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安韶山

发布日期:2021-08-20   阅读次数:

基本信息

安韶山,男,1972生,宁夏平罗人,研究员,博导。2011年获科学院王宽诚西部学者突出贡献奖。2012年教育部新世纪优秀人才入选者。2000年到西北农林科技大学工作至今,主要从事土壤生态学、恢复生态学、水土保持效益评价等领域的研究,主要研究方向包括:植被恢复与土壤相互作用、土壤有机碳及来源、土壤微生物多样性及生态效应、土壤团聚体稳定性及生态过程、土壤生态系统服务功能等。先后承担国家重点研发、中国科学院先导专项A类等项目10余项,主持国家自然科学基金项目5项,参加国家自然科学基金重点项目1 项。发表文章100余篇,其中发表在SBB, Geoderma, Catena, Journal of Hydrology等期刊的SCI 文章40多篇,被引次数达600余次。土壤学报、应用生态学报等中文期刊50多篇。获省科学进步一等奖2项(排名第五、第七),省科技进步三等奖(排名第二)。出版《黄土高原植被恢复的土壤环境效应》专著1部,参编专著4部。担任《应用生态学报》、《水土保持通报》编委。培养研究生获陕西省优秀博士论文1人次、虞宏正奖学金2人次、全国林业十佳毕业研究生2人次、国家奖学金8人次。

工作经历

1994.9-1997.7:宁夏农林科学院工作,研究实习员。

2000.7-2006.12:中国科学院水利部、西北农林科技大学 水土保持研究所,助研。

2006.12-至今: 中国科学院水利部、西北农林科技大学 水土保持研究所,副研。

中国科学院水利部、西北农林科技大学 水土保持研究所,研究员

科学研究

1.2021.1-2024.12黄土高原草地土壤微生物“碳泵”调控的有机碳形成过程机理(42077072)国家自然科学基金57万元,主持

2.2019.1-2023.12第二次青藏高原综合科学考察任务六专题3子专题2科技部649万元,主持

3.2019.1-2023.12泛第三极环境变化与绿色丝绸之路建设(XDA20040202)中国科学院战略性先导科技专项155万元,主持

4.2016.1-2020.12黄土高原生态修复的土壤服务功能评估及调控(A314021403-C6)中国科学院教育部水土保持与生态环境研究中心190万元,主持

5.2016.1-2020.12宁南山区植被恢复中根系生产力及其对有机碳贡献辨析(41671280)国家自然科学基金66万元,主持

6.2015.1-2019.12宁南山区脆弱生态系统恢复及可持续经营技术集成与示范(2016YFC0501702)科技部十二五科技支撑30万元,子课题主持

7.2018.1-2020.12气候变化对中国黄河中游和塞尔维亚萨瓦河流域农业水土环境影响评估及适应对策(161461KYSB20170013)对外合作重点项目中国科学院97万元,子课题主持

