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Effect of water regimes and organic matters on transport of arsenic in summer rice (Oryza sativa L.)
作者姓名:Sefaur Rahaman  Ashim Chandra Sinh  Dibyendu Mukhopadhyay
作者单位:[1]Senior Research Fellow, Department of Agronomy, Faculty of Agriculture, Uttar Banga Krishi Viswavidyalaya, Pundibari, Cooch Behar, West Bengal-736165, India. [2]Department of Agronomy, Faculty of Agriculture, Uttar Banga Krishi Viswavidyalaya, Pundibari, Cooch Behar, West Bengal-736165, India [3]Reader and Head, Department of Soil Science & Agricultural Chemistry, Faculty of Agriculture, Uttar Banga Krishi Viswavidyalaya, Pundibari, Cooch Behar, West Bengal-736165, India
基金项目:This work was supported by the National Agricultural Innovation Project Component-IV (NAIP/C4/C1005/2006-07), Indian Council of Agricultural Research, Pusa, New Delhi, India. The first author would like to thank Mr. Amjad Ali (Farmer) Jalalpur, Manikchak, Malda, W. B for providing experimental field and co-operation.
摘    要:The arsenic contamination in soil-water-plant systems is a major concern of where, the groundwater is being contaminated with arsenic (above 0.01 mg/L) in the Indian subcontinent. The study was conducted with organic matter to find out the reducing e ect on arsenic load to rice (cv. Khitish). It was observed that intermittent ponding reduced arsenic uptake (23.33% in root, 13.84% in shoot and 19.84% in leaf) at panicle initiation stage, instead of continuous ponding. A decreasing trend of arsenic accumulation (root > straw > husk > whole grain > milled grain) was observed in di erent plant parts at harvest. Combined applications of lathyrus + vermicompost + poultry manure reduced arsenic transport in plant parts (root, straw, husk, whole grains and milled grain) which was significantly at par (p > 0.05) with chopped rice straw (5 tons/ha ) + lathyrus green manuring (5 tons/ha) in comparison to control and corresponding soils. A significant negative correlation of arsenic with phosphorus (grain P with arsenic in di erent parts R2= 0.627–0.726 at p > 0.01) was observed. Similarly, soil arsenic had a negative correlation with soil available phosphorus (R2 = 0.822 at p > 0.001) followed by soil nitrogen (R2= 0.762 at p > 0.01) and soil potassium (R2 = 0.626 at p > 0.01). Hence, e ective management of contaminated irrigation water along with organic matter could reduce the arsenic build up to plants and soil.

关 键 词:砷污染  有机物  Oryza  水稻  运输  水制度  土壤速效磷  植物系统
收稿时间:5/4/2010 12:00:00 AM
修稿时间:2010/10/12 0:00:00

Effect of water regimes and organic matters on transport of arsenic in summer rice (Oryza sativa L.)
Sefaur Rahaman,Ashim Chandra Sinh,Dibyendu Mukhopadhyay.Effect of water regimes and organic matters on transport of arsenic in summer rice (Oryza sativa L.)[J].Journal of Environmental Sciences,2011,23(4):633-639.
Authors:Sefaur Rahaman  Ashim Chandra Sinha and Dibyendu Mukhopadhyay
Institution:1. Senior Research Fellow, Department of Agronomy, Faculty of Agriculture, Uttar Banga Krishi Viswavidyalaya, Pundibari,Cooch Behar, West Bengal-736165, India
2. Department of Agronomy, Faculty of Agriculture, Uttar Banga Krishi Viswavidyalaya, Pundibari,Cooch Behar, West Bengal-736165, India
3. Reader and Head, Department of Soil Science & Agricultural Chemistry, Faculty of Agriculture,Uttar Banga Krishi Viswavidyalaya, Pundibari, Cooch Behar, West Bengal-736165, India
Abstract:The arsenic contamination in soil-water-plant systems is a major concern of where, the groundwater is being contaminated with arsenic (above 0.01 mg/L) in the Indian subcontinent. The study was conducted with organic matter to find out the reducing effect on arsenic load to rice (cv. Khitish). It was observed that intermittent ponding reduced arsenic uptake (23.33% in root, 13.84% in shoot and 19.84% in leaf) at panicle initiation stage, instead of continuous ponding. A decreasing trend of arsenic accumulation (root > straw >husk > whole grain > milled grain) was observed in different plant parts at harvest. Combined applications of lathyrus + vermicompost + poultry manure reduced arsenic transport in plant parts (root, straw, husk, whole grains and milled grain) which was significantly at par (p > 0.05) with chopped rice straw (5 tons/ha ) + lathyrus green manuring (5 tons/ha) in comparison to control and corresponding soils. A significant negative correlation of arsenic with phosphorus (grain P with arsenic in different parts R2= 0.627-0.726 at p >0.01) was observed. Similarly, soil arsenic had a negative correlation with soil available phosphorus (R2 = 0.822 at p > 0.001) followed by soil nitrogen (R2= 0.762 at p > 0.01) and soil potassium (R2 = 0.626 at p > 0.01). Hence, effective management of contaminated irrigation water along with organic matter could reduce the arsenic build up to plants and soil.
Keywords:arsenic  intermittent ponding  lathyrus  organic nutrients  poultry manure  saturation and vermicompost
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