The flotation and surface interaction of rutile with nonyl hydroxamic acid were investigated in this work. The results show that the adsorption density and flotation recovery of rutile have similar tendency, especiall...The flotation and surface interaction of rutile with nonyl hydroxamic acid were investigated in this work. The results show that the adsorption density and flotation recovery of rutile have similar tendency, especially the maximum recovery and adsorption occur at pH about 7.5. In terms of Fourier transform infrared(FTIR) spectroscopic analysis, chemical adsorption is identified on the surface of rutile, where a chelate of O,O-five-membered rings with Ti^4+ on the surface of rutile may form. Adsorption measurements, Zeta potential test, IR spectrum analyses, and solution chemistry calculations illustrate that the adsorption on the rutile surface involves both physical and chemical adsorption, while chemical adsorption is dominant.展开更多
繁殖/生殖毒性类化合物由于特殊的毒理作用模式(mode of action,MOA),通过影响生物繁衍影响到种群和群落,因此依靠基于急、慢性毒性测试终点和传统基准推导方法推导的水生态基准值并不能够为水生生物群落结构提供足够的保护。本文根据...繁殖/生殖毒性类化合物由于特殊的毒理作用模式(mode of action,MOA),通过影响生物繁衍影响到种群和群落,因此依靠基于急、慢性毒性测试终点和传统基准推导方法推导的水生态基准值并不能够为水生生物群落结构提供足够的保护。本文根据文献资料,分析了推导此类化合物水生态基准时的关键科学问题,包括繁殖/生殖毒性类化合物MOA,毒性数据类型,受试物种选择,以及不同生命阶段、多代毒性测试和测试终点的判别和选择。并用所收集的壬基酚数据,尝试推导了基于水生生物生殖毒性的水生态基准值。研究得出基于生殖毒性的壬基酚预测无观察效应浓度(PNEC)值为0.12μg·L-1,其数值比美国环境保护局根据传统基准方法推导的基准持续浓度(CCC)的6.59μg·L-1低了近50倍。因此,基于其繁殖毒性(包括产卵量、受精率、孵化率、多代效应以及种群变化等)的实验结果更适合用于具有繁殖/生殖毒性污染物水生态基准的推导。展开更多
基金financially supported by the National Natural Science Foundation of China (No. 51474254)the Ph.D. Programs Foundation of Ministry of Education of China (No. 20120162110008)+2 种基金China Postdoctoral Science Foundation (No. 2013M531813)the Planned Science and Technology Project of Hunan Province, China (No. 2012SK3233)the Independent Exploration and Innovation Projects of Master of Central South University (No. 2014zzts275)
文摘The flotation and surface interaction of rutile with nonyl hydroxamic acid were investigated in this work. The results show that the adsorption density and flotation recovery of rutile have similar tendency, especially the maximum recovery and adsorption occur at pH about 7.5. In terms of Fourier transform infrared(FTIR) spectroscopic analysis, chemical adsorption is identified on the surface of rutile, where a chelate of O,O-five-membered rings with Ti^4+ on the surface of rutile may form. Adsorption measurements, Zeta potential test, IR spectrum analyses, and solution chemistry calculations illustrate that the adsorption on the rutile surface involves both physical and chemical adsorption, while chemical adsorption is dominant.
文摘繁殖/生殖毒性类化合物由于特殊的毒理作用模式(mode of action,MOA),通过影响生物繁衍影响到种群和群落,因此依靠基于急、慢性毒性测试终点和传统基准推导方法推导的水生态基准值并不能够为水生生物群落结构提供足够的保护。本文根据文献资料,分析了推导此类化合物水生态基准时的关键科学问题,包括繁殖/生殖毒性类化合物MOA,毒性数据类型,受试物种选择,以及不同生命阶段、多代毒性测试和测试终点的判别和选择。并用所收集的壬基酚数据,尝试推导了基于水生生物生殖毒性的水生态基准值。研究得出基于生殖毒性的壬基酚预测无观察效应浓度(PNEC)值为0.12μg·L-1,其数值比美国环境保护局根据传统基准方法推导的基准持续浓度(CCC)的6.59μg·L-1低了近50倍。因此,基于其繁殖毒性(包括产卵量、受精率、孵化率、多代效应以及种群变化等)的实验结果更适合用于具有繁殖/生殖毒性污染物水生态基准的推导。