8.2012.1-2015.12黄土丘陵区枯落物对土壤微生物多样性及碳固定的影响机理(41171226)国家自然科学基金70万元,主持

9.2010.1-2012.12宁南山区植被恢复对土壤不同粒径团聚体中微生物群落分异特征的影响(40971171)国家自然科学基金40万元,主持

10.2008. 1-2010.12黄土丘陵区植被恢复过程中土壤微生物多样性演变(40701095)国家自然科学基金20万元,主持

11.2009.1-2011.12黄土高原植被恢复对土壤团聚体稳定性和有机碳官能团的影响中国科学院“西部之光”25万元,主持

12.2008.1-2009.12子午岭地区土壤微生物学特性演变及对植被恢复的影响陕西自然科学基金2万元,主持

13.2010.1-2012.12黄土丘陵区植被恢复中土壤微生物多样性演变及其对土壤碳固定的影响黄土高原土壤侵蚀与旱地农业国家重点实验室20万元,主持

14.2010.1-2014.12黄土丘陵区土壤侵蚀对植被恢复过程的干扰与植物的抗侵蚀特性研究(41030532)国家自然科学基金委员会重点项目20万元,参加

15.2005.1-2007.12宁南山区土壤团粒分形特征及其对植被恢复的响应(40461006)国家自然科学基金10万元,参加

16.2004.10-2006.10黄土丘陵区土壤肥力质量对植被恢复的响应及演变(04ZX011)西北农林科技大学优秀人才专项3万元,主持

17.2005.12-2007.12黄土丘陵区植被恢复中土壤生物学质量的响应及评价水保所学科领域前沿4万元,主持

18.2005.12-2007.12黄土丘陵区土壤侵蚀-植被恢复过程中生物学质量的演变及评价黄土高原土壤侵蚀与旱地农业国家重点实验室基金3万元,主持

19.2006.01-2010.12国家“十一五”科技攻关重大项目“中国西部重点脆弱生态区综合治理技术与示范项目”-半干旱退化山区生态农业建设技术与示范(2001BA606A-04)科技部15万元,子专题负责人

发表文章

1.Xuejuan Bai, Yimei Huang, Baorong Wang, Yakov Kuzyakov, Shaoshan An*. Belowground allocation and fate of tree assimilates in plant-soil-microorganisms system: 13C labeling and tracing under field conditions. Geoderma. 2021. 404: 115296.

2.Xuejuan Bai, Xuan Yang, Shumeng Zhang, Shaoshan An*. (2021). Newly assimilated carbon allocation in grassland communities under different grazing enclosure times. Biology and Fertility of Soils. 57: 563-574.

3.Yang Yang, Chao Liang, Ting Li, Huan Cheng, Shaoshan An, 2020. Soil extracellular enzyme stoichiometry reflects the shift from P- to N-limitation of microorganisms with grassland restoration. Soil Biology and Biochemistry, https://doi.org/10.1016/j.soilbio.2020.107928.

4.Bai, X., Guo, Z., Huang, Y., An, S., 2020. Root cellulose drives soil fulvic acid carbon sequestration in the grassland restoration process. Catena. doi:10.1016/j.catena.2020.104575

5.Bai, X., Wang, B., An, S., Zeng, Q., Zhang, H., 2019. Response of forest species to C : N : P in the plant-litter-soil system and stoichiometric homeostasis of plant tissues during afforestation on the Loess Catena, 183.

6.Liu, D., Wang, H., An, S., Bhople, P., Davlatbekov, F., 2019. Geographic distance and soil microbial biomass carbon drive biogeographical distribution of fungal communities in Chinese Loess Plateau soils. Science of the Total Environment. doi:10.1016/j.scitotenv.2019.01.097

7.Dou, Y., Yang, Y., An, S., 2019. Above-ground biomass models of Caragana korshinskii and Sophora viciifolia in the Loess Plateau, China. Sustainability (Switzerland). doi:10.3390/su11061674

8.Dou, Y., Yang, Y., An, S., Zhu, Z., 2020. Effects of different vegetation restoration measures on soil aggregate stability and erodibility on the Loess Plateau, China. Catena. doi:10.1016/j.catena.2019.104294

9.Liu, D., Huang, Y., Sun, H., An, S., 2018a. The restoration age of Robinia pseudoacacia plantation impacts soil microbial biomass and microbial community structure in the Loess Plateau. Catena. doi:10.1016/j.catena.2018.02.001

10.Liu, D., Yang, Y., An, S., Wang, H., Wang, Y., 2018b. The biogeographical distribution of soil bacterial communities in the loess plateau as revealed by high-throughput sequencing. Frontiers in Microbiology. doi:10.3389/fmicb.2018.02456

11.Wang, B., Zhao, X., Liu, Y., Fang, Y., Ma, R., Yu, Q., An, S., 2019. Using soil aggregate stability and erodibility to evaluate the sustainability of large-scale afforestation of Robinia pseudoacacia and Caragana korshinskii in the Loess Plateau. Forest Ecology and Management. doi:10.1016/j.foreco.2019.117491

12.Yang, Y., Cheng, H., Dou, Y., An, S., 2020a. Plant and soil traits driving soil fungal community due to tree plantation on the Loess Plateau. Science of the Total Environment. doi:10.1016/j.scitotenv.2019.134560

