机碳和碳库管理指数的影响. 草业学报, 2020, 29(8): 18-26. | |
7 | Xiong D P, Shi P L, Zhang X Z, et al. Effects of grazing exclusion on carbon sequestration and plant diversity in grasslands of China a meta-analysis. Ecological Cological Engineering, 2016, 94: 647-655. |
8 | Gao C P, Han G D, Wang Z W, et al. Carbon sequestration effect of different artificial grasslands in Inner Mongolia desert grassland area. Chinese Journal of Grassland, 2017, 39(4): 81-85. |
高翠萍, 韩国栋, 王忠武, 等. 内蒙古荒漠草原人工草地固碳效应分析. 中国草地学报, 2017, 39(4): 81-85. | |
9 | Ni J. Carbon storage in terrestrial ecosystems of China: Estimates at different resolutions and their responses to climate change. Climate Change, 2001, 49(3): 339-358. |
10 | Xie X L, Sun B, Zhou H Z, et al. Soil carbon storage and their influencing factors under native vegetations in China. Acta Pedologica Sinica, 2004(5): 687-699. |
解宪丽, 孙波, 周慧珍, 等. 不同植被下中国土壤有机碳的储量与影响因子. 土壤学报, 2004(5): 687-699. | |
11 | Xu H, Zhang Y R, Ji B, et al. Organic carbon of soil and roots for different woodland of Helanshan Mountain. Journal of Arid Land Resources and Environment, 2014, 28(2): 162-166. |
许浩, 张源润, 季波, 等. 贺兰山主要森林类型土壤和根系有机碳研究. 干旱区资源与环境, 2014, 28(2): 162-166. | |
12 | Gao Z Z, Dai F H, Shen Q L, et al. Ningxia vegetation. Yinchuan: Ningxia People’s Publishing House, 1988: 8. |
高正中, 戴法和, 沈庆录, 等. 宁夏植被. 银川: 宁夏人民出版社, 1988: 8. | |
13 | Institute of Soil Science, Chinese Academy of Sciences. Analysis of soil physical and chemical properties. Shanghai: Shanghai Science and Technology Press, 1978. |
中国科学院南京土壤研究所. 土壤理化分析. 上海: 上海科学技术出版社, 1978. | |
14 | Shen H, Cao Z H. Study on soil C pool management index of different farmland ecosystems. Acta Ecologica Sinica, 2000(4): 663-668. |
沈宏, 曹志洪. 不同农田生态系统土壤碳库管理指数的研究.生态学报, 2000(4): 663-668. | |
15 | Wang Y, Ruan H H, Huang L L, et al. Soil labile organic carbon of different land use types in a reclaimed land area of Taihu Lake. Chinese Journal of Ecology, 2010, 29(4): 741-748. |
王莹, 阮宏华, 黄亮亮, 等. 围湖造田不同土地利用方式土壤活性有机碳的变化. 生态学杂志, 2010, 29(4): 741-748. | |
16 | Li T K, Guo Z L, Kou C L, et al. Effects of extraction conditions on the test results of soil dissolved organic carbon. Ecology and Environmental Sciences, 2017, 26(11): 1878-1883. |
李太魁, 郭战玲, 寇长林, 等. 提取方法对土壤可溶性有机碳测定结果的影响. 生态环境学报, 2017, 26(11): 1878-1883. | |
17 | Dou Y X, Hou L, Ma H H, et al. Effects of forest thinning on soil labile organic carbon in a Pine-Oak mixed forest. Journal of Central South University of Forestry & Technology, 2015, 35(5): 64-69. |
窦艳星, 侯琳, 马红红, 等. 间伐对松栎混交林土壤活性有机碳的影响. 中南林业科技大学学报, 2015, 35(5): 64-69. | |
18 | Ding Y G, Yang J, Song B Y, et al. Effect of different vegetation types on soil organic carbon in Mu Us desert. Acta Prataculturae Sinica, 2012, 21(2): 18-25. |
丁越岿, 杨劼, 宋炳煜, 等. 不同植被类型对毛乌素沙地土壤有机碳的影响. 草业学报, 2012, 21(2): 18-25. | |
19 | Wang S Q, Zhou C H. Estimating soil carbon reservior of terrestrial ecosystem in China. Geographical Research, 1999(4): 349-356. |
王绍强, 周成虎. 中国陆地土壤有机碳库的估算. 地理研究, 1999(4): 349-356. | |
20 | Zhou L, Li B G, Zhou G S. Advances in controlling factors of soil organic carbon. Advance in Earth Sciences, 2005, 20(1): 99-105. |
周莉, 李保国, 周广胜. 土壤有机碳的主导影响因子及其研究进展. 地球科学进展, 2005, 20(1): 99-105. | |
