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循环曝气地下滴灌下温室番茄生长特性与产量研究
引用本文:张倩,曾健,张振华,雷宏军,张鹏,柳栋. 循环曝气地下滴灌下温室番茄生长特性与产量研究[J]. 农业机械学报, 2022, 53(2): 365-377
作者姓名:张倩  曾健  张振华  雷宏军  张鹏  柳栋
作者单位:山东农业大学水利土木工程学院,泰安271018;鲁东大学资源与环境工程学院,烟台264025;华北水利水电大学水利学院,郑州450011
基金项目:国家重点研发计划项目(2018YFC0407703)、国家自然科学基金项目(51909151、52079052)和山东省重点研发计划重大科技创新工程项目(2019JZZY010710)
摘    要:
为探讨循环曝气地下滴灌不同肥气耦合处理对作物生长、光合特性及产量的影响规律,以番茄(京鲁6335)为研究对象,利用循环曝气装置实现水肥气一体化灌溉,设置4个曝气量(高曝气O1,中曝气O2,低曝气O3,不曝气S,掺气比例分别为16.25%、14.58%、11.79%和0),3个施肥量(高肥F1,中肥F2,低肥F3),采用...

关 键 词:温室番茄  循环曝气地下滴灌  生长特性  光合特性  干物质积累量  产量
收稿时间:2021-01-03

Impacts of Cycle Aerated Subsurface Drip Irrigation on Growth Characteristics and Yield of Greenhouse Tomato
ZHANG Qian,ZENG Jian,ZHANG Zhenhu,LEI Hongjun,ZHANG Peng,LIU Dong. Impacts of Cycle Aerated Subsurface Drip Irrigation on Growth Characteristics and Yield of Greenhouse Tomato[J]. Transactions of the Chinese Society for Agricultural Machinery, 2022, 53(2): 365-377
Authors:ZHANG Qian  ZENG Jian  ZHANG Zhenhu  LEI Hongjun  ZHANG Peng  LIU Dong
Affiliation:Shandong Agricultural University;Ludong University;North China University of Water Conservancy and Electric Power
Abstract:
To investigate the effects of different fertilizer air coupling treatments on crop growth characteristics, photosynthetic characteristics and yield under cycle aerated subsurface drip irrigation, tomato (Jinglu 6335) was taken as the research object, and the recycling aeration device was used to supply water, fertilizer and gas. Four aeration quantities (O1 was high aeration, O2 was medium aeration, O3 was low aeration, S was no aeration, aeration ratio was 16.25%, 14.58%, 11.79% and 0, respectively), three fertilizer quantities (F1 was high fertilizer, F2 was medium fertilizer, F3 was low fertilizer) were set, and a two-factor randomized block experimental design was adopted, with a total of 12 treatments. The effects of different fertilizer-air couplings on plant growth characteristics, chlorophyll content, photosynthesis, plant dry matter accumulation and yield of greenhouse tomato were studied. The results showed that cycle aerated subsurface drip irrigation could significantly increase plant height, stem diameter, leaf chlorophyll content and stomatal conductance, enhance photosynthesis, and increase dry matter accumulation and yield of greenhouse tomato. The plant height and stem diameter were increased with the increase of aeration. The maximum increase of plant height and stem diameter was 22.57% and 7.25% respectively in aerated irrigation treatment compared with non aerated irrigation treatment. At the same fertilization levels, compared with non-aerated irrigation, the net photosynthetic rate, stomatal conductance and transpiration rate of high aeration irrigation treatment were increased by 52.46%, 60.64% and 36.88% respectively, the contents of chlorophyll a and chlorophyll b were increased by 33.17% and 48.71%, respectively. The plant dry matter accumulation and fruit dry matter accumulation under high aeration irrigation at medium fertilizer level were increased by 31.66% and 36.95% on average, and the yield of single plant and the weight of single fruit were increased by 12.80% and 19.51% compared with that of non aerated irrigation. At the same aeration level, plant height, stem diameter, net photosynthetic rate, chlorophyll a, chlorophyll b and plant dry matter accumulation of tomatoes under medium fertilizer treatments were significantly increased compared with those under high and low fertilizer treatments. The yield of tomato single plant was significantly positively correlated with plant height, stem diameter and net photosynthetic rate (P<0.01), and the correlation coefficient between yield and plant height, stem diameter and net photosynthetic rate of tomato under medium fertilizer treatment in high aeration irrigation was higher than that of other treatments. Therefore, considering the effects of various treatments on the growth characteristics, photosynthetic characteristics, plant dry matter accumulation and yield, the medium fertilization level in high aeration irrigation was the preferable irrigation and fertilization mode for greenhouse tomato.
Keywords:greenhouse tomato   cycle aerated subsurface drip irrigation   growth characteristics   photosynthetic characteristics   dry matter accumulation   yield
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