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大田条件下不同钝化剂对空心菜吸收镉的影响及机理
引用本文:丁永祯,宋正国,唐世荣,冯人伟,张长波,周莉.大田条件下不同钝化剂对空心菜吸收镉的影响及机理[J].生态环境,2011,20(11):1758-1763.
作者姓名:丁永祯  宋正国  唐世荣  冯人伟  张长波  周莉
作者单位:农业部环境保护科研监测所//农业部产地环境与农产品安全重点开放实验室,天津,300191
基金项目:国家自然科学基金,农业部行业专项,国家科技支撑计划课题,中央级公益性科研院所基本科研业务费专项资助
摘    要:通过大田试验,研究4种钝化剂(赤泥、海泡石、钙镁磷肥和磷矿粉)对两茬空心菜(Ipomoea aquatica Forsk.)生长和镉吸收的影响。钝化剂施用量为:赤泥(0.5%和1.0%)、海泡石(0.3%和0.5%)、磷矿粉(450和900 kg.hm-2)、钙镁磷肥(450和900 kg.hm-2)。结果表明,各钝化剂均能显著降低土壤有效态镉质量分数,钝化能力大小表现为海泡石〉赤泥〉钙镁磷肥〉磷矿粉;钝化剂提高了空心菜地上部生物量,第1茬时(50 d),施用高量赤泥、低量海泡石和高量钙镁磷肥处理生物量增加最为明显,地上部分别增加78.7%、75.2%和76.6%。第2茬(80 d),高量赤泥与高量磷矿粉处理增加最高,地上部分别增加24.6%和34.5%。钝化剂对空心菜镉吸收影响不同,第1茬时对根系和地上部分别起促进和抑制作用,施用高量赤泥和高量海泡石最能抑制地上部镉累积,镉质量分数分别降低27.3%和23.2%。第2茬时,除海泡石外,钝化剂均显著抑制了根系和地上部的镉吸收,高量磷矿粉和赤泥效果最佳。总体来看,赤泥是保障农产品安全的最佳钝化材料,海泡石效果最差。

关 键 词:钝化材料    有效性  空心菜(Ipomoea  aquatica  Forsk.)

Mechanism and effects of different amendments on cadmium uptake by water spinach (Ipomoea aquatica Forsk.) in field conditions
DINGYongzhen,SONG Zhengguo,TANG Shirong,FENG Renwei,ZHANG Changbo,ZHOU Li.Mechanism and effects of different amendments on cadmium uptake by water spinach (Ipomoea aquatica Forsk.) in field conditions[J].Ecology and Environmnet,2011,20(11):1758-1763.
Authors:DINGYongzhen  SONG Zhengguo  TANG Shirong  FENG Renwei  ZHANG Changbo  ZHOU Li
Institution:DING Yongzhen,SONG Zhengguo,TANG Shirong*,FENG Renwei,ZHANG Changbo,ZHOU Li Agro-Environmental Protection Institute,Ministry of Agriculture of China//Key Laboratory of Production Environment and Agro-Product Safety,Ministry of Agriculture of China,Tianjin 300191,China
Abstract:Field experiments were conducted to investigate the effects of four amendments(red mud,sepiolite,calcium magnesium phosphate and phosphate rock) on the growth of water sinach(Ipomoea aquatica Forsk.) and the corresponding cadmium uptake..High or low dose of amendments,i.e.,red mud(0.5% and 1.0%),sepiolite(0.3% and 0.5%),calcium magnesium phosphate(450 kg.hm-2 and 900 kg.hm-2) and phosphate rock(450 kg.hm-2 and 900 kg.hm-2) were used.The results showed that all amendments decreased the content of soil availa...
Keywords:amendments  cadmium  availability  water spinach(Ipomoea aquatica Forsk  )  
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