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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Proper Mode of Using Rice Straw Biochar To Treat Cd-Contaminated Irrigation Water in Mining Regions Based on a Multiyear in Situ Experiment
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Proper Mode of Using Rice Straw Biochar To Treat Cd-Contaminated Irrigation Water in Mining Regions Based on a Multiyear in Situ Experiment

机译:基于多年实验的多年实验,使用稻草生物炭治疗采矿区CD污染灌溉水的适当模式

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Biochar has been widely used for immobilizing heavy metals in soils due to its favorable sorption capacity. Previous investigations on heavy metal immobilization in waters by biochar are conducted in laboratory. Knowledge about the long-term effects of in situ biochar application on water bodies contaminated by heavy metals remains scarce. In this research, biochar was derived from cadmium (Cd)-accumulated rice straw. A 35-d laboratory simulation and a three-year field enclosure experiment were carried out to assess the impacts of biochar application on Cd behavior in a water–sediment system of a historically Cd-contaminated irrigation pond. Results indicated that the pH of sediment and overlying water increased with biochar addition in both the lab and field experiments. The rice-straw biochar transformed the Cd in sediments from the exchangeable to residual fraction, because biochar addition increased the pH values and organic matter contents in sediment, leading to the sorption, sequestration, and passivation of Cd by sediment. The Cd concentration in overlying water decreased with the increase in biochar addition, and it continuously decreased with repeated annual application. Overall, for long-term effects of biochar addition on soluble Cd concentrations, the repeated annual addition of 2% biochar exhibited better performance than the repeated annual addition of 1% biochar and one-time addition of 6% biochar. This study provided a proper mode of utilizing rice-straw biochar to treat Cd-contaminated irrigation water in mining regions.
机译:由于其有利的吸附能力,Biochar已被广泛用于固定土壤中的重金属。在实验室进行了先前对Biochar的水中重金属固定化的研究。关于由重金属污染的水体上的原位生物炭施用的长期影响的知识仍然是稀缺的。在本研究中,Biochar衍生自镉(CD)累积的稻草。进行了35-D实验室仿真和三年的田间外壳实验,以评估生物炭施加对历史上CD污染灌溉池的水泥系统中CD行为的影响。结果表明,在实验室和现场实验中,生物炭加入沉积物和覆盖水的pH增加。稻草生物炭将CD转化为沉积物中的可易碎馏分,因为生物炭加入沉积物中的pH值和有机物质含量,导致沉积物的吸附,螯合和CD的钝化。随着生物炭加入的增加,覆盖水中的Cd浓度降低,并且随着年度施用而连续降低。总体而言,对于生物炭的长期效应加入可溶性Cd浓度,重复的年度添加2%的生物炭表现出比重复年度添加1%的生物炭和一次性BioChON的一次性性能。本研究提供了利用稻草生物炭治疗采矿区CD污染灌溉水的适当模式。

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