21 | Chen X T, Xu T L, Li X J, et al. Soil organic carbon concentrations and the influencing factors in natural ecosystems of northern China. Chinese Journal of Ecology, 2019, 38(4): 1133-1140. |
陈心桐, 徐天乐, 李雪静, 等. 中国北方自然生态系统土壤有机碳含量及其影响因素. 生态学杂志, 2019, 38(4): 1133-1140. | |
22 | Xie X L, Sun B, Zhou H Z, et al. Organic carbon density and storage in soil of China and spatial analysis. Acta Pedologica Sinica, 2004, 41(1): 35-43. |
解宪丽, 孙波, 周惠珍, 等. 中国土壤有机碳密度和储量的估算与空间分布分析. 土壤学报, 2004, 41(1): 35-43. | |
23 | Xu M G, Yu R, Wang B R. Progress on the study of soil active organic matter. Soils and Fertilizers, 2000(6): 3-7. |
徐明岗, 于荣, 王伯仁. 土壤活性有机质的研究进展. 土壤肥料, 2000(6): 3-7. | |
24 | Ma H P, Guo Q Q, Liu H M, et al. Soil organic carbon pool at the western side of the sygera mountains, Southeast Tibet, China. Acta Ecologica Sinica, 2013, 33(10): 3122-3128. |
马和平, 郭其强, 刘合满, 等. 藏东南色季拉山西坡土壤有机碳库研究. 生态学报, 2013, 33(10): 3122-3128. | |
25 | Liu Q, Tang J. Vertical distribution and correlation analysis of soil active organic carbon components in saline-alkali reed wetland. Science Technology and Engineering, 2020, 20(5): 1760-1766. |
刘骞, 汤洁. 盐碱芦苇湿地土壤活性有机碳组分垂直分布及相关性分析. 科学技术与工程, 2020, 20(5): 1760-1766. | |
26 | Zhang H Y, Wang K Q, Song Y L, et al. Distribution characteristics of soil active organic carbon in different land use types in Jianshan River watershed in Middle Yunnan Province. Research of Soil and Water Conservation, 2019, 26(3): 16-21. |
张华渝, 王克勤, 宋娅丽, 等. 滇中尖山河小流域不同土地利用类型土壤活性有机碳分布特征. 水土保持研究, 2019, 26(3): 16-21. | |
27 | Xu M L, Wu W, Yan Z M, et al. The content and vertical distribution of soil labile organic carbons in different land use types in the tidal flat area. Journal of Nanjing Forestry University (Natural Sciences Edition), 2020, 44(4): 167-175. |
许梦璐, 吴炜, 颜铮明, 等.滨海滩涂不同土地利用类型土壤活性有机碳含量与垂直分布. 南京林业大学学报(自然科学版), 2020, 44(4): 167-175. | |
28 | Tang G Y, Huang D Y, Tong C L, et al. Characteristics of soil organic carbon and microbial biomass carbon in hilly red soil region. Chinese Journal of Applied Ecology, 2006, 17(3): 3429-3433. |
唐国勇, 黄道友, 童成立, 等. 红壤丘陵景观单元土壤有机碳和微生物生物量碳含量特征. 应用生态学报, 2006, 17(3): 3429-3433. | |
29 | Jandl R, Sollins P. Water-extractable soil carbon in relation to the belowground carbon cycle. Biology Fertilizer Soils, 1997, 25(2): 196-201. |
30 | Zhang Q Q. The comparison of the different community types in mountain meadow steppe. Shenyang: Liaoning University, 2015. |
张倩倩. 山地草甸草原不同群落类型碳储量比较研究. 沈阳: 辽宁大学, 2015. | |
31 | Li T J, Zhao Y, Zhang K L, et al. Soil geography. Beijing: Higher Education Press, 2005. |
李天杰, 赵烨, 张科利, 等. 土壤地理学. 北京: 高等教育出版社, 2005. |
[1] | Ru ZHANG, Jian-ping LI, Wen-dong PENG, Fang WANG, Zhi-gang LI. Effects of mulching with caragana (Caragana intermedia) branches on soil moisture content and temperature and reseeded forage biomass in desertified grassland in Ningxia Province, China [J]. Acta Prataculturae Sinica, 2021, 30(4): 58-67. |
[2] | GAO Jin-long, LIU Jie, YIN Jian-peng, GE Jing, HOU Meng-jing, FENG Qi-sheng, LIANG Tian-gang. Hyperspectral remote sensing progress for forage nutritional quality and quantity in natural grassland [J]. Acta Prataculturae Sinica, 2020, 29(2): 172-185. |
