Chinese Journal of Applied Ecology ›› 2019, Vol. 30 ›› Issue (4): 1227-1234.doi: 10.13287/j.1001-9332.201904.001
Previous Articles Next Articles
WANG Qian-zi1,2, WANG Yu1,2, SUN Zhi-mei1*, LIU Jia1, NIU Shao-bin1, XUE Cheng1, MA Wen-qi1
Received:
2018-08-16
Online:
2019-04-20
Published:
2019-04-20
Contact:
* E-mail: sunzhm2002@163.com
Supported by:
WANG Qian-zi, WANG Yu, SUN Zhi-mei, LIU Jia, NIU Shao-bin, XUE Cheng, MA Wen-qi. Amelioration effect of humic acid on saline-alkali soil[J]. Chinese Journal of Applied Ecology, 2019, 30(4): 1227-1234.
[1] Wang C-Y (王春裕). Saline Soil in Northeast China. Beijing: Science Press, 2004 (in Chinese) [2] Zandonadi DB, Canellas LP, Façanha AR. Indolacetic and humic acids induce lateral root development through a concerted plasmalemma and tonoplast H+ pumps activation. Planta, 2007, 225: 1583-1595 [3] Clark RB, Baligar VC. Growth of forage legumes and grasses in acidic soil amended with flue gas desulfurization products. Communications in Soil Science and Plant Analysis, 2003, 34: 157-180 [4] Sun Z-J (孙在金), Huang Z-B (黄占斌), Lu Z-H (陆兆华). Improvement effects of different environmental materials on coastal saline-alkali soil in Yellow River Delta. Journal of Soil and Water Conservation (水土保持学报), 2013, 27(4): 186-190 (in Chinese) [5] Yang H-B (杨海波), Chen Y (陈 运), Hou X-W (侯宪文), et al. Effects of biology humic acid on the component of soil carbon. Chinese Agricultural Science Bulletin (中国农学通报), 2015, 31(20): 137-141 (in Chinese) [6] Pamela C, Louise N, Joseph WK. Agricultural uses of plant biostimulants. Plant and Soil, 2014, 383: 3-41 [7] Turgay OC, Karaca A, Unver S, et al. Effects of coal-derived humic substance on some soil properties and bread wheat yield. Communications in Soil Science and Plant Analysis, 2011, 42: 1050-1070 [8] Gu D-Y (谷端银), Wang X-F (王秀峰), Yang F-J (杨凤娟), et al. Effects of purified humic acid on growth and nutrient absorption of cucumber (Cucumis sativus) seedlings under low nitrogen stress. Chinese Journal of Applied Ecology (应用生态学报), 2016, 27(8): 2535-2542 (in Chinese) [9] Li S (李 爽). The Research on Conditions Optimization of Humic Acid Extraction from Different Sources and Its Biological Activity. Master Thesis. Changsha: Hunan Agricultural University, 2016 (in Chinese) [10] Duan P-P (段鹏鹏), Cong Y-H (丛耀辉), Xu W-J (徐文静), et al. Effect of combined application of nitrogen fertilizer and manure on the dynamic of soil soluble N in greenhouse cultivation. Scientia Agricultura Sinica (中国农业科学), 2015, 48(23): 4717-4727 (in Chinese) [11] Bao S-D (鲍士旦). Soil and Agricultural Chemistry Analysis. Beijing: China Agriculture Press, 2000 (in Chinese) [12] Zhou X-G (周晓光). Soil Soluble Nitrogen in Organic vs Conventional Vegetable Production Systems. Master Thesis. Shanghai: Shanghai Jiaotong University, 2017 (in Chinese) [13] Nan J-K (南江宽), Chen X-M (陈效民), Wang X-Y (王晓洋), et al. Effects of gypsum and fertilizers amendment on reducing salinity and preventing alkalization of coastal saline soil. Journal of Nanjing Agricultural University (南京农业大学学报), 2014, 37(4): 103-108 (in Chinese) [14] Zhang M (张 萌), Xiao H-J (肖厚军), Zhao H (赵欢), et al. Responses of dry matter, nitrogen accumulation and distribution and nitrogen utilization of pepper to new-type fertilizers in Guizhou yellow soil. Chinese Journal of Applied Ecology (应用生态学报), 2016, 27(9): 2983-2990 (in Chinese) [15] Zeng W-A (曾维爱), Zeng M (曾 敏), Zhou H (周航), et al. Improvement of alkaline tobacco field soil by combined application of humic acid and ferric sulfate. Journal of Soil and Water Conservation (水土保持学报), 2013, 27(3): 170-173 (in