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901.
电感耦合等离子体质谱法测定土壤中重金属有效态浓度 总被引:7,自引:0,他引:7
采用电感耦合等离子体质谱(ICP/MS)法,结合内标技术,高效、快速地测定了土壤中Cu、Zn、Pb、Cd、Ni、Cr、Hg、As和Se 9种元素的有效态浓度.Cu、Zn、Pb、Cd、Ni、Cr、Hg的有效态采用0.1 mol/L NaNO3浸提,所得浸提液上机前预先稀释10倍;As和Se的有效态采用稀HCl浸提.结果表明,在测定所有空白、标准溶液及样品时均在线加入500 靏/L 45Sc/72Ge/209Bi内标溶液,有效地克服了基体效应、接口效应和仪器波动所产生的影响;0.15%(质量分数)NaCl\|1.0%(体积分数)HCl作为Hg标准溶液固定液,可保证1 靏/L Hg标准溶液7 d有效期;9种元素有效态的仪器检出限均在靏/L级以下,方法检出限<0.030 mg/kg,平均加标回收率为81%~121%,相对标准偏差为0.02%~1.21%. 相似文献
902.
Yu Yao Zhuang Zhong Luo Li-yun Wang Ya-qi Li Hua-fen 《Environmental science and pollution research international》2019,26(24):24532-24541
Environmental Science and Pollution Research - Se can regulate Cd accumulation and translocation in plants; however, such effects can be controversial because of the differences in plant species... 相似文献
903.
Xu Xiangbo Ma Zhong Chen Yuqiao Gu Xiaoming Liu Qingyang Wang Yutao Sun Mingxing Chang Dunhu 《Journal of Material Cycles and Waste Management》2018,20(2):1050-1062
Journal of Material Cycles and Waste Management - The development of biogas programs in rural China has led to great economic, social, ecological and environmental benefits. The focus of this study... 相似文献
904.
Zhong Shen Wang Hongli Wen Hongmei Li Jian 《Environmental science and pollution research international》2021,28(30):40555-40567
Environmental Science and Pollution Research - As a kind of renewable resources, the effective utilization of marine resources has a significant influence on the sustainable development of economy.... 相似文献
905.
磷酸盐类化合物重金属稳定化的机理与应用 总被引:1,自引:0,他引:1
磷酸盐类化合物作为典型的重金属稳定化药剂,能够有效降低污染体系中重金属类污染物的毒性及生物危害性,稳定后的产物具有很高的地球化学稳定性。介绍了磷酸盐类化合物重金属稳定化的机理及实际应用,并认为:①磷酸盐类化合物可在一定的pH条件下与重金属反应并生成稳定的重金属矿物盐;②磷酸类矿物盐对它们的去除主要是表面吸附机理和络合反应;③某些金属阳离子可与羟基磷灰石晶格中的钙离子发生交换反应而进入晶格,形成含重金属的羟基磷灰石。磷酸盐类药剂在浙江省某矿山进行应用,对场地堆置中和渣进行了稳定化处理,重金属浸出结果满足《国家危险废物鉴别标准》(GB 5085.3—2007)。 相似文献
906.
利用生态足迹的计算模型和分析方法,对山西省太原市2010年的生态足迹和生态承载力进行了研究和分析.结果表明,太原市人均生态足迹需求为6.0139hm2,人均生态承载力为0.394hm2,出现了5.619hm2的人均生态赤字,表明太原市面临的生态压力较大.在此基础上,提出了缓减太原市生态压力的若干建议. 相似文献
907.
高活性高耐受甲醛降解菌株的分离鉴定及降解条件研究 总被引:3,自引:1,他引:3
以甲醛为唯一碳源,从土壤中分离得到1株甲醛降解菌,经形态学观察、生理生化特性研究和16SrDNA鉴定,该菌株属于恶臭假单胞菌(Pseudomonas putida).通过单因素试验和正交试验考察培养基及培养条件对菌株降解甲醛的影响,得出该菌株降解甲醛的最适条件为:蛋白胨1.2g/L,KH2PO4 4g/L,K2HPO4 3g/L,MgSO4·7H2O 0.2g/L,微量元素母液0.1mL/L,温度30℃,pH值8.在最适降解条件下,分别对不同初始浓度甲醛进行降解试验,结果表明该菌株对甲醛的耐受浓度可达6g/L,54h可将其降解86%,46h可将5g/L甲醛全部降解,35h可全部降解4g/L甲醛. 相似文献
908.
