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日光温室蔬菜栽培无公害病虫害综合防治技术 被引量:8
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作者 郭巍 《农业开发与装备》 2019年第12期177-177,共1页
随着时代的革新,科技的进步,人们的生活水平也日渐提高。为了满足人们的生活需求,我国开发出了日光温室蔬菜栽培无公害病虫害综合防治技术。众所周知,在蔬菜栽培过程中,最大的困难就是病虫、害虫的防治。而日光温室蔬菜栽培无公害病虫... 随着时代的革新,科技的进步,人们的生活水平也日渐提高。为了满足人们的生活需求,我国开发出了日光温室蔬菜栽培无公害病虫害综合防治技术。众所周知,在蔬菜栽培过程中,最大的困难就是病虫、害虫的防治。而日光温室蔬菜栽培无公害病虫防治技术可以通过对蔬菜等农作物的种子进行杀菌、消毒,从而杜绝病虫、害虫,达到无公害病虫防治。无公害病虫防治技术的研发,使得我们日常生活中所食用的蔬菜更加绿色、健康。同时,这项技术也使得我国的广大农民可以不用再为病虫防治所担忧,从而对我国的农业发展起到一定的促进作用。对日光温室蔬菜栽培无公害病虫害综合防治技术进行详细论述。 展开更多
关键词 日光温室蔬菜栽培 无公害病虫害防治 技术要点
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日光温室蔬菜栽培无公害病虫害综合防治
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作者 樊迪文 《数字农业与智能农机》 2021年第22期59-60,共2页
科技的进步使得人们的生活水平日渐提高,随之而来的是人们的生活品质需求的增长,而我国为了更好满足在蔬菜栽培过程中对于蔬菜质量的保证,也研究出了日光温室蔬菜栽培无公害病虫害综合防治技术,目的是为了让大众食用的蔬菜更加健康更加... 科技的进步使得人们的生活水平日渐提高,随之而来的是人们的生活品质需求的增长,而我国为了更好满足在蔬菜栽培过程中对于蔬菜质量的保证,也研究出了日光温室蔬菜栽培无公害病虫害综合防治技术,目的是为了让大众食用的蔬菜更加健康更加美味,同时也能够提升蔬菜的质量。 展开更多
关键词 日光温室蔬菜栽培技术 无公害化 病虫害综合防治
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Short-Term Responses of Nitrous Oxide Emissions and Concentration Profiles to Fertilization and Irrigation in Greenhouse Vegetable Cultivation 被引量:8
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作者 S. RIYA MIN Ju +2 位作者 ZHOU Sheng SHI Wei-Ming M. HOSOMI 《Pedosphere》 SCIE CAS CSCD 2012年第6期764-775,共12页
In vegetable cultivation, the majority of N2O emissions occur after fertilization; it is therefore important to understand any factors contributing to this process. An experiment was conducted to investigate short-ter... In vegetable cultivation, the majority of N2O emissions occur after fertilization; it is therefore important to understand any factors contributing to this process. An experiment was conducted to investigate short-term N2O dynamics following topdressing in a greenhouse vegetable field in South China. During two topdressing processes, three different urea-N treatments with irrigation were conducted in May and June in a tomato (Lycopersicum esculentum) cultivation. The N2O fluxes, soil concentration profiles and soil environments at the 0-60 cm depths at 10 cm intervals were measured both immediately prior to and 5 days after topdressing. The N2O fluxes before topdressing ranged from 6.7=1=2.1 to 55.0-4-28.8 μg N m-2 h-1; even higher numbers were recorded in highly fertilized plots. The NO3-N accumulation in the soil caused by vegetable cultivation during the 5 years prior to the start of the experiment, resulted in high background N2O fluxes. One day after topdressing (1 DAT) in May and June, N2O fluxes increased, which coincided with sharp increases in soil N2O concentrations at depths of 2.5 and 15 cm and in NOa-N and NH4+-N contents at depths of 0-20 cm. From 1 to 5 DAT, fluctuations in the N2O fluxes did not harmonize with the N2O concentrations at a depth of 2.5 cm, which was attributed to different gas diffusion rates at depths of 0-10cm. These results suggested that surface soil N and environmental conditions were crucial for determining the short-term N2O ebullitions during topdressing in greenhouse vegetable cultivation. 展开更多
关键词 nitrogen application N2O soil profile TOPDRESSING vegetable field
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