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191.
To investigate the feasibility of detoxifying chromium slag by sewage sludge,synthetic chromium slag containing 3% of Cr(VI) was mixed with sewage sludge followed by thermal treatment in nitrogen gas for stabilizing chromium.The effects of slag to sludge ratio(0.5,1 and 2) and temperature(200,300,500,700 and 900°C) on treatment efficiency were investigated.During the mixing process before thermal treatment,59.8%-99.7% of Cr(VI) was reduced,but Cr could be easily leached from the reduction product.Increasing heating temperature and decreasing slag to sludge ratio strengthened the reduction and stabilization of Cr(VI).When the slag to sludge ratio was 0.5 and thermal treatment temperature was 300°C,the total leached Cr and Cr(VI) declined to 0.55 mg/L and 0.17 mg/L respectively,and 45.5% of Cr in the thermally treated residue existed as residual fraction.A two-stage mechanism was proposed for the reduction and stabilization of Cr. 相似文献
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193.
Zhixiang Zhou Tong Shao Mengnan Qin Xiaoyan Miao Yu Chang Wang Sheng Fengshang Wu Yunjiang Yu 《环境科学学报(英文版)》2018,30(4):182-187
The purpose of this study was to examine the direct toxicity of PM2.5 collected from Beijing on human umbilical vein endothelial cells(HUVEC). A Cell Counting Kit 8(CCK8) assay demonstrated that PM2.5 exposure decreased the proliferation of HUVECs in a dosedependent manner. We also found that PM2.5 exposure induced autophagy in HUVECs, as evidenced by:(1) an increased number of double-membrane vesicles;(2) enhanced conversion and punctuation of the microtubule-associated protein light chain 3(LC3); and(3) decreased levels of the selective autophagy substrate p62 in a time-dependent manner.Furthermore, promoting autophagy in PM2.5-exposed HUVECs with rapamycin increased the cell survival rate, whereas inhibiting autophagy via 3-methyladenine significantly decreased cell survival. These results demonstrate that PM2.5 exposure can induce cytotoxicity and autophagy in HUVECs and that autophagy play a protective role against PM2.5-induced cytotoxicity. The findings of the present study imply a direct toxic effect of PM2.5 on HUVECs and provide novel insight into the mechanism of cardiovascular diseases caused by PM2.5 exposure. 相似文献
194.
苯噻草胺在土壤中的吸附与解吸行为研究 总被引:9,自引:4,他引:9
采用批量平衡实验方法,研究了除草剂苯噻草胺在5种不同性质土壤中的吸附与解吸行为,并探讨了土壤有机质及溶液pH值对吸附的影响.结果表明,线性方程与Freundlich方程均能较好地拟合苯噻草胺在土壤中的吸附等温线.计算得到苯噻草胺在5种土壤中的碳标化分配系数Koc在849.5~1?818.8 L·kg-1之间,说明土壤对苯噻草胺有较强的吸附能力.苯噻草胺在土壤中的分配系数Kd、Freundlich常数Kf以及Kf(1/n)与土壤有机质含量均呈显著正相关.通过过氧化氢去除有机质后,土壤对苯噻草胺的吸附大大降低,说明土壤有机质是影响苯噻草胺在土壤中吸附的主要因素.对于同种土壤而言,苯噻草胺的吸附量随pH值的增大而减小.解吸实验表明,苯噻草胺在土壤中的解吸过程具有一定的滞后性,推测其在土壤中的迁移能力较差. 相似文献
195.
壬基酚聚氧乙烯醚在污水处理过程中的迁移转化行为 总被引:17,自引:3,他引:17
用正相色谱-质谱联用法(NPLC-MS)分离分析高聚合度的NPnEO(n>2),用气相色谱-质谱联用方法(GC-MS)测定其中的NP,NP1EO和NP2EO浓度,对NPnEO在城市污水处理厂的迁移转化行为进行了研究。在污水处理厂的进水中,检测出NP和NPnEO(n=1-23),总浓度为174nmol/L,其中NP2EO的浓度最高,为89.6nmol/L;其次分别为NP(42.2nmol/L)和NP1EO(12.2nmol/L);出水中同样检测出NP和NPnEO(n=1-18),其中NP2EO的浓度最高,为37.2nmol/L;其次分别为NP(6.64nmol/L)和NP1EO(0.135nmol/L)。在城市污水处理过程中,NPnEO从高聚合度降妥成低聚合度,NP和NPnEO的总去降率为71%。另外,NP和NPnEO在污泥及污泥过滤水中的分配表明污泥对NPnEO有明显的吸附作用,并近似符合Dubinin-Astakhov等温吸附。 相似文献
196.
197.
