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1.
The role of land use on fate of metals in soils is poorly understood. In this work, we studied the incorporation of lead in two neighboring soils with comparable pedogenesis but under long-term different agricultural management. Distributions of anthropogenic Pb were assessed from concentrations and isotopic compositions determined on bulk horizon samples, systematical 5-10 cm increment samples, and on 24-h EDTA extracts. Minor amounts of anthropogenic lead were detected until 1-m depth under permanent grassland, linked to high earthworm activity. In arable land, exogenous Pb predominantly accumulated at depths <60 cm. Although the proximity between the two sites ensured comparable exposition regarding atmospheric Pb deposition, the isotopic compositions clearly showed the influence of an unidentified component for the cultivated soil. This work highlights the need for exhaustive information on historical human activities in such anthropized agrosystems when fate of metal pollution is considered.  相似文献   
2.
A La-doped Co-Cu-Fe catalyst was synthesized for the antipyrine (ANT) removal. The La-doped catalyst had higher ANT removal than the control (95% vs. 54%). La reduced the particle size and increased the specific surface area of catalyst. The aim of this study was to synthesize a novel lanthanum (La) doped catalyst and to investigate antipyrine removal in wastewater using the Fenton-like process with the catalyst. The La-doped Co-Cu-Fe catalyst was synthesized using the modified hydrothermal method. Results showed that the La-doped catalyst had higher specific surface area and lower particle size than the catalyst without La doping (i.e., the control) (267 vs. 163 m2/g and 14 vs. 32 nm, respectively). Under the conditions of catalyst dosage 0.5 g/L, H2O2 concentration 1.70 g/L, and NaHCO3 0.1 g/L, the antipyrine removal within 60 min using the Fenton-like process with the La-doped catalyst was much higher than that with the control (95% vs. 54%). The hydroxyl radical concentration with the La-doped catalyst within 60 min was two times higher than that with the control (49.2 vs. 22.1 mg/L). The high catalytic activity of La-doped catalyst was mainly attributed to its high specific surface area based on the X-ray photoelectron spectroscopy result. Our La-doped catalyst should have great potential to remove antipyrine in wastewater using the heterogeneous Fenton-like process.  相似文献   
3.
稀土金属具有一些特殊的性能,这使得其对碳质材料还原NO的反应可能表现出特殊的催化效果,而此方面的研究没有报道.为了研究稀土金属对活性炭还原NO反应的催化效果,采用浸渍法制备了负载氧化镧的活性炭颗粒(La/C),并在无氧的固定床反应器中进行了程序升温反应和等温反应,考察了气体流量、NO的入口浓度、反应温度和氧化镧负载量对反应活性的影响,同时对反应机理和动力学进行了初步探讨.研究结果表明负载氧化镧的活性炭还原NO的反应是一级反应.由于炭表面3%(质量分数)的氧化镧的存在,C-NO反应的起始反应温度从500 ℃降低到300 ℃,反应活性大大提高,反应活化能从88.95 kJ/mol降低到51.05 kJ/mol.氧化镧的负载量对反应活性有重要影响,但负载量的大量增加对反应活性的提高效果甚微,最佳负载量为1.5%.La/C体系在反应中较稳定,而反应温度的升高对其稳定性不利.  相似文献   
4.
徐杰  刘维平 《中国环境科学》2020,40(10):4378-4384
以无水氯化铁为氧化剂,碳纸为基板,通过化学氧化法制备聚吡咯/二氧化钛(PPy/TiO2)光电阴极,采用XRD、IR、SEM对光催化材料进行表征.以碳纸为阳极;碳纸、TiO2改性碳纸和PPy/TiO2改性碳纸为阴极,构建双室微生物燃料电池(MFC).在光照条件下,研究了MFC废水处理效果、产电性能及阴极钴酸锂的浸出情况.结果表明:PPy/TiO2改性碳纸最大功率密度为10425.7mW/m2,分别是碳纸和TiO2改性碳纸的1.97和1.86倍;PPy/TiO2改性碳纸阴极Co(Ⅱ)浸出率为47.8%,分别是碳纸和TiO2改性碳纸的1.87和1.76倍.  相似文献   
5.
CO2的减排与利用是实现碳达峰和碳中和目标的重要途径.本文通过溶胶凝胶法将Sr和Zr掺入钙钛矿型LaCoO3结构中,合成了一系列钙钛矿催化剂,包括LaCoO3、La0.9Sr0.1CoO3-σ、La0.9Sr0.1Co0.9Zr0.1O3+σ和La0.9Sr0.1Co0.9Zr0.1O3,并考察了非热等离子体催化还原CO2为CO和CH4的性能.同时在A位掺杂Sr和B位掺杂Zr的催化剂(La0.9Sr0.1Co0.9Zr0.1O3)反应活性最高,其CO2转化率为28.7...  相似文献   
6.