13.Yang, Y., Cheng, H., Gao, H., An, S., 2020b. Response and driving factors of soil microbial diversity related to global nitrogen addition. Land Degradation and Development. doi:10.1002/ldr.3439

14.Yang, Y., Cheng, H., Liu, L., Dou, Y., An, S., 2020c. Comparison of soil microbial community between planted woodland and natural grass vegetation on the Loess Plateau. Forest Ecology and Management. doi:10.1016/j.foreco.2019.117817

15.Yang, Y., Dou, Y., An, S., 2018a. Testing association between soil bacterial diversity and soil carbon storage on the Loess Plateau. Science of the Total Environment. doi:10.1016/j.scitotenv.2018.01.081

16.Yang, Y., Dou, Y., An, S., Zhu, Z., 2018b. Abiotic and biotic factors modulate plant biomass and root/shoot (R/S) ratios in grassland on the Loess Plateau, China. Science of the Total Environment 636, 621–631. doi:10.1016/j.scitotenv.2018.04.260

17.Yang, Y., Dou, Y., Huang, Y., An, S., 2017a. Links between soil fungal diversity and plant and soil properties on the Loess Plateau. Frontiers in Microbiology. doi:10.3389/fmicb.2017.02198

18.Yang, Y., Dou, Y., Liu, D., An, S., 2017b. Spatial pattern and heterogeneity of soil moisture along a transect in a small catchment on the Loess Plateau. Journal of Hydrology. doi:10.1016/j.jhydrol.2017.05.026

19.Yang, Y., Liu, B.R., An, S.S., 2018c. Ecological stoichiometry in leaves, roots, litters and soil among different plant communities in a desertified region of Northern China. Catena. doi:10.1016/j.catena.2018.04.018

20.Zeng, Q., An, S., Liu, Y., 2017. Soil bacterial community response to vegetation succession after fencing in the grassland of China. Science of the Total Environment. doi:10.1016/j.scitotenv.2017.07.102

21.Zeng, Q., An, S., Liu, Y., Wang, H., Wang, Y., 2019a. Biogeography and the driving factors affecting forest soil bacteria in an arid area. Science of the Total Environment. doi:10.1016/j.scitotenv.2019.04.184

22.Zeng, Q., Dong, Y., An, S., 2016a. Bacterial community responses to soils along a latitudinal and vegetation gradient on the Loess Plateau, China. PLoS ONE. doi:10.1371/journal.pone.0152894

23.Zeng, Q., Jia, P., Wang, Y., Wang, H., Li, C., An, S., 2019b. The local environment regulates biogeographic patterns of soil fungal communities on the Loess Plateau. Catena. doi:10.1016/j.catena.2019.104220

24.Zeng, Q., Li, X., Dong, Y., An, S., Darboux, F., 2016b. Soil and plant components ecological stoichiometry in four steppe communities in the Loess Plateau of China. Catena. doi:10.1016/j.catena.2016.07.047

25.Zeng, Q., Liu, Y., Zhang, H., An, S., 2019c. Fast bacterial succession associated with the decomposition of Quercus wutaishanica litter on the Loess Plateau. Biogeochemistry. doi:10.1007/s10533-019-00575-4

26.Man Cheng, Zhijing Xue, Yun Xiang, Frédéric Darboux, Shaoshan An. 2015. Soil organic carbon sequestration in relation to revegetation on the Loess Plateau, China. Plant Soil, 397:31–42

27.Man Cheng, Yun Xiang, Zhijing Xue, Shaoshan An, Frédéric Darboux. 2015. Soil aggregation and intra-aggregate carbon fractions in relation to vegetation succession on the Loess Plateau, China. Catena 124, 77-84.

28.Man Cheng, ShaoShan An. 2015. Responses of soil nitrogen, phosphorous and organic matter to vegetation succession on the Loess Plateau of China. J Arid Land, 7(2): 216-223.

