采用机械混合-浸渍法制备3种钙基复合载氧体,并在流化床中考察复合载氧体的煤化学链气化反应特性、循环反应性能以及反应过程中复合载氧体的硫释放规律。结果表明:900℃时3种复合载氧体与煤化学链气化反应的碳转化率、合成气含量、冷煤...采用机械混合-浸渍法制备3种钙基复合载氧体,并在流化床中考察复合载氧体的煤化学链气化反应特性、循环反应性能以及反应过程中复合载氧体的硫释放规律。结果表明:900℃时3种复合载氧体与煤化学链气化反应的碳转化率、合成气含量、冷煤气效率均高于载氧体Ca Ben的;Ca O的加入对Ca SO4副反应的抑制效果明显;选择复合载氧体Ca Ca Ben进行循环实验,在10次循环过程中,冷煤气效率稳定在83%左右,复合载氧体Ca Ca Ben循环反应性能良好。展开更多
Microbial degradation technologies have been developed to restore ground water quality in aquifers polluted by organic contaminants effectively in recent years. However, in course of the degradation, the formation of ...Microbial degradation technologies have been developed to restore ground water quality in aquifers polluted by organic contaminants effectively in recent years. However, in course of the degradation, the formation of biofilms in ground water remediation technology can be detrimental to the effectiveness of a ground water remediation project. Several alternatives are available to a remedial design engineer, such as Permeable Reactive Barriers (PRBs) and in -situ bioremediation, Hydrogen Releasing Compounds (HRCs) barrier, Oxygen Releasing Compounds (ORCs) barrier etc. which are efficient and cost- effective technologies. Excessive biomass formation renders a barrier ineffective in degrading the contaminants, Efforts are made to develop kinetics models which accurately determine bio - fouling and bio - filn formation and to control excessive biomass formation.展开更多
Copper ferrite is a promising material for hydrogen production through thermochemical water splitting. In this work, the cation distribution of copper ferrite and the corresponding oxygen-deficient compound of spinel ...Copper ferrite is a promising material for hydrogen production through thermochemical water splitting. In this work, the cation distribution of copper ferrite and the corresponding oxygen-deficient compound of spinel structure was analyzed based on the crystal structural chemistry theory. The mechanism of oxygen releasing of CuO, Fe2O3, CuFe2O4 and metal (M=Ni, Mn or Zn) doped copper ferrite in the process of temperature rising was investigated by differential thermal analysis-thermogravimetry (DTA-TG). By combining the theoretical analysis with experimental results, the mechanism of oxygen releasing of copper ferrite is proposed, which is different from that of other ferrites. For copper ferrite, the oxygen releasing caused by Cu(II)→Cu(I) plays a predominant role, while for other ferrites, the oxygen releasing resulting from Fe(III)·Fe(II) is dominant.展开更多
采用腐殖酸钠、过氧化钙和沸石为原材料,在一定条件下制备复合释氧剂用于黑臭水体的生态修复。研究结果表明,复合释氧剂最佳制备条件为m(CaO_2)∶m(沸石)为1∶1、Na-A质量分数为2%和固化温度为100℃,复合释氧剂可显著延长释氧周期,且释...采用腐殖酸钠、过氧化钙和沸石为原材料,在一定条件下制备复合释氧剂用于黑臭水体的生态修复。研究结果表明,复合释氧剂最佳制备条件为m(CaO_2)∶m(沸石)为1∶1、Na-A质量分数为2%和固化温度为100℃,复合释氧剂可显著延长释氧周期,且释氧过程对水体pH和COD的影响极低;底泥修复实验结果显示,复合释氧剂投加量为560 g/m^2时,上覆水溶解氧和氧化还原电位在第30天时分别维持在1.32 mg/L及42 m V,水中TP和COD去除率可分别达到90.11%和63%,表明复合释氧剂可有效改善水质并抑制底泥磷释放,这对城镇黑臭水体的生态修复治理具有一定的实际意义。展开更多
文摘采用机械混合-浸渍法制备3种钙基复合载氧体,并在流化床中考察复合载氧体的煤化学链气化反应特性、循环反应性能以及反应过程中复合载氧体的硫释放规律。结果表明:900℃时3种复合载氧体与煤化学链气化反应的碳转化率、合成气含量、冷煤气效率均高于载氧体Ca Ben的;Ca O的加入对Ca SO4副反应的抑制效果明显;选择复合载氧体Ca Ca Ben进行循环实验,在10次循环过程中,冷煤气效率稳定在83%左右,复合载氧体Ca Ca Ben循环反应性能良好。
文摘Microbial degradation technologies have been developed to restore ground water quality in aquifers polluted by organic contaminants effectively in recent years. However, in course of the degradation, the formation of biofilms in ground water remediation technology can be detrimental to the effectiveness of a ground water remediation project. Several alternatives are available to a remedial design engineer, such as Permeable Reactive Barriers (PRBs) and in -situ bioremediation, Hydrogen Releasing Compounds (HRCs) barrier, Oxygen Releasing Compounds (ORCs) barrier etc. which are efficient and cost- effective technologies. Excessive biomass formation renders a barrier ineffective in degrading the contaminants, Efforts are made to develop kinetics models which accurately determine bio - fouling and bio - filn formation and to control excessive biomass formation.
基金Supported by the National Defense Fundamental Research Fund (Grant No. A1420080145)
文摘Copper ferrite is a promising material for hydrogen production through thermochemical water splitting. In this work, the cation distribution of copper ferrite and the corresponding oxygen-deficient compound of spinel structure was analyzed based on the crystal structural chemistry theory. The mechanism of oxygen releasing of CuO, Fe2O3, CuFe2O4 and metal (M=Ni, Mn or Zn) doped copper ferrite in the process of temperature rising was investigated by differential thermal analysis-thermogravimetry (DTA-TG). By combining the theoretical analysis with experimental results, the mechanism of oxygen releasing of copper ferrite is proposed, which is different from that of other ferrites. For copper ferrite, the oxygen releasing caused by Cu(II)→Cu(I) plays a predominant role, while for other ferrites, the oxygen releasing resulting from Fe(III)·Fe(II) is dominant.
文摘采用腐殖酸钠、过氧化钙和沸石为原材料,在一定条件下制备复合释氧剂用于黑臭水体的生态修复。研究结果表明,复合释氧剂最佳制备条件为m(CaO_2)∶m(沸石)为1∶1、Na-A质量分数为2%和固化温度为100℃,复合释氧剂可显著延长释氧周期,且释氧过程对水体pH和COD的影响极低;底泥修复实验结果显示,复合释氧剂投加量为560 g/m^2时,上覆水溶解氧和氧化还原电位在第30天时分别维持在1.32 mg/L及42 m V,水中TP和COD去除率可分别达到90.11%和63%,表明复合释氧剂可有效改善水质并抑制底泥磷释放,这对城镇黑臭水体的生态修复治理具有一定的实际意义。