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The present study investigated the occurrence of polychlorinated biphenyls (PCBs) and halogenated flame retardants (HFRs) in soil, water, reed, air and dust samples collected from the e-waste recycling region in Ziya Town, Northern China. The results showed that the concentrations of PCBs reached relative high level in environmental matrices in the study area. HFRs including polybrominated diphenyl ethers (PBDEs), dechlorane plus (DP), allyl 2,4,6-tribromophenyl ether (ATE), tetrabromoethylcyclohexane (TBECH), pentabromotoluene (PBT), pentabromoethylbenzene (PBEB), 2,3-dibromopropyl 2,4,6-tribromophenyl ether (DPTE), 1,2-bis-(2,4,6-tribromophenoxy) ethane (BTBPE) and so on were also widely detected in multi-matrices. Long-range atmospheric transport (LRAT) potentials of non-BDE HFRs were assessed to address the LRAR abilities of these compounds. Analysis of soil–air exchange of PCBs and HFRs showed that soil acted as a secondary source to the atmosphere only for a few low molecular weight compounds, while the direction of the flux of most detected chemicals was from air to soil.  相似文献   
13.
通过室内模拟实验,探讨了在非水相硝基苯污染含水层的条件下,其在含水层中的迁移及释放规律。迁移规律表明,非水相硝基苯并非在含水层中直接进行垂向迁移,而是一方面在自身重力作用下向含水层下部迁移,另一方面在地下水流的作用下随地下水同向运移,整体表现为随地下水流的侧向运移,并最终迁移至含水层底部。释放规律表明,非水相硝基苯在含水层迁移的过程中会向地下水大量释放,释放出的硝基苯在水流的作用下随地下水同向运移,污染源及迁移至含水层底部的非水相硝基苯均存在再次释放。  相似文献   
14.
Significant losses in harvested fruit can be directly attributable to decay fungi and quality deterioration. Hot water treatment (HWT) has been demonstrated to be an effective and economic environment-friendly approach for managing postharvest decay and maintaining fruit quality. In this study, the effects of HWT (45 °C for 10, 15, 20, and 25 min) on in vitro growth of Fusarium oxysporum, in vivo Fusarium rot, and natural decay of melon were investigated. HWT inhibited spore germination and germ tube elongation of F. oxysporum. Protein impairment and ATP consumption triggered by HWT contributed to the inhibitory effect. Results of in vivo studies showed that HWT effectively controlled Fusarium rot and natural decay of melon. Correspondingly, HWT induced a significant increase in content of total phenolic compounds and lignin of melon. These findings indicate that the effects of HWT on Fusarium rot may be associated with the direct fungal inhibition and the elicitation of defense responses in fruit. Importantly, HWT used in this study had beneficial effects on fruit quality as well. HWT may represent an effective non-chemical approach for management of postharvest Fusarium rot.  相似文献   
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In this study, the mercury adsorption characteristics of HBr-modified fly ash in an entrained-flow reactor were investigated through thermal decomposition methods. The results show that the mercury adsorption performance of the HBr-modified fly ash was enhanced significantly. The mercury species adsorbed by unmodified fly ash were HgCl2, HgS and HgO. The mercury adsorbed by HBr-modified fly ash, in the entrained-flow reactor, existed in two forms, HgBr2 and HgO, and the HBr was the dominant factor promoting oxidation of elemental mercury in the entrained-flow reactor. In the current study, the concentration of HgBr2 and HgO in ash from the fine ash vessel was 4.6 times greater than for ash from the coarse ash vessel. The fine ash had better mercury adsorption performance than coarse ash, which is most likely due to the higher specific surface area and longer residence time.  相似文献   
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采用零价钴(ZVCo)活化过氧乙酸(PAA)降解水中罗丹明B(RhB),探究了ZVCo/PAA体系中PAA的活化机理,并通过自由基淬灭实验,识别了体系中的主要活性自由基.同时,考察了溶液初始pH值、PAA浓度、ZVCo投加量及水中常见阴离子对ZVCo/PAA体系降解RhB的影响,并评估了ZVCo在活化PAA过程中的稳定性和可重复利用性.最后,研究了RhB在ZVCo/PAA体系中的降解机理.结果表明,在中性条件下, 大约98.3%的RhB可以在180 s内被ZVCo/PAA体系有效去除.在该体系中,ZVCo原位生成的Co2+对PAA活化起到了主要作用,有机自由基(CH3C(O)O?和CH3C(O)OO?)是该体系的主要活性物种.增加ZVCo投加量或PAA浓度可以提高RhB的降解效率,但过量的PAA对RhB的 去除有抑制作用.SO42-、NO3-和Cl的存在几乎不影响ZVCo/PAA体系降解RhB,而HCO3-能够显著抑制RhB的去除.在重复使用4次后,ZVCo仍对PAA具有良好的活化效果,且其表面形貌和元素组成均未发生明显变化,表明ZVCo具有优异的稳定性和可重复利用性.RhB在ZVCo/PAA体系中的主要降解途径为其分子结构中共轭氧杂蒽基团的破坏.  相似文献   
18.
