Previous Articles Next Articles
Online:
Published:
Abstract:
In order to find out the improved technology for increasing the area of taking seedling for blanket seedling transplanter and the suitable seeding amount, seedling age and seedling raising trays for the long seedling age under this technology, and to form the matching technology of agricultural machinery and agronomy for the long seedling age with blanket seedling machine transplanting. The results showed that compared with pot seedling transplanting rice, with the improved technology, the yield of hybrid rice was basically equivalent, while the yield of conventional rice could be increased by 4.74%~6.83%. When the seedling age of machine-transplanted within 30 days, the seedling age and yield have a positive correlation. When the sowing rate reached 80 g/plate, the rice yield was the highest when the seedling age reached 30 days. Compared with ordinary plastic trays, the large bowl-shaped carpet degradable tray have better water permeability and air permeability, the seedling roots carrying soil, the seedlings have better quality and lighter injury, and the slow seedling period of rice was shorter.
Key words: machine transplanting rice, sparse seeding, long seedling age, degradable seedling tray, supporting technology
摘要:
为探明毯苗插秧机增加取秧块面积的改进技术以及在该技术下稀播长秧龄的水稻适宜播量、秧龄和育秧盘,并形成毯苗机插稻稀播长秧龄农机与农艺相配套技术。结果表明,经过对毯苗插秧机性能的改进,增大取秧面积,毯苗机插杂交稻可实现与钵苗机插稻相当的产量,同时常规稻产量比未改进的常规毯苗机插稻增产4.74%~6.83%;机插水稻秧龄在30 d内,秧龄和产量成正相关关系,播量80 g/盘、秧龄30 d的处理产量最高;与普通塑料盘相比,大体钵型毯状降解盘透水透气性好,栽插带土成球,秧苗素质好,植伤轻,水稻缓苗期短。
关键词: 机插稻, 稀播, 长秧龄, 降解盘, 配套技术
CLC Number:
S511.048
杨松1#,贾一磊1#,王进友1,高雯雯1,邵铭泉2. 毯苗机插水稻稀播长秧龄农机与农艺相配套技术研究[J]. 中国稻米, DOI: 10.3969/j.issn.1006-8082.2020.02.017 .
0 / Recommend
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.zgdm.net/EN/10.3969/j.issn.1006-8082.2020.02.017
http://www.zgdm.net/EN/Y2020/V26/I2/73
[1] 朱德峰,陈惠哲,徐一成. 我国水稻种植机械化的发展前景与对策[J]. 北方水稻,2007(5):13-18. [2] 杨松,沈进松,王进友,等.钵苗机插水稻育秧关键技术[J].中国稻米,2016,22(5):74-77. [3] 裴昌林,陈兰金,杨松,等. 不同播量和不同秧龄钵苗机插对水稻生长和产量的影响[J]. 安徽农学通报,2015,21(10):143-145. [4] 杨松,罗来君. 两种种植方式在秸秆还田条件下土壤有机质含量的变化规律[J]. 江苏农业科学,2000(2):54-55. [5] 朱德峰,陈惠哲. 水稻机插秧发展与粮食安全[J]. 中国稻米,2009,15(6):4-7. [6] 张洪程,李杰,戴其根,等. 机插稻“标秧、精插、稳发、早搁、优中、强后”高产栽培精确定量关键技术[J]. 中国稻米,2010,16(5):1-6. [7] 彭长青,李世峰,卞新民,等. 机插水稻高产栽培关键技术的适宜值[J]. 应用生态学报, 2006,17(9):1 619-1 623. [8] 王夕娥,顾海伟,於永杰. 不同播量与机插密度对机插秧苗大田生长发育的影响[J]. 上海农业科技,2004(4):28. [9] 李世峰,刘蓉蓉,吴九林. 不同播量与移栽密度对机插水稻产量形成的影响[J]. 作物杂志,2008(1):71-74. [10] 邢春秋,邵铭泉,冯天佑,等. 寒地水稻降解秧盘育插秧技术特点与效果[J]. 中国稻米,2018,24(5):96-97. [11] 白怀瑾,殷春渊. 不同育秧方式对水稻秧苗素质、植株形态和产量的影响[J]. 中国稻米,2017,23(5):92-93. [12] 易子豪,朱德峰,朱从桦,等. 不同规格大钵育秧盘育秧对水稻秧苗生长和产量的影响[J]. 中国农机化学报,2018,39(10):18-21.