Bentonite-humic acid improves soil organic carbon, microbial biomass, enzyme activities and grain quality in a sandy soil cropped to maize (Zea mays L.) in a semi-arid region
文献类型: 外文期刊
第一作者: Zhou Lei
作者: Zhou Lei;Zhao Bao-ping;Liu Jing-hui;Zhou Lei;Zhou Lei;Monreal, Carlos M.;Mclaughlin, Neil B.;Xu Sheng-tao;Hao Guo-cheng
作者机构:
关键词: bentonite-humic acid; soil organic carbon; microbial biomass; enzyme activity; grain quality; sandy soil
期刊名称:JOURNAL OF INTEGRATIVE AGRICULTURE ( 影响因子:4.384; 五年影响因子:4.021 )
ISSN: 2095-3119
年卷期: 2022 年 21 卷 1 期
页码:
收录情况: SCI
摘要: A bentonite-humic acid (B-HA) mixture added to degraded soils may improve soil physical and hydraulic properties, due to effects such as improved soil structure and increased water and nutrient retention, but its effect on soil physicochemical and biological properties, and grain quality is largely unknown. The effect of B-HA, added at 30 Mg ha-1, was studied at 1, 3, 5 and 7 years after its addition to a degraded sandy soil in a semi-arid region of China. The addition of B-HA significantly increased water-filled pore space and soil organic carbon, especially at 3 to 5 years after its soil addition to the soil. Amending the sandy soil with B-HA also increased the content of microbial biomass (MB)-carbon, -nitrogen and -phosphorus, and the activities of urease, invertase, catalase and alkaline phosphatase. The significant effect of maize (Zea mays L.) growth stage on soil MB and enzyme activities accounted for 58 and 84% of their total variation, respectively. In comparison, B-HA accounted for 8% of the total variability for each of the same two variables. B-HA significantly enhanced soil properties and the uptake of N and P by maize in semi-arid areas. The use of B-HA product would be an effective management strategy to reclaim degraded sandy soils and foster sustainable agriculture production in northeast China and regions of the world with similar soils and climate.
分类号:
- 相关文献
作者其他论文 更多>>
-
Soil Amendment Combining Bentonite and Maize Straw Improves Soil Quality Cropped to Oat in a Semi-Arid Region
作者:Zhang, Lanying;Mi, Junzhen;Zhao, Baoping;Cui, Xuemei;Hu, Kexin;Liu, Jinghui;Zhang, Lanying;Mclaughlin, Neil B.
关键词:bentonite; organic carbon; maize straw; soil aggregation; soil amendments
-
Tillage effects on residue-derived carbon distribution among soil fractions in a Mollisol
作者:Zhang, Yan;Liang, Aizhen;Huang, Dandan;Zhang, Shaoqing;Zhang, Yang;Gao, Yan;Chen, Xuewen;Zhang, Shixiu;Gregorich, Edward G.;McLaughlin, Neil B.;Guo, Yafei;Wang, Yongjun;Zhang, Yang
关键词:Residue-derived carbon; Tillage practices; Physical and chemical fractions
-
Improvement in gravel-mulched land soil nutrient and bacterial community diversity with Lonicera japonica
作者:Wang, Xing;Ma, Bin;Liu, Hua;Bao, Yangmei;Li, Ming;Wang, Xing;Ma, Bin;Guo, Lanping;Mclaughlin, Neil B.
关键词:gravel-mulched land; Lonicera japonica; soil physical and chemical indicators; enzyme activity; bacterial community
-
Improvement in dryland crop performance and soil properties with multiple annual applications of lignite-derived humic amendment
作者:Ma, Bin;Ma, Bao-Luo;Liu, Jinghui;Ma, Bin;Ma, Bao-Luo;McLaughlin, Neil B.;Ma, Bin;Li, Ming
关键词:Dryland oat yield; Grain quality; Humic amendment; Carbon sequestration; Enzyme activity; Ecological effect
-
Residual Effect of Bentonite-Humic Acid Amendment on Soil Health and Crop Performance 4-5 Years after Initial Application in a Dryland Ecosystem
作者:Bin Ma;Bao, Yangmei;Li, Ming;Bin Ma;Ma, Baoluo;McLaughlin, Neil B.;Bin Ma;Liu, Jinghui
关键词:sustainable dryland farming; clay soil amendment; soil water use; organic matter; enzyme activity; nutrient turnover
-
Pollen grain number and viability contribute to variation in effective ovule number among oilseed rape genotypes
作者:Guo, Xiao;Gao, Yajun;Guo, Xiao;Guo, Xiao;Guo, Xiao;Ma, Bao-Luo;McLaughlin, Neil B.;Gao, Yajun;Wu, Xiaoming;Chen, Biyun
关键词:Effective ovule number; Pollen grain number; Pollen viability; Ovule abortion rate; Heart stage
-
Changes in Organic Carbon Components and Structure of Black Rhizosphere Soil Under Long-Term Different Fertilization
作者:Chen Lei;Hao Xiao-yu;Ma Xing-zhu;Zhou Bao-ku;Chen Lei;Wang Hong;Wei Dan;Zhou Lei;Liu Rong-le
关键词:Soil organic carbon; Soybean rhizosphere; Black soil; C-13-NMR