29.Dong Liu, Shao Shan An, Yi Cheng, Katharina Keiblinger and Yi Mei Huang. 2014. Variability in soil microbial biomass and diversity among different aggregate-size fractions of different land use types. Soil Science, 179: 242–249

30.Zhijing Xue, Shaoshan An, Man Cheng, Wanzhong Wang. 2014. Plant functional traits and soil microbial biomass in different vegetation zones on the Loess Plateau. Journal of Plant Interactions, 9(1):889-900.

31.Man Cheng, Zhijing Xue and Shaoshan An. 2015. Response of Soil Chemical and Microbial Properties to Vegetation Restoration on the Loess Plateau, China. Nature Environment and Pollution Technology, 14(1):1-8.

32.Zhijing Xue, Xuan Fang, Wanzhong Wang and Shaoshan An. 2014. Soil Organic Carbon Distribution Under Different Land Uses and Landscape Positions in Two Typical Watersheds of the Loess Plateau, China. Nature Environment and Pollution Technology, 13(4):693-700.

33.An Shao-shan, Chengyi, Liudong, Huang Yimei. 2013 . Effects of Revegetation on Soil Microbial Biomass,Enzyme Activities, and Nutrient Cycling on the Loess Plateau in China. Restoration Ecology, Restoration Ecology, 21(5):600–607

34.Shao-Shan An, Frédéric Darboux, Man Cheng. 2013. Revegetation as an efficient means of increasing soil aggregate stability on the Loess Plateau (China). Geoderma 209–210:75–85

35.Zhijing Xue, Man Cheng, Shaoshan An. 2013. Soil nitrogen distributions for different land uses and landscapepositions in a small watershed on Loess Plateau, China, Ecological Engineering 60 204– 213

36.Jiao feng, Wen Zhong min, An Shao-shan*. Changes in soil properties across a chronosequence of vegetation restoration on the Loess Plateau of China. 2011, Catena, 86(2), 110–116

37.Fang xuan, Xue zhijing, An shaoshan*. 2011. Soil organic carbon distribution in relation to land use and its storage in a small watershed of the Loess Plateau, China. Catena, 88, 6–13

38.An Shao-shan, Mentler Axel, Blum Winfried E. H. 2010. Soil aggregation, aggregate stability, organic carbon and nitrogen in different soil aggregate fractions under forest and shrub vegetation on the Loess Plateau, China. Catena 81: 226–233

39.An Shao-shan, Huang Yi-mei. 2010. Soil Organic Carbon Density and Land Restoration: Example of Southern Mountain Area of Ningxia Province, Northwest China. Communications in Soil Science and Plant Analysis, 41:181–189.

40.An Shaoshan, Huang Yimei, Zheng Fenli. 2009. Evaluation of soil microbial indices along a revegetation chronosequence in grassland soils on the Loess Plateau, Northwest China Applied Soil Ecology, 41:286–292

41.An Shaoshan, Zheng Fenli, Zhang Feng, et al. 2008. Soil quality degradation processes along a deforestation chronosequence in the Ziwuling area, China. Catena, 75:248-256

42.An shaoshan, Huang Yimei, Zheng Fenli,et al. 2008. Aggregate Characteristics During Natural Revegetation on the Loess Plateau. Pedosphere, 18(6):809-816

43.An Shaoshan, Mentler Axel, Acosta-Martínez Veronica, Winfried E. H. Blum. 2009. Soil microbial parameters and stability of soil aggregate fractionsunder different grassland communities on the Loess Plateau, China. Biologia, 64(3): 424-427

44.贾培龙,安韶山,李程程,曾全超,王宝荣,白雪娟.黄土高原森林带土壤养分和微生物量及其生态化学计量变化特征[J].水土保持学报,2020,34(01):315-321.

45.李程程,曾全超,贾培龙,安韶山.黄土高原土壤团聚体稳定性及抗蚀性能力经度变化特征[J].生态学报,2020,40(06):2039-2048.

46.杨轩,李娅芸,安韶山,曾全超.宁南山区典型植物根系分解特征及其对土壤养分的影响[J].生态学报,2019,39(08):2741-2751.

47.杨阳,朱元骏,安韶山.黄土高原生态水文过程研究进展[J].生态学报,2018,38(11):4052-4063.

