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Die Qingqi Lu Anxiang Li Cheng Li Haifeng Kong Hongling Li Bingru 《Environmental science and pollution research international》2021,28(5):5587-5597
Environmental Science and Pollution Research - Urban green space is a special space for urban life and natural contact and has an important impact on human health. However, little information is... 相似文献
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The formation of toxic nitrogenous disinfection byproducts (N-DBPs), such as nitrosamines, halonitromethanes and haloacetonitriles, from reactions between chlorine/chloramine and dissolved organic nitrogen in drinking water has caused great concern with regarding public health. This study revealed the occurrence of 17 aliphatic amines, some of which have been confirmed to be the precursors of N-DBPs, in source water across China. A sensitive method based on benzenesulfonyl chloride derivatization and liquid-liquid extraction followed by GC-MS analysis was established for the simultaneous analysis of the selected amines in aqueous samples. In total, 37 source water samples from the capital cities of 20 provinces were collected for the survey. Among the 17 amines, 14 were detected with an average frequency of detection of 36%. The most relevant amines in terms of frequency and maximum concentrations detected were dimethylamine (100%, 24.82 μg/L), methylamine (78%, 0.92 μg/L), N-methylethylamine (70%, 8.84 μg/L), propylamine (59%, 10.69 μg/L), diethylamine (54%, 3.76 μg/L), N-methylbutylamine (35%, 3.07 μg/L), N-ethylpropylamine (35%, 0.52 μg/L), and piperidine (32%, 2.35 μg/L). This is the first large scale survey of the aliphatic amines occurrence in source water in the world. The wide presence of nitrosamine precursors like dimethylamine, N-methylethylamine and diethylamine, and the precursors of haloacetonitriles and halonitromethanes like methylamine and propylamine suggests that better source water management is required to ensure the safety of drinking water. 相似文献
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Some problems including low treatment capacity, agglomeration and clogging phenomena, and short working life, limit the application of pre-treatment methods involving zero-valent iron (ZVI). In this article, ZVI was frozen in an amorphous state through a melt-spinning technique, and the decolorization effect of amorphous ZVI on Acid Orange II solution was investigated under varied conditions of experimental variables such as reaction temperature, ribbon dosage, and initial pH. Batch experiments suggested that the decolorization rate was enhanced with the increase of reaction temperature and ribbon dosage, but decreased with increasing initial solution pH. Kinetic analyses indicated that the decolorization process followed a first order exponential kinetic model, and the surface-normalized decolorization rate could reach 2.09 L/(m2. min) at room temperature, which was about ten times larger than any previously reported under similar conditions. Recycling experiments also proved that the ribbons could be reused at least four times without obvious decay of decolorization rate and efficiency. This study suggests a tremendous application potential for amorphous ZVI in remediation of groundwater or wastewater contaminated with azo dyes. 相似文献
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宁波南沙港网箱养殖水域营养状况评价及生物修复策略 总被引:1,自引:0,他引:1
根据2007年1月-2007年11月4个航次对宁波南沙港网箱养殖水域水体营养盐(NO2--N、NO3--N、NH 4+-N和PO34--P)含量的监测结果,利用营养指数E法对水体的富营养化状态进行了评价。根据网箱养殖系统物质平衡方程和现场调查实验数据,估算了南沙港网箱养殖水域的氮磷污染负荷,以溶解态氮作为平衡指标,估算了鱼藻类合理的配比模式。结果表明,南沙港水体中NO2--N、NO3--N、NH4+-N、PO4-P含量年变化范围分别为0.26μmol/L~4.86μmol/L,33.93μmol/L~82.86μmol/L,0.59μmol/L~7.86μmol/L,1.47μmol/L~2.97μmol/L,不同养殖区之间营养盐含量差异不显著(p〈0.05);营养指数E值年变化范围介于2.41~15.99之间,表明该港水体处于重度富营养化状态;养殖区N/P值的年平均值为32.95,表明南沙港海区是一个氮过剩的养殖系统。南沙港网箱养殖水域氮、磷的负荷量分别为70.43 t/a和5.96 t/a,其中溶解态氮、磷负荷量分别为49.3 t/a和2.38 t/a;南沙港的藻类养殖面积需要在现有基础上再扩大0.44倍,达到107.52 ha,才可以与网箱养殖系统的氮磷污染负荷构成平衡;网箱养殖个数与藻类养殖面积(ha)的合理配比约为1∶0.027。 相似文献
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欧盟国家开展节能减排较早,并积累了丰富的经验。比较了在金融危机影响下欧盟与中国在节能减排法律框架、管理方式、经济政策、产业政策和技术创新方面的异同,提出中国应该借鉴欧盟国家的先进经验,完善现有的节能减排政策体系,实现经济和社会的可持续发展。 相似文献
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为研究加氢站用高压储氢容器在火灾下的安全性能,采用计算流体力学(CFD)方法对45 MPa高压储氢瓶式容器火烧试验过程进行模拟研究,结合气瓶火烧试验,分析高压储氢容器火灾下的热响应过程,研究不同因素对储氢容器压力泄放装置动作时间的影响。结果表明:613 s以内试验压力与模拟数据的最大相对误差为3.9%,模型误差在可接受范围;不同充装介质对安全泄放装置动作时间影响不大;不同充装压力对容器内介质压升速率影响较大,充装水平较高时压力泄放装置更快动作,较低的充装压力下容器内介质温升较快;不同环境温度对介质温升影响较小。 相似文献
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