Chinese) [16] Wang F-Y (王福友), Wang C (王 冲), Liu Q-Q (刘全清), et al. Improve effect of humic acid, earthworm protein fertilizer and vermicompost on coastal saline soils. Journal of China Agricultural University (中国农业大学学报), 2015, 20(5): 89-94 (in Chinese) [17] Zou D-Y (邹德乙). Humic acid improves salinized soil and reduces saline-alkali harm. Humic Acid (腐植酸), 2008(4): 43-44 (in Chinese) [18] Zhang YP, Zhang XZ. Extraction and characterization of biotechnology humic acid of fermented furfural residue. Agricultural Science and Technology, 2015, 6: 1180-1182 [19] Bama KS, Selvakumari G, Santhi R, et al. Effect of humic acid on nutrient release pattern in an alfisol. Madras Agricultural Journal, 2003, 90: 665-670 [20] Zhou S (周 爽), Tan J (谭 钧), Xing W-J (邢文军), et al. Strategies in efficient utilization of soil NPK nutrients with humic acid amendments. Humic Acid (腐植酸), 2008(4): 43-44 (in Chinese) [21] Lü D-Q (吕殿青), Zhang S-L (张树兰), Yang X-Y (杨学云). Effect of supplying C and N on the mineralization, immobilization and priming effect of soil nitrogen. Plant Nutrition and Fertilizer Science (植物营养与肥料学报), 2007, 13(2): 223-229 (in Chinese) [22] Perassi I, Borgnino L. Adsorption and surface precipitation of phosphate onto CaCO3-montmorillonite: Effect of pH, ionic strength and competition with humic acid. Geoderma, 2014, 232: 600-608 [23] Zhang S-Q (张水勤), Yuan L (袁 亮), Lin Z-A (林治安), et al. Advances in humic acid for promoting plant growth and its mechanism. Journal of Plant Nutrition and Fertilizer (植物营养与肥料学报), 2017, 23(4): 1065-1076 (in Chinese) [24] Li Z-J (李志坚), Lin Z-A (林治安), Zhao B-Q (赵秉强), et al. Effects of value-added phosphate fertili-zers on transformation of inorganic phosphorus in calca-reous soils. Journal of Plant Nutrition and Fertilizer (植物营养与肥料学报), 2013, 19(5): 1183-1191 (in Chinese) [25] Pei D-J (裴端杰), Yuan T-Y (袁天佑), Wang J-Z (王俊忠), et al. Effects of application of humic acid on yield, nitrogen use efficiency of summer maize. Scientia Agricultura Sinica (中国农业科学), 2017, 50(11): 2189-2198 (in Chinese) [26] DeKock PC. Influence of humic acids on plant growth. Science, 1955, 121: 473-474 [27] Zhao L-J (赵励军). A Research on the Humic Acid of Different Sources Accelerates the Growth Activity of Plants and Its Mechanism of Action. Master Thesis. Harbin: Harbin University of Science and Technology, 2005 (in Chinese) [28] Zhuang Z-D (庄振东), Li X-H (李絮花). Effects of humic acid nitrogen fertilization on corn yield, nitrogen utilization and nitrogen loss. Journal of Plant Nutrition and Fertilizer (植物营养与肥料学报), 2016, 22(5): 1232-1239 (in Chinese) [29] Akhtar K, Shah SNM, Ali A, et al. Effects of humic acid and crop residues on soil and wheat nitrogen contents. American Journal of Plant Sciences, 2014, 5: 1277-1284 |
[1] | WANG Jianwu, XU Sen, JI Biyong, DU Qun. Effects of topography and stand spatial structure on the diameter at breast height growth of major pioneer tree species of natural broad-leaved mixed forests in Zhejiang Province, China [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 298-306. |
[2] | GAN Feifei, ZHAO Lijun, HUO Chanchan, WANG Sheng. Effects of light and water availability on the growth of Aglaia duperreana seedlings [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 439-446. |
[3] | ZHANG Xiuying, CAI Jiangping, WANG Cong, JIANG Zhiyang, LI Hui, WANG Zhengwen, JIANG Yong, ZHANG Yuge. Effects of different fertilization patterns on soil improvement and vegetation restoration of desertified grassland in northwest Liaoning Province, China [J]. Chinese Journal of Applied Ecology, 2024, 35(1): 55-61. |
