[1]杨艳琴,王莉霞,张宏忠,等.盐碱化土壤对铅的吸附特性[J].江苏农业学报,2015,(05):1031-1036.[doi:doi:10.3969/j.issn.1000-4440.2015.05.014]
 YANG Yan-qin,WANG Li-xia,ZHANG Hong-zhong,et al.Adsorption of lead by saline-sodic soil[J].,2015,(05):1031-1036.[doi:doi:10.3969/j.issn.1000-4440.2015.05.014]
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盐碱化土壤对铅的吸附特性()
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江苏农业学报[ISSN:1006-6977/CN:61-1281/TN]

卷:
期数:
2015年05期
页码:
1031-1036
栏目:
耕作栽培·资源环境
出版日期:
2015-10-31

文章信息/Info

Title:
Adsorption of lead by saline-sodic soil
作者:
杨艳琴12王莉霞3张宏忠12赵继红12
(1.环境污染治理与生态修复河南省协同创新中心,河南郑州450002;2.郑州轻工业学院 材料与化学工程学院,河南郑州450002;3.中国科学院东北地理与农业生态研究所,吉林长春130012)
Author(s):
YANG Yan-qin12WANG Li-xia3ZHANG Hong-zhong12ZHAO Ji-hong12
(1.Collaborative Innovation Center of Environmental Pollution Control and Ecological Restoration, Zhengzhou 450002,China;2.Zhengzhou University of Light Industry, Zhengzhou 450002,China;3.Northeast Institute of Geography and Agricultural Ecology, Chinese Academy of Sciences, Changchun 130012,China)
关键词:
盐碱化土壤吸附特性稻秆堆肥
Keywords:
saline-sodic soilleadadsorptionrice strawcompost
分类号:
S156.4
DOI:
doi:10.3969/j.issn.1000-4440.2015.05.014
文献标志码:
A
摘要:
为进一步明确盐碱土对重金属的吸附累积规律,本研究以盐碱化土壤为研究对象,探讨不同盐碱化程度土壤对重金属铅的吸附行为,以及施用水稻秸秆、堆肥后盐碱化土壤对铅的吸附特征变化。结果表明:施用水稻秸秆、堆肥前后的盐碱化土壤样品,对铅的等温吸附曲线更符合Freundlich方程,且决定系数均大于0.9;盐碱化土壤对铅有较强的吸附能力,其强弱顺序为:轻度盐碱化土壤>重度盐碱化土壤>中度盐碱化土壤;在盐碱化土壤中施用一定量水稻秸秆能促进其对铅的吸附,而施用一定量污泥堆肥能抑制盐碱化土壤对铅的吸附。
Abstract:
The adsorption of lead in the different saline-sodic soils (SSS) and its changes caused by adding rice straw or compost were studied. The results showed that the adsorption isotherms of lead in saline-sodic soil before and after the addition of rice straw or compost fitted well with the Freundlich equation with correlation coefficients above 0.9. The strongest adorsorption of lead was found in mild saline-sodic soil and the weakest, in moderate saline-sodic soil. Rice straw addition in the SSS samples increased the adsorption of lead, whereas compost addition brought the contrary results.

参考文献/References:

[1]李韵诗,冯冲凌,吴晓芙,等.重金属污染土壤植物修复中的微生物功能研究进展[J].生态学报,2015,35(20):1-13.
[2]刘贵巧,王永霞,王建明,等.4种食用菌中重金属含量及食用安全评价[J].江苏农业科学,2014,42(9):268-270.
[3]史景允,于伟红,梁秋生.蓖麻对镉污染土壤的修复潜力[J].江苏农业科学,2014,42(11):386-388.
[4]方勇,陈曦,陈悦,等. 外源硒对水稻籽粒营养品质和重金属含量的影响[J]. 江苏农业学报,2013,29( 4) : 760-765.
[5]张凤英,阎白兴,路永正,等.松花江沉积物中Pb、As、Cr的分布及生态风险评价[J].农业环境科学学报,2008,27(2):726-730.
[6]张凤英,阎白兴,朱立禄.松花江沉积物重金属形态赋存特征研究[J].农业环境科学学报, 2010,29(1):163-167.
[7]李彬,王志春,迟春明.吉林省大安市苏打盐碱土碱化参数与特征分析[J].生态与农村环境学报,2006, 22 (1): 20-23, 28.
[8]鲁如坤.土壤农业化学分析方法[M].北京:中国农业科技出版社,2000:136-140. 
[9]陈同斌,陈志军.水溶性有机质对土壤中镉吸附行为的影响[J].应用生态学报,2002, 13(2):183-186.
[10]余涛,杨忠芳,钟坚,等.土壤中重金属元素Pb、Cd地球化学行为影响因素研究[J].地学前沿,2008,15(5):67-73.
[11]BARROW N J, CXO V C. The efforts of pH and chloride concentration on mercury sorption[J]. Journal of Soil Science,1992,43(2):295-314.
[12]王金贵,吕家珑,张瑞龙,等.不同温度下镉在典型农田土壤中的吸附动力学特征[J].农业环境科学学报,2012,31(6):1118-1123.
[13]BESNARD E, CHENU C, ROBERT M. Influence of organic amendments on copper distribution among particle size and density fractions in champagne vineyard soils[J]. Environmental Pollution,2001,112(3):329-337.
[14]章明奎,郑顺安,王丽平.土壤中颗粒状有机质对重金属的吸附作用[J].土壤通报,2007,38(6):1100-1104.
[15]BUSINELLI D,MASSACCESI L. Long-term distribution, mobility and plant availability of compost-devived Heavy metals in a landfill covering soil[J]. Science of the Total Environment, 2009,407(4):1426-1435.
[16]王浩,章明奎.污染土壤中有机质和重金属相互作用的模拟研究[J].浙江大学学报:农业与生命科学版,2009,35(4): 460-466.
[17]CHEN T B, CHEN Z J. Dissolved organic matter and its effects on adsorption and desorption of pollutants in soils[J]. Plant Nutrit Ferti Sci, 1998,4(3):201-210.
[18]JIANG Y, DOU S. Study on change of organic matter in soils after application of organic manures[J]. Acta Pedolsil ,1987,24(2):97-104.
[19]李学垣,王启发,徐凤琳.稻草还田对土壤钾、磷、锌的吸附-解吸及其有效性的影响[J].华中农业大学学报,2000,19(3):227-232.
[20]叶文培,王凯荣,JOHNSON S E,等.添加玉米和水稻秸秆对淹水土壤pH、二氧化碳及交换态铵的影响[J]. 应用生态学报, 2008,19(2):345-350.
[21]王凯荣,刘鑫,周卫军,等.稻田系统养分循环利用对土壤肥力和可持续生产力的影响[J].农业环境科学学报,2004,23(6):1041-1045.
[22]黄河仙,王凯荣,谢小立.不同施氮水平和稻草添加量对水稻和玉米产量的影响[J].农业现代化研究,2008,29(4):486-489.
[23]FOT A, NAIDU R. Changes in composit ion of soil aqueous phase influence chemistry of indigenous heavy metals in alkaline sodic and acidic soils[J]. Geoderma., 1998,84(1-3): 213-234.
[24]黄泽春,陈同斌,雷梅.陆地生态系统中水溶性有机质的环境效应[J].生态学报,2002,22(2):259-269.〖ZK)〗〖FL)〗

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备注/Memo

备注/Memo:
收稿日期:2015-03-06 基金项目:国家水体污染控制与治理科技重大专项子课题(2012ZX07204-001);河南省重大公益招标项目(101100910300) 作者简介:杨艳琴(1979-),女,河南焦作人,硕士,讲师,主要从事固体废弃物资源化研究。(Tel)15138679561;(E-mail)yangyanqin2002@163.com 通讯作者:赵继红,(E-mail)zhjh@zzuli.edu.cn
更新日期/Last Update: 2015-10-31