The creation of an environmentally friendly synthesis method for silver nanomaterials (AgNPs) is an urgent concern for sustainable nanotechnology development. In the present study, a novel straightforward and green method for the preparation of silver nanoparticle/reduced graphene oxide (AgNP/rGO) composites was successfully developed through the combination of phytosynthesis, continuous flow synthesis and microwave-assistance. Oriental persimmon (Diospyros kaki Thunb.) extracts were used as both plant reducing and capping agents for fast online synthesis of AgNP/rGO composites. The experimental parameters were optimized and the morphologies of the prepared materials were investigated. The characterization results reveal that spherical AgNPs were quickly synthesized and uniformly dispersed on rGO sheets using the proposed online system. Fourier transform infrared spectroscopy analysis confirmed that phenols, flavonoids, and other substances in the plant extracts played a decisive role in the synthesis of AgNP/rGO composites. Using sodium borohydride (NaBH4) degradation of p-nitrophenol (4-NP) as a model, the catalytic activity of the prepared AgNP/rGO materials was evaluated. The complete degradation of 4-NP was achieved within 12 min through the use of AgNP/rGO materials, and the composite had a much better catalytic activity than the bare AgNPs and rGO had. Compared with the conventional chemical method, our online method is facile, fast, cost-efficient, and environmentally friendly.  相似文献   
19.
为研究水生蔬菜土壤中多环芳烃(PAHs)的污染水平,以广西水生蔬菜和相邻地块陆生蔬菜土壤作为研究对象,采集表层土壤,比较16种PAHs的污染特征,分析PAHs主要来源,评价潜在的生态风险。结果表明,研究区内水生蔬菜土壤中5、6环PAHs和7种致癌性PAHs的含量显著地高于陆生蔬菜土壤,2,3环PAHs的含量低于陆生蔬菜土壤,4环PAHs的含量没有显著差异;水生蔬菜和陆生蔬菜土壤中7种致癌性芳烃∑7cPAHs的平均贡献率分别为49. 03%和37. 61%,大部分样点属于重度污染水平;三种水生蔬菜土壤PAHs的污染模式相似,以4,5环PAHs为主,其次为2,3环PAHs,6环PAHs的含量最低。通过同分异构体比值法和主要成分分析法分析,发现土壤PAHs的主要来源为机动车尾气排放和生物质不完全燃烧。水生蔬菜土壤PAHs的苯并(a)芘总毒性当量为174. 59μg/kg,显著高于陆生蔬菜土壤的105. 54μg/kg,二者均低于加拿大土壤质量指标600μg/kg,但潜在的生态风险不可忽视。  相似文献   
20.
合成有机物结构-生物降解性关系的研究   总被引:10,自引:0,他引:10  
本文综述了合成有机物生物降解性的研究方法.以及定性结构-生物降解性关系(SBR).重点综述了芳香类化合物的结构与生物降解性的关系.研究这一关系有助于有毒化学品生物降解性的预测.  相似文献   
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