[3] | WANG Xiao-jiao, QI Peng, CAI Li-qun, CHEN Xiao-long, XIE Jun-hong, GAN Hui-jiong, ZHANG Ren-zhi. Effects of alternative fertilization practices on components of the soil organic carbon pool and yield stability in rain-fed maize production on the Loess Plateau [J]. Acta Prataculturae Sinica, 2020, 29(10): 58-69. |
[4] | NI Lu, WU Jing, LI Chun-bin, QIN Ge-xia, LI Zheng, KONG Jie. Temporal and spatial variations in natural grassland phenology in China over the last 30 years [J]. Acta Prataculturae Sinica, 2020, 29(1): 1-12. |
[5] | LIN Yu-fan, ZHU Hong-fu, WANG Li-hui, ZHANG Gui-jie. Yield and nutritional value of silage maize varieties in Ningxia Yellow River irrigation area [J]. Acta Prataculturae Sinica, 2019, 28(8): 40-48. |
[6] | YU Shuang, XU Dong-mei, XU Ai-yun, LIU Jin-long, TAO Li-bo. Effects of different restoration measures on the soil organic carbon and nitrogen reserves in a desert steppe grassland ecosystem in Ningxia [J]. Acta Prataculturae Sinica, 2019, 28(3): 12-19. |
[7] | ZHANG Miao-miao, CHEN Wei, LIN Li, ZHANG De-gang, WU Yu-xin, XIAO Hai-long. A study of soil nutrient characteristics and soil soluble organic carbon levels in different types of alpine grassland in Qinghai Province [J]. Acta Prataculturae Sinica, 2019, 28(3): 20-28. |
[8] | LI Ming-yu, HUANG Wen-guang, YANG Jun-long, LI Xiao-wei. Factors influencing leaf nitrogen and phosphorus stoichiometry in plant species of Ningxia grasslands [J]. Acta Prataculturae Sinica, 2019, 28(2): 23-32. |
[9] | WANG Xu-yang, LI Yu-qiang, LIAN Jie, LUO Yong-qing, NIU Ya-yi, GONG Xiang-wen. Progress in application of the CENTURY model for prediction of soil carbon levels in different ecosystems [J]. Acta Prataculturae Sinica, 2019, 28(2): 179-189. |
[10] | YU Shuang, TAO Li-bo, XÜ Dong-mei, XÜ Ai-yun, LIU Jin-long. Effects of enclosure on the soil organic carbon and its active components in desert steppe grassland [J]. Acta Prataculturae Sinica, 2019, 28(2): 190-196. |
[11] | WANG Duo-bin, JI Chang-ting, LIN Hui-long. A ‘denitrification-decomposition’ (DNDC) model evaluation of alpine meadow soil carbon response to climate change [J]. Acta Prataculturae Sinica, 2019, 28(12): 197-204. |
[12] | NIE Ming-he, SHEN Yan, RAO Li-xian. Quantitative classification and environmental interpretation of plant communities on the Ningxia typical steppe after 1-21 years of restoration [J]. Acta Prataculturae Sinica, 2018, 27(8): 11-20. |
[13] | JIANG La-mei, YANG Xiao-dong, YANG Jian-jun, HE Xue-min, LÜ Guang-hui. Effects of different management strategies on soil organic carbon and nitrogen pools in arid areas and their influencing factors [J]. Acta Prataculturae Sinica, 2018, 27(12): 22-33. |
[14] | WANG Xue-qin, LIU Ting-xi, ZHANG Jun-yi, WANG Guan-li, DUAN Li-min. Profile distribution and dynamics of soil organic carbon and total nitrogen in the Horqin meadow wetland during the growing season [J]. Acta Prataculturae Sinica, 2018, 27(12): 34-44. |
[15] | LIU Dong, CUI Zheng-jun, GAO Yu-hong, YAN Bin, ZHANG Zhong-kai, WU Bing. Effect of rotation sequence on stability of soil organic carbon in dry-land oil flax [J]. Acta Prataculturae Sinica, 2018, 27(12): 45-57. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||