Ji Yang Yongguang Yin Jiacheng Zhou Hao Zhang Tianying Xie Ye Liu Qicheng Shen Jie Yang Limei Cao Yong Cai Xinbin Feng Shuxiao Wang Huan Zhong Ping Li 《环境科学学报(英文版)》2022,34(9):33-43
The stronger coordination ability of mercury ions with organic ligands than the metal ions in metal organic framework (MOFs) provides an accessible way to separate mercury ions from solution using specific MOFs. In this study, a Co-based MOF (ZIF-67, Co(mIM)2) was synthesized. It did not introduce specific functional groups, such as -SH and -NH2, into its structure through complicated steps. It separate Hg2+ from wastewater with a new strategy, which utilized the stronger coordination ability of Hg2+ with the nitrogen atom on the imidazole ring of the organic ligand than the Co2+ ions. Hg2+ replaced Co2+ nodes from ZIF-67 and formed a more stable precipitate with mIM. The experimental results showed that this new strategy was efficient. ZIF-67 exhibited Hg2+ adsorption capacity of 1740 mg/g, much higher than the known MOFs sorbents. mIMs is the reaction center and ZIF-67 can improve its utilization. The sample color faded from purple to white due to the loss of cobalt ion. It is a great feature of ZIF-67 that allows users to judge whether the sorbent is deactivated intuitively. ZIF-67 can be sustainable recycled by adding organic ligands to the solution after treatment due to its simple synthesis method at room temperature. It's a high-efficient and sustainable sorbent for Hg2+ separation from wastewater. 相似文献
909.
Huan Zhong Lihai Shang Yongguang Yin Wei Zhang Fen Li Lingjian Gao Guangyi Sun Zikang Cui Fengfeng Chen Ping Li Xinbin Feng Yong Cai Shuxiao Wang 《环境科学学报(英文版)》2022,119(9):59-67
Effective biomarkers are necessary to better understand the human mercury (Hg) exposure levels. However, mismatched biomarker sampling method causes extra uncertainty in assessing the risk of Hg exposure. To compare the differences between hair and fingernail, and further understand the excretion rates of methylmercury (MeHg) and inorganic mercury (IHg) via hair and fingernails, the total mercury (THg), MeHg, and IHg concentrations in paired hair and fingernail samples were investigated through paired samples collected from two typical mining areas, Wanshan mercury mine area (WMMA) and Hezhang zinc smelting area (HZSA). The positive correlation in THg, MeHg, and IHg concentrations (p <0.01) between hair and fingernail samples indicated that those two biomarkers can be corrected in application of assessing human Hg exposure. Compared to fingernails, the hair was suggested to be a more sensitive biomarker as the concentration of THg, MeHg and IHg were 2 ∼ 4 times higher than those in fingernails. Furthermore, the amounts of THg, MeHg, and IHg excreted via hair were 70 ∼ 226 times higher than that excreted via fingernails, and the hair plays a more important role than fingernails in the excretion of Hg from human bodies. Present study therefore provides some new insights to better understand the fate of human assimilated Hg. 相似文献
910.
Yongguang Yin Zhiyuan Gao Wang Zheng Yanbin Li Yurong Liu Mengjie Wu Shouying Li Ping Li Guangliang Liu Xuewu Fu Shuxiao Wang Feiyue Wang Yong Cai Xinbin Feng Baohua Gu Huan Zhong 《环境科学学报(英文版)》2022,119(9):152-165
The transformation of mercury (Hg) in the environment plays a vital role in the cycling of Hg and its risk to the ecosystem and human health. Of particular importance are Hg oxidation/reduction and methylation/demethylation processes driven or mediated by the dynamics of light, microorganisms, and organic carbon, among others. Advances in understanding those Hg transformation processes determine our capacity of projecting and mitigating Hg risk. Here, we provide a critical analysis of major knowledge gaps in our understanding of Hg transformation in nature, with perspectives on approaches moving forward. Our analysis focuses on Hg transformation processes in the environment, as well as emerging methodology in exploring these processes. Future avenues for improving the understanding of Hg transformation processes to protect ecosystem and human health are also explored. 相似文献