首页> 外文期刊>Nutrient Cycling in Agroecosystems >Vegetable cultivation under greenhouse conditions leads to rapid accumulation of nutrients, acidification and salinity of soils and groundwater contamination in South-Eastern China
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Vegetable cultivation under greenhouse conditions leads to rapid accumulation of nutrients, acidification and salinity of soils and groundwater contamination in South-Eastern China

机译:温室条件下的蔬菜种植会导致中国东南部的养分迅速积累,土壤酸化和盐碱化以及地下水污染

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摘要

Vegetable cultivation during winter season is economically profitable, but the impact of the intensive production on soil and water quality remains to be studied. The objectives of this study were to investigate the seasonal dynamics of soil nutrients, acidification and salt accumulation in vegetable fields in South-Eastern China. Various vegetables were grown either under open-field conditions or under two different alternating open-field and greenhouse conditions with three replications. Soil samples were collected periodically and analyzed for pH, plant available nitrogen (N), phosphorous (P), potassium (K), electrical conductivity (EC), and urease activity. Water samples from wells located in or near the plots were collected and analyzed for nitrate. Soil nitrate, available phosphate and salt concentrations declined in summer under open-field conditions and significantly increased from December to May under greenhouse conditions. Exchangeable K also decreased in summer season, but did not increase in the spring. Under alternating open-field and greenhouse conditions, nutrient accumulation, soil salinity and acidification were significantly higher for soil used for vegetable cultivation for 2 years (2-y-plot) than that for only half year (0.5-y-plot). The accumulation of nitrate significantly correlated with soil EC and soil acidification. Thirty-two percent of groundwater samples from the 2-y-plot showed a nitrate concentration higher than 50 mg NO3 l−1. Conversely, no groundwater sample of 0.5-y-plot showed such high nitrate concentration. It can be concluded that the nitrate accumulation in soil used for vegetable cultivation under alternating open-field and greenhouse conditions not only causes soil salinization and soil acidification but also presents a high pollution potential for groundwater.
机译:冬季蔬菜种植在经济上是有利可图的,但集约化生产对土壤和水质的影响尚待研究。这项研究的目的是调查中国东南部菜地土壤养分,酸化和盐分累积的季节动态。各种蔬菜在露天条件下或在两个不同的交替露天和温室条件下进行三次重复种植。定期收集土壤样品并分析其pH值,植物有效氮(N),磷(P),钾(K),电导率(EC)和脲酶活性。收集了位于样地内或附近的水井的水样,并分析了硝酸盐。在露天条件下,夏季土壤硝酸盐,有效磷和盐的浓度下降,在温室条件下,从12月至5月,土壤硝酸盐,有效磷和盐的浓度显着增加。可交换钾在夏季也有所减少,但在春季没有增加。在露天和温室交替的条件下,蔬菜种植土壤(2年制)的养分积累,土壤盐分和酸化显着高于仅半年(0.5年制)的养分,土壤盐分和酸化。硝酸盐的积累与土壤EC和土壤酸化显着相关。在2-y图中,有32%的地下水样品中的硝酸盐浓度高于50 mg NO3 l-1 。相反,没有一个0.5-y-plot的地下水样本显示出如此高的硝酸盐浓度。可以得出结论,在露天和温室交替的条件下,蔬菜种植土壤中的硝酸盐累积不仅导致土壤盐渍化和土壤酸化,而且对地下水具有很高的污染潜力。

著录项

  • 来源
    《Nutrient Cycling in Agroecosystems》 |2009年第1期|73-84|共12页
  • 作者

    Wei-Ming Shi; Jing Yao; Feng Yan;

  • 作者单位

    State Key Laboratory of Soil and Sustainable Agriculture Institute of Soil Science The Chinese Academy of Sciences 71 East Beijing Road Nanjing 210008 P. R. China;

    State Key Laboratory of Soil and Sustainable Agriculture Institute of Soil Science The Chinese Academy of Sciences 71 East Beijing Road Nanjing 210008 P. R. China;

    Institute of Crop Science and Plant Breeding Justus Liebig University Ludwigstrasse 23 35390 Gießen Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Greenhouse soil; Nutrient accumulation; Seasonal dynamics; Soil acidification; Soil salinity;

    机译:温室土壤;养分积累;季节动态;土壤酸化;土壤盐分;
  • 入库时间 2022-08-18 00:07:13

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