48.白雪娟,曾全超,安韶山,张海鑫,王宝荣.子午岭人工林土壤微生物生物量及酶活性[J].应用生态学报,2018,29(08):2695-2704.

49.张海鑫,曾全超,安韶山,王宝荣,白雪娟.子午岭典型植被凋落叶-土壤养分与酶活性特征[J].生态学报,2018,38(07):2262-2270.

50.王宝荣,杨佳佳,安韶山,张海鑫,白雪娟.黄土丘陵区植被与地形特征对土壤和土壤微生物生物量生态化学计量特征的影响[J].应用生态学报,2018,29(01):247-259.

51.张海鑫,曾全超,安韶山,白雪娟,王宝荣.黄土高原子午岭林区主要林分生态化学计量学特征[J].自然资源学报,2017,32(06):1043-1052.

52.马任甜,安韶山,黄懿梅.黄土高原不同林龄刺槐林碳、氮、磷化学计量特征[J].应用生态学报,2017,28(09):2787-2793.

53.林芳,朱兆龙,曾全超,安韶山.延河流域三种土壤可蚀性K值估算方法比较[J].土壤学报,2017,54(05):1136-1146.

54.王宝荣,曾全超,安韶山,张海鑫,白雪娟.黄土高原子午岭林区两种天然次生林植物叶片-凋落叶-土壤生态化学计量特征[J].生态学报,2017,37(16):5461-5473.

55.方瑛,马任甜,安韶山,赵俊峰,肖礼. 黑岱沟露天煤矿排土场不同植被复垦土壤酶活性及理化性质研究[J]. 环境科学,2016,37(3):1121-1127

56.李娅芸,刘雷,安韶山,曾全超,李鑫. 应用Le Bissonnais法研究黄土丘陵区不同植被区及坡向对土壤团聚体稳定性和可蚀性的影响[J]. 自然资源学报,2016,31(2):287-298

57.向云,程曼,安韶山,曾全超. 延河流域不同立地条件下植物-枯落物-土壤生态化学计量学特征[J]. 自然资源学报,2015,31(10):1642-1652.

58.曾全超,李鑫,董扬红,李娅芸,程曼,安韶山. 陕北黄土高原土壤性质及其生态化学计量的纬度变化特征[J]. 自然资源学报,2015,30(5):870-879.

59.杨佳佳,安韶山,张宏,陈亚南,党廷辉,焦菊英. 黄土丘陵区小流域侵蚀环境对土壤微生物量及酶活性的影响[J]. 生态学报,2015,35(17):5666-5674.

60.薛志婧,马露莎,安韶山,王万忠. 黄土丘陵区小流域尺度土壤有机碳密度及储量[J]. 生态学报,2015,v35(9):2917-2925.

61.李鑫,曾全超,安韶山,董扬红,李娅芸. 黄土高原纸坊沟流域不同植物叶片及枯落物的生态化学计量学特征研究[J]. 环境科学,2015,36(3):1084-1091.

62.董扬红,曾全超,李娅芸,李鑫,张宏,安韶山. 黄土高原不同植被类型土壤活性有机碳组分分布特征[J]. 草地学报,2015,v.23(2):277-284.

63.李鑫,马瑞萍,安韶山,曾全超,李娅芸. 黄土高原不同植被带土壤团聚体有机碳和酶活性的粒径分布特征[J]. 应用生态学报,2015,26(8):2282-2290

64.曾全超,李鑫,董扬红,李娅芸,安韶山. 黄土高原不同乔木林土壤微生物量碳氮和溶解性碳氮的特征[J]. 生态学报,2015,35(11):3598-3605.

65.董扬红,曾全超,安韶山,张宏. 黄土高原不同林型植被对土壤活性有机碳及腐殖质的影响[J]. 水土保持学报,2015,29(1):143-148.

66.陈亚南,马露莎,张向茹,杨佳佳,安韶山. 陕西黄土高原刺槐枯落叶生态化学计量学特征[J]. 生态学报,2014,34(15):4412-4422.

