Production Efficiency and Soil Nutrient Characteristics in Food一Vegetable Rotation Systems
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Production Efficiency and Soil Nutrient Characteristics in Food一Vegetable Rotation Systems
Bulletin of Soiland Water ConservationVol. 30, Issue 2, Pages: 46-51(2011)
作者机构:
1. 西北农林科技大学林学院
2. 中国科学院水利部水土保持研究所
作者简介:
基金信息:
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Published:2011
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HAO Wang-lin, LIANG Yin-li, ZHU Yan-li, et al. Production Efficiency and Soil Nutrient Characteristics in Food一Vegetable Rotation Systems[J]. Bulletin of Soiland Water Conservation, 2011, 30(2): 46-51.
DOI:
HAO Wang-lin, LIANG Yin-li, ZHU Yan-li, et al. Production Efficiency and Soil Nutrient Characteristics in Food一Vegetable Rotation Systems[J]. Bulletin of Soiland Water Conservation, 2011, 30(2): 46-51.DOI:
Production Efficiency and Soil Nutrient Characteristics in Food一Vegetable Rotation Systems
In order to provide references for adjustments of agricultural structures and crop arrangements
which aim to improve farmers' income within a commodity economy
optimal combinations of crop rotation are needed for agricultural development in Guanzhong plain.According to field test data
the economic value
land equivalent ratio(LRE)
biological yield
economic coefficient and the effects of rotation on soil nutrients were analyzed in different rotation systems.The crops tested included food crops of wheat(Triticum aestivum) and corn(Zea mays)
and vegetables of garlic(Allium sativum)
pepper(Capsicum)
eggplant(Solanum melongena) and celery(Apium graveolens)
which are commonly found in the plain.The results show that the terms of economic benefits and land production efficiency
the rotation system of wheat-maize was the worst one while the vegetables—vegetable rotation systems of garlic—pepper
garlic—eggplant
garlic—celery were the superior ones.From the ecological point of view focusing on biological yield and net organic yield
the value of wheat—maize was lower than the values of the vegetable—vegetable systems of garlic—pepper
garlic—eggplant
and garlic—celery
and was higher than the values of the crop—vegetable systems of wheat—pepper
wheat—eggplant
and wheat—celery.In the terms of effects on soil available nutrients and soil respiration rates
the crop—vegetable systems were better than the vegetable—vegetable rotation systems and the traditional crop rotation systems.Considering the values
geographic conditions and economic environments
the crop—vegetable rotation systems were suitable for the plain.As for the trials of this study
the rotation modes of wheat—pepper and wheat—eggplant were promising with a comprehensive consideration.
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