
填充改良物条件下打孔密度对苏打盐碱水田耕层改良效果及水稻产量的影响
收稿日期: 2022-08-02
网络出版日期: 2022-11-17
基金资助
吉林省科技厅发展计划项目(20210202014NC);国家水稻产业技术体系项目(CAS-01-25)
Effects of Drilling Density on Plough Layer Improvement and Rice Yield in Saline-sodic Soil
Received date: 2022-08-02
Online published: 2022-11-17
苏打盐碱地是我国重要的后备耕地资源,但因其土壤理化性质恶劣,种植作物产量低。改良和合理利用苏打盐碱地对于区域农业发展具有重要意义,但改良周期长、难度大、成本高。本研究通过大田试验,设置5个打孔密度,分析了填充改良物条件下不同打孔密度对土壤团聚体结构、pH值、含盐量以及水稻产量的影响。结果表明,与不打孔对照相比,填充改良物条件下打孔处理增加了耕层土壤水稳定性团聚体的含量,降低了耕层土壤pH值和含盐量,增加了水稻的有效穗数和结实率,从而提高了水稻产量。随着打孔密度的增加,耕层土壤改良效果有不同程度的提高,与不打孔对照相比,当打孔密度达到15孔/m2时,耕层土壤中水稳定性团聚体含量提高26.22% ,土壤pH 值下降4.75%,含盐量降低10.16%,水稻的实际产量增加72.57%。继续增加打孔密度,水稻产量有所下降,但与15孔/m2的打孔密度处理差异不显著。综合生产实际和可操作性,打孔密度为15孔/m2或每1 m2的打孔面积为0.12 m2可作为改良中重度苏打盐碱水田水稻种植的合理打孔方案。结果为苏打盐碱水田改良技术创新提供了理论依据。
李帅志, 侯立刚, 刘亮, 马巍, 刘晓亮, 林喆 . 填充改良物条件下打孔密度对苏打盐碱水田耕层改良效果及水稻产量的影响[J]. 中国稻米, 2022 , 28(6) : 59 -62 . DOI: 10.3969/j.issn.1006-8082.2022.06.012
Soda saline-alkali soil is an important reserve cultivated land resource in China, but its soil physical and chemical properties are poor and the yield of planted crops is low. The improvement and rational utilization of soda saline-alkali land has a great significance for the development of regional agriculture, but the improvement cycle is long, difficult and costly. In this study, through field experiments, five drilling densities were set up to analyze the effects of different drilling densities on soil aggregate structure, pH value, soil salinity and rice yield under the condition of filling amendments. The results showed that, compared with the control without drilling, the drilling treatment increased the content of soil water-stable aggregates, decreased the pH and salinity in plough layer soil, and increased the effective panicle number and seed setting rate of rice, thereby increased rice yield. With the increase of drilling density, the plough layer soil improvement was improved. Compared with the control without drilling, when the drilling density reached 15 holes/m2, the content of water stable aggregates in plough layer soil and rice yield increased by 26.22% and 72.57%, pH value and soil salinity decreased by 4.75% and 10.16%, respectively. Continuing to increase the drilling density, the rice yield decreased, but the difference was not significant with the hole punching density treatment of 15 holes/m2. Comprehensive production practice and operability, drilling density of 15 holes/m2 or drilling area of 0.12 m2 per 1.0 m2 can be used as a reasonable drilling plan for improving moderate and severe soda saline-alkali paddy fields. The results provide a theoretical basis for the innovation of soda saline-alkali paddy field improvement technology.