Rat calvarial osteoblasts were treated with lanthanum chloride (LaCl3) to explore its effect on the mineral crystalline phase during the process of osteoblast calcification in vitro. The results confirmed that La was readily deposited in the mineral component of the matrix. Employing high-resolution transmission electron microscopy and Fourier transform infrared microspectroscopy techniques, we demonstrated that features comparable to dicalcium phosphate dihydrate (DCPD) and octacalcium phosphate, and hydroxyapatite (HAP) were detected in the mineral phases in vitro. Particularly, LaCl3 treatment retarded conversion from DCPD-like phase into HAP during mineralization. In addition, La was introduced in DCPD powder during wet chemical synthesis. When compared with that of La-free DCPD, the dissolution rate of La-incorporated DCPD was lower, thereby leading to a delayed DCPD-to-HAP phase transformation. Thus, it can be concluded that LaCl3 treatment influences the kinetics of inorganic phase transition by decreasing the dissolution rate of DCPD.  相似文献   
7.
The group of elements known as the rare earth elements (REEs) is comprised of the 15 lanthanides. REEs are used in a number of technologies including catalysts for automobiles and petroleum refining, magnets for wind turbines and defense technologies, and phosphors in lighting and computer and TV screens. REEs are actually quite abundant in the earth′s crust. The elements are deemed “rare” because they are found in low concentrations and are difficult to extract economically. China holds 48% of the global REE reserves, and until 2012, production of REEs was almost exclusive to China. Over the past decade, China has been steadily decreasing its REE export quotas, reducing the supply of REEs available to the rest of the world. REEs are considered critical materials according to the National Science and Technology Council, which defines critical elements as those serving an essential function in the manufacture of a product, the absence of which would cause significant social consequence. Thus, it is extremely important for consumers of REEs to be aware of and understand the risks facing the supply REEs, as awareness is the first and most important step in developing strategies to mitigate risk. This report presents a mechanism for identifying the risks present in a supply–demand scenario and determining the criticality of an individual rare earth element under specific circumstances.  相似文献   
8.
A spent fluid catalytic cracking (FCC) catalyst containing lanthanum (La) was used as a novel adsorbent for phosphorus (P) in simulated wastewater. The experiments were conducted in a batch system to optimize the operation variables, including pH, calcination temperature, shaking time, solid-liquid ratio, and reaction temperature under three initial P-concentrations (C0 = 0.5, 1.0, and 5.0 mg/L). Orthogonal analysis was used to determine that the initial P-concentration was the most important parameter for P removal. The P-removal rate exceeded 99% and the spent FCC catalyst was more suitable for use in low P-concentration wastewater (C0 <5.0 mg/L). Isotherms, thermodynamics and dynamics of adsorption are used to analyze the mechanism of phosphorus removal. The results show that the adsorption is an endothermic reaction with high affinity and poor reversibility, which indicates a low risk of second releasing of phosphate. Moreover, chemical and physical adsorption coexist in this adsorption process with LaPO4 and KH2PO4 formed on the spent FCC catalyst as the adsorption product. These results demonstrate that the spent FCC catalyst containing La is a potential adsorbent for P-removal from wastewater, which allows recycling of the spent FCC catalyst to improve the quality of water body.
  相似文献   
9.
金琎  叶亚新  王敏 《生态环境》2007,16(2):313-316
溶液培养条件下,研究了酸雨胁迫条件下萝卜(Raphanus sativusL.,一点红)保护酶系统的响应及稀土元素镧、铈的防护作用,并就镧、铈的防护作用进行了比较。结果显示:酸雨导致萝卜保护酶系统的SOD、CAT、POD酶活性总体水平发生变化,SOD、POD活性增强,CAT活性减弱。w(La)=30mg·kg-1、w(Ce)=40mg·kg-1的施用降低了SOD、POD活性水平,增强了CAT活性,减弱了由于酸雨胁迫对萝卜幼苗保护酶系统所造成的影响,且镧的总体防护效应优于铈。这表明,适宜种类、适当剂量的稀土可以诱导植物抗逆性,促进其生长,降低酸雨胁迫损伤。  相似文献   
10.
徐杰  刘维平 《中国环境科学》2021,40(10):4378-4384
以无水氯化铁为氧化剂,碳纸为基板,通过化学氧化法制备聚吡咯/二氧化钛(PPy/TiO2)光电阴极,采用XRD、IR、SEM对光催化材料进行表征.以碳纸为阳极;碳纸、TiO2改性碳纸和PPy/TiO2改性碳纸为阴极,构建双室微生物燃料电池(MFC).在光照条件下,研究了MFC废水处理效果、产电性能及阴极钴酸锂的浸出情况.结果表明:PPy/TiO2改性碳纸最大功率密度为10425.7mW/m2,分别是碳纸和TiO2改性碳纸的1.97和1.86倍;PPy/TiO2改性碳纸阴极Co(Ⅱ)浸出率为47.8%,分别是碳纸和TiO2改性碳纸的1.87和1.76倍.  相似文献   
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