67.张向茹,程曼,祝飞华,安韶山. 宁南山区半干旱草原典型植物立枯物的碳矿化特征[J]. 草地学报,2014,22(2):277-282.

68.曾全超,董扬红,李鑫,李娅芸,刘雷,安韶山. 基于Le Bissonnais法对黄土高原森林植被带土壤团聚体及土壤可蚀性特征研究[J]. 中国生态农业学报,2014, 22(9):1093-1101.

69.马露莎,陈亚南,张向茹,杨佳佳,安韶山. 黄土高原刺槐叶片生态化学计量学特征[J]. 水土保持研究,2014, 21(3):57-61+67.

70.杨佳佳,张向茹,马露莎,陈亚南,党廷辉,安韶山. 黄土高原刺槐林不同组分生态化学计量关系研究[J]. 土壤学报,2014,51(1):133-142

71.曾全超,李娅芸,刘雷,安韶山. 黄土高原草地植被土壤团聚体特征与可蚀性分析[J]. 草地学报,2014, 22(4):743-749

72.马瑞萍,安韶山,党廷辉,戴相林. 黄土高原不同植物群落土壤团聚体中有机碳和酶活性研究[J]. 土壤学报,2014, 51(1):104-113

73.刘雷,安韶山,黄华伟. 应用Le Bissonnais法研究黄土丘陵区植被类型对土壤团聚体稳定性的影响[J]. 生态学报,2013,33(20):6670-6680

74.朱秋莲,程曼,安韶山,薛志婧. 宁南山区植被恢复对土壤团聚体特征及腐殖质分布的影响[J]. 水土保持学报,2013,27(4):247-251+257

75.程曼,朱秋莲,刘雷,安韶山. 宁南山区植被恢复对土壤团聚体水稳定及有机碳粒径分布的影响[J]. 生态学报,2013,33(9):2835-2844.

76.朱秋莲,邢肖毅,程曼,薛志婧,安韶山. 宁南山区典型植物根际与非根际土壤碳、氮形态[J]. 应用生态学报,2013,24(4):983-988

77.马瑞萍,刘雷,安韶山,党廷辉. 黄土丘陵区不同植被群落土壤团聚体有机碳及其组分的分布[J]. 中国生态农业学报,2013,21(3):324-332.

78.赵彤,蒋跃利,闫浩,黄懿梅,安韶山. 黄土丘陵区不同坡向对土壤微生物生物量和可溶性有机碳的影响[J]. 环境科学,2013,34(8):3223-3230

79.朱秋莲,邢肖毅,张宏,安韶山. 黄土丘陵沟壑区不同植被区土壤生态化学计量特征[J]. 生态学报,2013,33(15):4674-4682

80.张宏,黄懿梅,安韶山,邢肖毅. 黄土高原森林带植被群落下土壤活性有机碳研究[J]. 水土保持研究,2013,20(3):65-70+77

81.张向茹,马露莎,陈亚南,杨佳佳,安韶山. 黄土高原不同纬度下刺槐林土壤生态化学计量学特征研究[J]. 土壤学报,2013,50(4):818-825.

82.邢肖毅,黄懿梅,黄海波,安韶山,刘栋. 黄土丘陵区子午岭不同植物群落下土壤氮素及相关酶活性的特征[J]. 生态学报,2012,32(5):1403-1411

83.侯晓瑞,薛志婧,程曼,安韶山. 黄土丘陵区纸坊沟小流域土壤有机碳储量研究[J]. 水土保持通报,2012,32(2):21-25

84.刘栋,黄懿梅,安韶山. 黄土丘陵区人工刺槐林恢复过程中土壤氮素与微生物活性的变化[J]. 中国生态农业学报,2012,20(3):322-329

85.张宏,黄懿梅,祁金花,安韶山. 温度和水分对黄土丘陵区3种典型土地利用方式下土壤释放CO2潜力的影响[J]. 中国生态农业学报,2011,19(4):731-737.