Key words: soda saline-sodic land; drilling density; rice; yield; soil improvement
| [1] | 王春裕, 武志杰, 石元亮, 等. 中国东北地区的盐渍土资源[J]. 土壤通报, 2004, 35(5):643-647. |
| [2] | 李秀军, 李取生, 王志春, 等. 松嫩平原西部盐碱地特点及合理利用研究[J]. 农业现代化研究, 2002(5):361-364. |
| [3] | 陈国双, 刘宏远, 李秀军, 等. 枸杞生态林改良苏打盐碱地的方法[P]. 中国:CN110915345A,2020-03-27. |
| [4] | ZHANG J L, SHI H Z. Physiological and molecular mechanisms of plant salt tolerance[J]. Photosynthesis Research, 2013, 115: 1-22. |
| [5] | GUPTA B, HUANG B R. Mechanism of salinity tolerance in plants: Physiological, biochemical, and molecular characterization[J]. International Journal of Genomics, 2014, doi: 10.1155/2014/701596. |
| [6] | 张翼夫, 李问盈, 胡红, 等. 盐碱地改良研究现状及展望[J]. 江苏农业科学, 2017, 45(18):7-10. |
| [7] | 朱建峰, 崔振荣, 吴春红, 等. 我国盐碱地绿化研究进展与展望[J]. 世界林业研究, 2018, 31(4):70-75. |
| [8] | 商振芳, 谢思绮, 罗旺, 等. 我国盐碱地现状及其改良技术研究进展[C]// 2019中国环境科学学会科学技术年会论文集(第三卷). 北京: 中国环境科学学会, 2019:386-395. |
| [9] | 刘晓波, 杨春华, 徐耀华, 等. 打孔对草坪枯草层及坪床土壤微生物活性和有机质含量的影响[J]. 草地学报, 2013, 21(1):174-179. |
| [10] | 张峰举, 许兴, 肖国举. 脱硫石膏对碱化土壤团聚体特征的影响[J]. 干旱地区农业研究, 2013, 31(6):108-114. |
| [11] | 张峰举, 肖国举, 罗成科, 等. 脱硫石膏对次生碱化盐土的改良效果[J]. 河南农业科学, 2010(2):49-53. |
| [12] | 张凤霞. 孔施有机物对苹果根区土壤性质及根系与新梢生长的影响[D]. 泰安: 山东农业大学, 2019. |
| [13] | 张翼夫, 李洪文, 胡红, 等. 打孔灌沙促进漫灌下盐碱土水分下渗提高脱盐效果[J]. 农业工程学报, 2017, 33(6):76-83. |
| [14] | 于淑会, 高会, 尚国琲, 等. 暗管排水对高水位盐碱地的治理效果及服务价值影响分析[J]. 河北地质大学学报, 2021, 44(4):67-73. |
| [15] | CAMBARDELLA C A, ELLIOTT E T. Carbon and nitrogen distribution in aggregates from cultivated and native grassland soils[J]. Soil Science Society of America Journal, 1993, 57(4): 1 071-1 076. |
| [16] | 丁俊杰, 刘凯, 姚亮亮, 等. 微生物菌剂及硅肥对盐碱地水稻生长发育及土壤环境的影响[J]. 中国稻米, 2022, 28(1):63-66. |
| [17] | 逄焕成. 上膜下秸隔抑盐机理与盐碱地改良效应[M]. 北京: 科学出版社, 2019: 3. |
| [18] | 王素君, 魏剑, 苏亚勋, 等. 滨海吹填土快速脱盐技术的初步研究[J]. 天津农业科学, 2011, 17(6):52-55. |
| [19] | 王小彬, 闫湘, 李秀英, 等. 燃煤烟气脱硫石膏农用的环境安全风险[J]. 中国农业科学, 2018, 51(5):926-939. |
| [20] | FU Y R, HE K, ZHOU C L, et al. Improvement of saline-alkaline soil via flue gas desulfurization gypsum and safety analysis of the associated heavy metals[J]. Journal of Physics: Conference Series, 2021, doi: 10.1088/1742-6596/1838/1/012051. |
| [21] | 李彬, 王志春, 梁正伟, 等. 吉林省大安市苏打碱土盐化与碱化的关系[J]. 干旱地区农业研究, 2007, 25(2):151-155. |
| [22] | 陈恩凤, 关连珠, 汪景宽, 等. 土壤特征微团聚体的组成比例与肥力评价[J]. 土壤学报, 2001, 38(1):49-53. |
| [23] | 廖栩, 杨帆, 王志春, 等. 腐解秸秆和脱硫石膏添加对苏打盐渍土淋洗脱盐效率的影响[J]. 土壤与作物, 2020, 9(1):74-82. |
| [24] | 杜学军, 闫彬伟, 许紫峻, 等. 脱硫石膏对苏打盐碱土水盐入渗过程的影响[J]. 干旱地区农业研究, 2021, 39(3):179-183. |
| [25] | 朱明霞, 高显颖, 邵玺文, 等. 不同浓度盐碱胁迫对水稻生长发育及产量的影响[J]. 吉林农业科学, 2014, 39(6):12-16. |
/
| 〈 |
|
〉 |