Geoscience ›› 2022, Vol. 36 ›› Issue (02): 524-532.DOI: 10.19657/j.geoscience.1000-8527.2022.010
• Water Resources and Environmental Research • Previous Articles Next Articles
GUO Zhengcai(), GUO Huaming(
), WEI Liang, GAO Zhipeng
Received:
2021-10-20
Revised:
2022-02-26
Online:
2022-04-10
Published:
2022-06-01
Contact:
GUO Huaming
CLC Number:
GUO Zhengcai, GUO Huaming, WEI Liang, GAO Zhipeng. Adsorption Characteristics of Cu onto Typical Sewage Irrigated-Soils from Baoding, Hebei Province[J]. Geoscience, 2022, 36(02): 524-532.
样品 | q实验/ (μmol·g-1) | 准一级吸附动力学模型 | 假二级吸附动力学模型 | |||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
R2 | K1/ h-1 | qe/ (μmol·g-1) | R2 | K2/ (g·μmol-1·h-1) | qe/ (μmol·g-1) | h/ (μmol·g-1·h-1) | ||||||
S1 | 37.45 | 0.930 9 | 0.264 8 | 14.81 | 0.999 8 | 0.090 7 | 37.57 | 128.04 | ||||
S2 | 35.25 | 0.947 7 | 0.208 0 | 38.50 | 0.992 1 | 0.014 2 | 36.17 | 18.53 |
Table 1 Fitting parameters of dynamics models
样品 | q实验/ (μmol·g-1) | 准一级吸附动力学模型 | 假二级吸附动力学模型 | |||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
R2 | K1/ h-1 | qe/ (μmol·g-1) | R2 | K2/ (g·μmol-1·h-1) | qe/ (μmol·g-1) | h/ (μmol·g-1·h-1) | ||||||
S1 | 37.45 | 0.930 9 | 0.264 8 | 14.81 | 0.999 8 | 0.090 7 | 37.57 | 128.04 | ||||
S2 | 35.25 | 0.947 7 | 0.208 0 | 38.50 | 0.992 1 | 0.014 2 | 36.17 | 18.53 |
样品 | 吸附全过程 | 快速吸附阶段 | 慢速吸附阶段 | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
R2 | K3/ (μmol·g-1·h-0.5) | b | R2 | K3/ (μmol·g-1·h-0.5) | b | R2 | K3/ (μmol·g-1·h-0.5) | b | |||
S1 | 0.655 4 | 1.681 1 | 28.47 | 0.787 8 | 5.590 4 | 24.27 | 0.831 0 | 0.566 0 | 33.78 | ||
S2 | 0.901 1 | 4.202 1 | 10.63 | 0.976 6 | 8.360 0 | 5.95 | 0.838 1 | 2.622 9 | 18.34 |
Table 2 Fitting parameters for intraparticle diffusion models
样品 | 吸附全过程 | 快速吸附阶段 | 慢速吸附阶段 | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
R2 | K3/ (μmol·g-1·h-0.5) | b | R2 | K3/ (μmol·g-1·h-0.5) | b | R2 | K3/ (μmol·g-1·h-0.5) | b | |||
S1 | 0.655 4 | 1.681 1 | 28.47 | 0.787 8 | 5.590 4 | 24.27 | 0.831 0 | 0.566 0 | 33.78 | ||
S2 | 0.901 1 | 4.202 1 | 10.63 | 0.976 6 | 8.360 0 | 5.95 | 0.838 1 | 2.622 9 | 18.34 |
土壤 样品 | Langmuir等温吸附参数 | Freundlich等温吸附参数 | |||||
---|---|---|---|---|---|---|---|
k (μmol·g-1) | b (L·mmol-1) | R2 | a | 1/n | R2 | ||
S1 | 151.010 | 0.000 31 | 0.998 0 | 0.438 | 0.631 | 0.974 7 | |
S2 | 133.627 | 0.000 33 | 0.999 5 | 0.435 | 0.620 | 0.979 8 |
Table 3 Fitting parameters of isothermal adsorption models
土壤 样品 | Langmuir等温吸附参数 | Freundlich等温吸附参数 | |||||
---|---|---|---|---|---|---|---|
k (μmol·g-1) | b (L·mmol-1) | R2 | a | 1/n | R2 | ||
S1 | 151.010 | 0.000 31 | 0.998 0 | 0.438 | 0.631 | 0.974 7 | |
S2 | 133.627 | 0.000 33 | 0.999 5 | 0.435 | 0.620 | 0.979 8 |
[1] | REHMAN M, LIU L, WANG Q, et al. Copper environmental toxicology, recent advances, and future outlook: A review[J]. Environmental Science and Pollution Research, 2019, 26(18):18003-18016. |
[2] | FULDA B, VOEGELIN A, EHLERT, et al. Redox transformation, solid phase speciation and solution dynamics of copper during soil reduction and reoxidation as affected by sulfate availability[J]. Geochimica et Cosmochimica Acta, 2013, 123(1):385-402. |
[3] | ARAÚJO E, STRAWN D G, MORRA M, et al. Association between extracted copper and dissolved organic matter in dairy-manure amended soils[J]. Environmental Pollution, 2019, 246:1020-1026. |