86.安韶山,李国辉,陈利顶. 宁南山区典型植物根际与非根际土壤微生物功能多样性[J]. 生态学报,2011,31(18):5225-5234

87.薛志婧,侯晓瑞,程曼,安韶山. 黄土丘陵区小流域尺度上土壤有机碳空间异质性[J]. 水土保持学报,2011,25(3):160-163+168

88.祁金花,黄懿梅,张宏,安韶山. 黄土丘陵区不同土地利用下土壤释放N2O潜力的影响因素[J]. 生态学报,2011,31(13):3778-3787

89.郭曼,郑粉莉,安韶山,刘雨,安娟. 植被自然恢复过程中土壤有机碳密度与微生物量碳动态变化[J]. 水土保持学报,2010,24(1):229-232+238.

90.郭曼,郑粉莉,安韶山,刘雨,王彬,Frederic Darboux. 应用Le Bissonnais法研究黄土丘陵区土壤团聚体稳定性[J]. 中国水土保持科学,2010,8(2):68-73

91.程曼,成毅,安韶山. 宁南山区退耕对土壤微生物生物量和酶活性的影响[J]. 水土保持研究,2010,17(5):142-147

92.成毅,安韶山,马云飞. 宁南山区不同坡位土壤微生物生物量和酶活性的分布特征[J]. 水土保持研究,2010,17(5):148-153

93.焦峰,温仲明,安韶山. 基于属性识别模型的退耕地土壤水分综合评价[J]. 水土保持研究,2010,17(4):52-56

94.焦峰,温仲明,从怀军,安韶山. 基于属性识别模型的退耕地土壤肥力综合评价[J]. 水土保持学报,2010,24(5):204-207+237

95.从怀军,成毅,安韶山,李第红. 黄土丘陵区不同植被恢复措施对土壤养分和微生物量C、N、P的影响[J]. 水土保持学报,2010,24(4):217-221

96.郭曼,郑粉莉,和文祥,安韶山,刘雨,安娟. 黄土丘陵区不同退耕年限植被多样性变化及其与土壤养分和酶活性的关系[J]. 土壤学报,47(5):979-986.

97.李国辉,陈庆芳,黄懿梅,安韶山,郑粉莉,陈利顶. 黄土高原典型植物根际对土壤微生物生物量碳、氮、磷和基础呼吸的影响[J]. 生态学报,2010,30(4):976-983.

98.李国辉,成毅,安韶山*.黄土高原典型植物根际对土壤微生物生物量碳、氮、磷和基础呼吸的影响. 生态学报,2010,30(4)976-983. (通讯作者)

99.成毅,安韶山*,李第红.宁夏黄土丘陵区植被恢复对土壤养分和微生物生物量的影响.中国生态农业学报, 2010,18(2): 261−266. (通讯作者)

100.安韶山,张扬,郑粉莉.黄土丘陵区土壤团聚体分形特征及其对植被恢复的响应.中国水土保持科学, 2008, 6(2):66-70

101.安韶山,黄懿梅,郑粉莉.宁夏黄土区不同植物群落土地利用方式对土壤质量的影响.植物营养与肥料学报, 2008,14(2):300 - 307

102.安韶山,张玄,张扬.黄土丘陵区植被恢复中不同粒级土壤团聚体有机碳的分布特征.水土保持学报, 2007, 21(6):109-113

103.安韶山,黄懿梅,刘梦云. 宁南山区土壤酶活性特征及其与肥力因子的关系. 中国生态农业学报, 2007, 15(5):55-58

104.安韶山,黄懿梅.黄土丘陵区柠条林改良土壤作用的研究. 林业科学,2006,42(1):70-74

105.安韶山,常庆瑞,刘京. 农牧交错带土地沙化的本质及形成研究 生态学报,2003,23(1):106-111

106.安韶山,黄懿梅,郑粉莉.用典范相关分析研究宁南宽谷丘陵区不同土地利用方式土壤酶活性与肥力因子的关系. 植物营养与肥料学报,2005,11(5):704-709

107.安韶山, 黄懿梅, 郑粉莉. 黄土丘陵区草地土壤脲酶活性特征及其与土壤性质的关系. 草地学报,2005,13(3):233-237

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