[1]SHAO Xinjuan,ZHANG Yongfu,CHEN Wenqian,et al.Research for Regulation Optimization of Rural Residential Areas Based on the Model of Least Resistance[J].Research of Soil and Water Conservation,2016,23(03):309-313.
Copy

Research for Regulation Optimization of Rural Residential Areas Based on the Model of Least Resistance

References:
[1] Mackay D. Multimedia environmental models:the fugacity approach[M]. Boca Raton:CRC Press,2001.
[2] Wang X, Sheng J, Gong P, et al. Persistent organic pollutants in the Tibetan surface soil:spatial distribution, air-soil exchange and implications for global cycling[J]. Environmental Pollution,2012,170(8):145-151.
[3] Liu X, Ming L L, Nizzetto L, et al. Critical evaluation of a new passive exchange-meter for assessing multimedia fate of persistent organic pollutants at the air-soil interface[J]. Environmental Pollution, 2013,181(6):144-150.
[4] Harner T, Bidleman T F, Jantunen L M M, et al. Soil-air exchange model of persistent pesticides in the United States cotton belt[J]. Environmental Toxicology and Chemistry,2001,20(7):1612-1621.
[5] Tripathi V, Abhilash P C, Singh H B, et al. Effect of temperature variation on lindane dissipation and microbial activity in soil[J]. Ecological Engineering,2015,79:54-59.
[6] 何汇虹,刘文兆.黄土塬区农田土壤温度变化特征研究[J].水土保持研究,2013,20(5):124-128.
[7] Zhang Q Q, Ying G G, Chen Z F, et al. Multimedia fate modeling and risk assessment of a commonly used azole fungicide climbazole at the river basin scale in China[J]. Science of the Total Environment,2015,520:39-48.
[8] 陈军锋,郑秀清,秦作栋,等.冻融期秸秆覆盖量对土壤剖面水热时空变化的影响[J].农业工程学报,2013,29(20):102-110.
[9] 胡铭,刘志辉,陈凯,等.雪盖影响下季节性冻土消融期的土壤温度特征分析[J].水土保持研究,2013,20(3):39-43.
[10] 邢述彦,刘虎,郑秀清,等.秸秆覆盖厚度对冻融期土壤温度的影响[J].太原理工大学学报,2013,43(6):741-744.
[11] Ma J, Daggupaty S, Harner T, et al. Impacts of lindane usage in the Canadian prairies on the Great Lakes ecosystem. 1. Coupled atmospheric transport model and modeled concentrations in air and soil[J]. Environmental Science & Technology,2003,37(17):3774-3781.
[12] Tian C, Liu L, Ma J, et al. Modeling redistribution of α-HCH in Chinese soil induced by environment factors[J]. Environmental Pollution, 2011,159(10):2961-2967.
[13] 崔嵩,杨萌,李一凡.不同土壤类型多氯联苯土壤残留特征变化分析[J].吉林大学学报:地球科学版,2012,42(6):1880-1888.
[14] Zhang N, Yang Y, Liu Y, et al. Determination of octanol-air partition coefficients and supercooled liquid vapor pressures of organochlorine pesticides[J]. Journal of Environmental Science and Health Part B,2009,44(7):649-656.
[15] Mackay D, Shiu W, Ma K. Physical-chemical properties and environmental fate handbook[CD]. Boca Raton:CRC Press,1999.
[16] Shoeib M, Harner T. Using measured octanol-air partition coefficients to explain environmental partitioning of organochlorine pesticides[J]. Environmental Toxicology and Chemistry,2002,21(5):984-990.
[17] Jury W A, Spencer W F, Farmer W J. Behavior assessment model for trace organics in soil:I. Model description[J]. Journal of Environmental Quality,1983,12(4):558-564.
[18] Schwarzenbach R P, Gschwend P M, Imboden D M. Environmental Organic Chemistry[M]. New York:John Wiley & Sons Inc.,2003.
[19] Hayduk W, Laudie H. Prediction of diffusion coefficients for nonelectrolytes in dilute aqueous solutions[J]. AIChE Journal, 1974,20(3):611-615.
[20] Severinsen M, Jager T. Modelling the influence of terrestrial vegetation on the environmental fate of xenobiotics[J]. Chemosphere,1998,37(1):41-62.
[21] 崔嵩,刘丽艳,李一凡.土壤有机质影响多氯联苯土壤残留变化特征[J].中南大学学报:自然科学版,2013,44(11):4759-4767.
Similar References:

Memo

-

Last Update: 1900-01-01

Online:11794       Total Traffic Statistics:27381528

Website Copyright: Research of Soil and Water Conservation Shaanxi ICP No.11014090-10
Tel: 029-87012705 Address: Editorial Department of Research of Soil and Water Conservation, No. 26, Xinong Road, Yangling, Shaanxi Postcode: 712100