排序方式: 共有29条查询结果,搜索用时 15 毫秒
1.
Polybrominated diphenyl ethers (PBDEs) are recognized as a new class of widely-distributed and persistent contaminants for which effective treatment and remediation technologies are needed. In this study, two kinds of commercially available nanoscale Fe0 slurries (Nanofer N25 and N25S), a freeze-dried laboratory-synthesized Fe0 nanoparticle (nZVI), and their palladized forms were used to investigate the effect of particle properties and catalyst on PBDE debromination kinetics and pathways. Nanofers and their palladized forms were found to debrominate PBDEs effectively. The laboratory-synthesized Fe0 nanoparticles also debrominated PBDEs, but were slower due to deactivation by the freeze-drying and stabilization processes in the laboratory synthesis. An organic modifier, polyacrylic acid (PAA), bound on N25S slowed PBDE debromination by a factor of three to four compared to N25. The activity of palladized nZVI (nZVI/Pd) was optimized at 0.3 Pd/Fe wt% in our system. N25 could debrominate selected environmentally-abundant PBDEs, including BDE 209, 183, 153, 99, and 47, to end products di-BDEs, mono-BDEs and diphenyl ether (DE) in one week, while nZVI/Pd (0.3 Pd/Fe wt%) mainly resulted in DE as a final product. Step-wise major PBDE debromination pathways by unamended and palladized Fe0 are described and compared. Surface precursor complex formation is an important limiting factor for palladized Fe0 reduction as demonstrated by PBDE pathways where steric hindrance and rapid sequential debromination of adjacent bromines play an important role. 相似文献
2.
3.
4.
柠檬酸清洁生产工艺的研究 总被引:8,自引:0,他引:8
分析了传统檬酸生产工艺存在的污染问题,提出了在柠檬酸生产过程中采用清洁生产技术的各种途径。 相似文献
5.
6.
7.
采用失重、电化学法研究了异喹啉季铵盐在 1mol/L盐酸溶液中对A3钢的缓蚀行为及吸附规律。实验表明 ,异喹啉季铵盐是一种阴、阳极混合型缓蚀剂 ,其缓蚀性能优良 ,在A3钢表面产生化学吸附 ,吸附过程为放热反应。 相似文献
8.
9.
10.
特种化工废水的生物毒性、抑制性研究 总被引:1,自引:0,他引:1
某厂特种有机废水 ,含季铵盐和羟乙基纤维素。研究表明 ,他们在浓度分别超过 1 2 0 mg/L和 2 2 0 mg/L时 ,呈现生物毒性或抑制性 ,且随浓度增高而严重影响废水生化处理效果。当水样中季铵盐浓度小于 1 2 0 mg/L,羟乙基纤维素浓度小于 2 2 0 mg/L时 ,它们不具生物毒性 ,可作为营养物质被微生物利用。废水动态模拟试验表明 ,进水 CODCr30 0 0 mg/L的废水 ,用接触厌氧—好氧生化法能使出水达到当地排放标准。 相似文献