
氮肥配施纤维素纳米晶副产物对苏打盐碱地粳稻产量及品质的影响
第一作者:2126728399@qq.com
收稿日期: 2024-08-19
网络出版日期: 2025-03-12
基金资助
黑龙江八一农垦大学揭榜挂帅“黑土保护及产能提升关键技术研究与示范”(JB20220001);资源化利用木糖渣等生产系列肥料的研发(2021066)
Effects of Nitrogen Fertilizer Combined with Cellulose Nanocrystals By-products on Yield and Quality of Japonica Rice in Soda Saline-alkali Land
1st author: 2126728399@qq.com
Received date: 2024-08-19
Online published: 2025-03-12
为资源化利用纤维素纳米晶(Cellulose nanocrystals,CNCs)副产物及降低化肥施用量,将其配制成水稻返青分蘖肥,于2023年在黑龙江大庆苏打盐碱地区进行了田间试验。试验设置4个处理,即常规施氮肥处理(CK)、CNCs副产物+常规施氮肥处理(A1)、CNCs副产物+70%常规施氮量处理(A2)、CNCs副产物+70%常规施氮量+500 mL/667 m2贝莱斯芽孢杆菌(Bacillus velezensis)菌液处理(A3),测定不同处理下常规粳稻品种绥粳18产量以及稻米品质性状指标。结果表明,水稻理论和实际产量高低顺序均为A1>A3>CK>A2,其中,A1处理的实际产量比CK、A2、A3处理分别提高26.17%、39.23%和24.30%。添加CNCs副产物可以提高水稻产量构成因子、一次及二次枝梗性状,同时可以显著提升稻米加工品质,但显著降低粒长、长宽比、蛋白质含量以及直链淀粉含量。与A2处理相比,A3处理可以显著提高水稻穗质量、穗着粒密度、产量构成因子、二次枝梗结实率和加工品质等性状。所有处理对稻米的蒸煮食味品质影响均极小。表明CNCs副产物和B. velezensis结合使用能够提升返青分蘖肥的肥效,显著提高水稻产量和稻米品质。
范忠玲, 洪秀杰, 金佳悦, 姜诏, 刘德强, 毕少杰, 王彦杰 . 氮肥配施纤维素纳米晶副产物对苏打盐碱地粳稻产量及品质的影响[J]. 中国稻米, 2025 , 31(2) : 43 -47 . DOI: 10.3969/j.issn.1006-8082.2025.02.007
In order to recycle the by-products of cellulose nanocrystals (CNCs) for resource utilization and reduce the application of chemical fertilizers, they were formulated into a rice greening and tillering fertilizer, and a field experiment was conducted in the soda saline alkali area of Daqing, Heilongjiang Province in 2023. The experiment set up four treatments, namely conventional nitrogen fertilizer treatment (CK), CNCs by-products+conventional nitrogen fertilizer treatment (A1), CNCs by-products+70% conventional nitrogen fertilizer treatment(A2), CNCs by-products+70% conventional nitrogen fertilizer treatment+500 mL/667 m2 Bacillus velezensis bacterial liquid (A3). The yield and quality traits of conventional japonica rice variety Suijing 18 were measured under different treatments. The results indicated that the theoretical and actual yield of rice were in the order of A1>A3>CK>A2. The actual yield of rice in the A1 treatment increased by 26.17%, 39.23%, and 24.30% compared to CK, A2, and A3 treatments, respectively. Adding CNCs by-products could improve rice yield components, primary and secondary stem traits, and significantly enhance rice processing quality, but significantly reduce grain length, aspect ratio, protein content, and amylose content. Compared with A2 treatment, A3 treatment could significantly improve the spike weight, grain density, yield structure, secondary branch stalk setting, and processing quality of rice. All treatments had minimal effect on the cooking and eating quality of rice. This indicated that the combined use of CNCs by-products and Bacillus velezensis could enhance the efficiency of greening and tillering fertilizer, significantly improve rice yield and quality.
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