Hu Fangjie, Liu Zuwen, Zhang Jun, et al. Leaching Effects of Lead-contaminated Farmland by Simulated Acid Rain[J]. Bulletin of Soiland Water Conservation, 2019, 39(3): 170-174.
DOI:
Hu Fangjie, Liu Zuwen, Zhang Jun, et al. Leaching Effects of Lead-contaminated Farmland by Simulated Acid Rain[J]. Bulletin of Soiland Water Conservation, 2019, 39(3): 170-174. DOI: 10.13961/j.cnki.stbctb.2019.03.028.
Leaching Effects of Lead-contaminated Farmland by Simulated Acid Rain
[Objective] Due to the serious heavy metal lead pollution in the farmland around the rare earth mining area in Southern Jiangxi Province
we aim to study the migration and transformation of heavy metal lead in the farmland soil in this area in order to provide a basis for lead pollution control in mining area.[Methods] The leaching amount of heavy metal lead was observed by simulated acid rain leaching experiment
and the experimental results were analyzed by response surface methodology.[Results] As the leaching amount of lead increased with time
it showed two stages of rapid and slow decline. With the decrease of pH value
the leaching amount of lead increased first and then decreased with the increasing of leaching intensity. When the concentration of exogenous lead increased
the leaching amount increased with the decrease of pH value and the increase of leaching intensity. Response surface software was used to fit the experimental data by multiple regression. The pH value and concentration of lead in culture were significant in the interaction term.[Conclusion] The degree of lead pollution was positively correlated with the release of lead. The pH value of acid rain had an important influence on the release of lead in contaminated farmland.
Zheng Yonghong, Zhang Zhiguo, Yao Duoxi, et al. Characteristics of temporal spatial distribution and enrichment of heavy metals in coal mine reclaimed soil[J]. Journal of China Coal Society, 2013,38(8):1476-1483.
Jung Kyungwon, Jeong Taeun, Kang Hojeong, et al. Characteristics of biochar derived from marine macroalgae and fabrication of granular biochar by entrapment in calcium-alginate beads for phosphate removal from aqueous solution[J]. Bioresource Technology, 2016,211:108-111.
Liu Na, Charrua A B, Weng Chihhuang, et al. Characterization of biochars derived from agriculture wastes and their adsorptive removal of atrazine from aqueous solution:A comparative study[J]. Bioresource Technology, 2015,198:55-62.