Jingjing Shao Yan Cheng Chunping Yang Guangming Zeng Wencan Liu Panpan Jiao Huijun He 《环境科学学报(英文版)》2016,28(9):120-129
Naphthalene-2-ol is a typical biologically recalcitrant pollutant in dye wastewater.Solvent extraction of naphthalene-2-ol from aqueous solutions using mixed solvents was investigated.Various extractants and diluents were evaluated,and the effects of volume ratio of extractant to diluent,initial p H,initial concentration of naphthalene-2-ol in aqueous solution,extraction time,temperature,volume ratio of organic phase to aqueous phase(O/A),stirring rate and extraction stages,on extraction efficiency were examined separately.Regeneration and reuse of the spent extractant were also investigated.Results showed that tributyl phosphate(TBP) achieved 98% extraction efficiency for naphthalene-2-ol in a single stage extraction,the highest among the 12 extractants evaluated.Extraction efficiency was optimized when cyclohexane and n-octane were used as diluents.The solvent combination of 20% TBP,20% n-octanol and 60% cyclohexane(V/V) obtained the maximum extraction efficiency for naphthalene-2-ol,99.3%,within 20 min using three cross-current extraction stages under the following extraction conditions:O/A ratio of 1:1,initial p H of 3,25°C and stirring rate of 150 r/min.Recovery of mixed solvents was achieved by using 15%(W/W) Na OH solution at an O:A ratio of 1:1 and a contact time of 15 min.The mixed solvents achieved an extraction capacity for naphthalene-2-ol stably higher than90% during five cycles after regeneration. 相似文献
198.
Zhuofei Du Min Hu Jianfei Peng Song Guo Rong Zheng Jing Zheng Dongjie Shang Yanhong Qin He Niu Mengren Li Yudong Yang Sihua Lu Yusheng Wu Min Shao Shijin Shuai 《环境科学学报(英文版)》2018,30(4):348-357
Light-duty gasoline vehicles have drawn public attention in China due to their significant primary emissions of particulate matter and volatile organic compounds(VOCs). However,little information on secondary aerosol formation from exhaust for Chinese vehicles and fuel conditions is available. In this study, chamber experiments were conducted to quantify the potential of secondary aerosol formation from the exhaust of a port fuel injection gasoline engine. The engine and fuel used are common in the Chinese market, and the fuel satisfies the China V gasoline fuel standard. Substantial secondary aerosol formation was observed during a 4–5 hr simulation, which was estimated to represent more than 10 days of equivalent atmospheric photo-oxidation in Beijing. As a consequence, the extreme case secondary organic aerosol(SOA) production was 426 ± 85 mg/kg-fuel, with high levels of precursors and OH exposure. The low hygroscopicity of the aerosols formed inside the chamber suggests that SOA was the dominant chemical composition. Fourteen percent of SOA measured in the chamber experiments could be explained through the oxidation of speciated single-ring aromatics. Unspeciated precursors, such as intermediate-volatility organic compounds and semi-volatile organic compounds, might be significant for SOA formation from gasoline VOCs. We concluded that reductions of emissions of aerosol precursor gases from vehicles are essential to mediate pollution in China. 相似文献
199.
新型饮用水除氟材料Bio-F的除氟特性和比较研究 总被引:6,自引:1,他引:6
对3种传统除氟剂活性氧化铝、骨炭和改性沸石与自制的新型生物除氟剂Bio-F的除氟性能及影响因素(材料粒径、pH值、吸附时间、水样含氟浓度、其它离子、再生能力等)进行了比较,并模拟动态实验评估了这4种除氟材料对实际高氟地下水处理的效果.结果表明,Bio-F生物除氟剂对F-的吸附过程符合Lagergren一级吸附动力学特征(R2=0.958 0),吸附速率较快,且该过程属于吸热反应; Bio-F吸附F-符合Langmuir吸附等温模型(R2=0.999 2),吸附容量高,静态吸附容量可达4.088 3 mg·g-1,分别约是活性氧化铝和改性沸石的1.8和 5.8倍.4种除氟材料吸附容量与氟浓度正相关,与吸附剂粒径负相关.高浓度的CO2-3、HCO-3明显抑制Bio-F的除氟(p<0.05),但高浓度的Ca2+、NO-3、HPO2-4有利于Bio-F的除氟(p<0.001).Bio-F除氟最佳停留时间3~4 min,远远低于沸石20 min和活性氧化铝11 min.在pH 4.0~9.0范围内Bio-F可保持90%以上吸附F-的能力.再生性能稳定,10次再生后吸附容量变化不超过15%.Bio-F综合性能优于其它3种传统除氟剂,在我国广大农村地区推广有显著优越性. 相似文献
200.
采用封闭式采样和气相色谱法分析监测了北京主要树种油松排放的萜烯类化合物,其中包括α和β蒎烯、蒈烯、松油烯、柠檬烯和罗勒烯,以及少量异戊二烯。松油烯、B蒎烯、柠檬烯和蒈烯的排放量之和占油松排放碳氢总量的94%以上。萜烯和异戌二烯排放速率随日照和温度的升高而增加。萜烯等浓度的日变化表明在正午和午夜油松有两个排放高峰。在日均气温为18℃时油松的碳氢化合物平均总排放速率约为8.7μh/h.g。 相似文献