[4] | BRADL H B. Adsorption of heavy metal ions on soils and soils constituents[J]. Journal of Colloid and Interface Science, 2004, 277(1):1-18. |
[5] | 邢洪连, 郭华明, 王轶, 等. 河北保定市安新-清苑县土壤重金属形态分布及风险评估[J]. 水文地质工程地质, 2016, 43(2):140-146. |
[6] | 张丽红. 河北清苑县重金属污染水土环境风险评估[D]. 北京: 中国地质大学(北京), 2011. |
[7] | HU S P, CHEN X C, SHI J Y, et al. Particle-facilitated lead and arsenic transport in abandoned mine sites soil influenced by simulated acid rain[J]. Chemosphere, 2008, 71:2091-2097. |
[8] | FANG W, WEI Y H., LIU J G. Comparative characterization of sewage sludge compost and soil: heavy metal leaching characteristics[J]. Journal of Hazardous Materials, 2016, 310:1-10. |
[9] | PAGE K, HARBOTTLE M J, CLEALL P J, et al. Heavy metal leaching and environmental risk from the use of compost-like output as an energy crop growth substrate[J]. Science of the Total Environment, 2014, 487(1):260-271. |
[10] | 张林, 李丽芳. 清苑县水资源现状及开发利用评价分析[J]. 地下水, 2017, 39(3):128-129. |
[11] | 吴迪梅. 河北省污灌对农业环境的影响及经济损失评估[D]. 北京: 中国农业大学, 2003. |
[12] | 孙洪欣, 杨阳, 王倩倩, 等. 府河流域污灌状况及农户对污灌与人体健康关系的认知调查分析[J]. 中国农学通报, 2015, 31(2):197-200. |
[13] | 魏亮. 华北平原典型污灌区土壤砷及重金属迁移转化规律[D]. 北京: 中国地质大学(北京), 2020. |
[14] | QISHLAQI A, MOORE F. Statistical analysis of accumulation and sources of heavy metals occurrence in agricultural soils of Khoshk river banks, Shiraz, Iran[J]. American-Eurasian Journal of Agricultural and Environmental Sciences, 2007, 2(5):565-573. |
[15] | KUNHIKRISHNAN A, BOLAN N S, MÜLLER K, et al. The influence of wastewater irrigation on the transformation and bioavailability of heavy metal(Loid)s in soil[J]. Advances in Agronomy, 2012, 115:215-297. |
[16] | SHARMA A, WEINDORF D C, WANG D, et al. Characterizing soils via portable X-ray fluorescence spectrometer: 4. Cation exchange capacity (CEC)[J]. Geoderma, 2015, 239/240:130-134. |
[17] | 吴萍萍, 曾希柏, 李莲芳, 等. 离子强度和磷酸盐对铁铝矿物及土壤吸附As(V)的影响[J]. 农业环境科学学报, 2012, 31(3):498-503. |
[18] | MIZUTANI K, FISHER-POWER L M, SHI Z Q, et al. Cu and Zn adsorption to a terrestrial sediment:influence of solid-to-solution ratio[J]. Chemosphere, 2017, 175:341-349. |
[19] | 李雨清, 何江, 吕昌伟, 等. 富里酸对重金属在沉积物上吸附及形态分布的影响[J]. 环境科学, 2016, 37(3):1008-1015. |
[20] | GUGGENBERGER G, KAISER K. Dissolved organic matter in soil: challenging the paradigm of sorptive preservation[J]. Geoderma, 2003, 113(3/4):293-310. |
[21] | JANSEN B, NIEROP K, VERSTRATEN J M. Mechanisms controlling the mobility of dissolved organic matter, aluminum and iron in podzol B horizons[J]. European Journal of Soil Science, 2005, 56(4):537-550. |
[22] | ALAN J M, ROBERT G. Speciation, behavior, and bioavai-lability of copper downstream of a mine-impacted lake[J]. Environmental Toxicology and Chemistry, 2007, 26(12):2594-2603. |
[23] | ASHWORTH D J, ALLOWAY B J. Influence of dissolved orga-nic matter on the solubility of heavy metals in sewage-sludge-amended soils[J]. Communications in Soil Science and Plant Analysis, 2008, 39(3/4):538-550. |
[24] | GOVE L, COOKE C M, NICHOLSON F A, et al. Movement of water and heavy metals (Zn, Cu, Pb and Ni) through sand and sandy loam amended with biosolids under steady-state hydrological conditions[J]. Bioresource Technology, 2001, 78(2):171-179. |
[25] | ZHOU L X, WONG J. Effect of dissolved organic matter from sludge and sludge compost on soil copper sorption[J]. Journal of Environmental Quality, 2001, 30(3):878-883. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||