[4] | ZHANG Yating, YE Wangmin, XIONG Decheng, WU Chen, HUANG Jinxue, CHEN Shidong, YANG Zhijie. Seasonal dynamics in photosynthetic characteristics and growth of Cunninghamia lanceolata saplings and their response to soil warming [J]. Chinese Journal of Applied Ecology, 2024, 35(1): 195-202. |
[5] | LI Changqing, JI Meng, MA Mengmeng, WANG Shuo, LIU Huan, SUN Zhimei. Effects of combined natural synergists and chemical inhibitors on yield, nitrogen utilization and balance in wheat/maize rotation system [J]. Chinese Journal of Applied Ecology, 2023, 34(9): 2391-2397. |
[6] | XIE Pingping, ZHANG Boyi, DONG Yibo, LYU Pengcheng, DU Mingchao, ZHANG Xianliang. Differences in ecological resilience of radial growth between Larix principis-rupprechtii and Picea meyeri after drought [J]. Chinese Journal of Applied Ecology, 2023, 34(7): 1779-1786. |
[7] | MA Fanqiang, JIAN Zunji, GUO Quanshui, QIN Aili, PEI Shunxiang, ZHANG Guangjian, HUANG Jilan, ZHOU Liping. Effects of mixed substrates of different agricultural and forestry residues on the cutting seedlings of Thuja sutchuenensis [J]. Chinese Journal of Applied Ecology, 2023, 34(7): 1817-1824. |
[8] | ZHU Zhenchuang, SUN Shijun, ZHU Miaomiao, LI Dongyi, WANG Zhe, SHEN Ruxuan, CHEN Wei. Effects of groundwater depth on groundwater recharge and soybean growth dynamics in Northeast China Plain [J]. Chinese Journal of Applied Ecology, 2023, 34(7): 1871-1882. |
[9] | ZHANG Zepeng, JIN Hongyu, CHI Miao, SHAO Huili, LI Lei. Growth, mortality, and resource utilization of Gymnocypris chui in Langcuo Lake of Tibetan Plateau, China [J]. Chinese Journal of Applied Ecology, 2023, 34(7): 1988-1994. |
[10] | LIU Akang, MA Ruiqi, WANG Demei, WANG Yanjie, YANG Yushuang, ZHAO Guangcai, CHANG Xuhong. Effect of accumulated temperature before overwintering on wheat seedling growth status in north winter wheat area of China. [J]. Chinese Journal of Applied Ecology, 2023, 34(3): 679-687. |
[11] | ZHANG Hongzhi, ZHANG Wen’e, FAN Weiguo, OUYANG Zhangwei, CAI Hu, HAO Zhenkun, WANG Ruipu, PAN Xuejun. Effects of walnut/Rosa roxburghii compound planting on growth, fruit yield, quality of Rosa roxburghii and soil properties. [J]. Chinese Journal of Applied Ecology, 2023, 34(3): 699-707. |
[12] | ZHAO Jiyu, LI Ruiwen, WANG Qi, WANG Shunyuan, TIAN Yuchun, ZHAO Jinmeng, REN Baizhao, ZHAO Bin, LIU Peng, ZHANG Jiwang. Effects of seed grading on population regularity degree and yield of summer maize [J]. Chinese Journal of Applied Ecology, 2023, 34(12): 3333-3339. |
[13] | CHEN Yue, ZHAO Gengxing, CHANG Chunyan, WANG Zhuoran, LI Yinshuai, ZHAO Huansan, ZHANG Shuwei, PAN Jingrui. Grain yield estimation of wheat-maize rotation cultivated land based on Sentinel-2 multi-spectral image: A case study in Caoxian County, Shandong, China [J]. Chinese Journal of Applied Ecology, 2023, 34(12): 3347-3356. |
[14] | XIANG Jian, SUN Xi, WANG Cheng, Zhaxiyangzong, SHI Wenzhu, WANG Genmei, ZHANG Huanchao. Effects of biochar application on nitrogen transformation and N2O emission in a coastal saline-alkali soil [J]. Chinese Journal of Applied Ecology, 2023, 34(11): 2969-2977. |
[15] | GU Jiacheng, WANG Wenmin, WANG Zhen, LI Luhua, JIANG Guiju, WANG Jiaping, CHENG Zhibo. Effects of maize and soybean intercropping on soil phosphorus bioavailability and microbial community structure in rhizosphere. [J]. Chinese Journal of Applied Ecology, 2023, 34(11): 3030-3038. |
Viewed | ||||||||||||||||||||||||||||||||||||||||||||||||||
Full text 486
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
Abstract 824
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||