在基和硫酸盐基基基处理过程中直接确定绝对基量产量
Yiqi Yan1,2, Yunxiang Meng1,2, Kanying Miu1,2
1Institute of Environmental Engineering, School of Metallurgy and Environment, Central South University, Changsha 410083, China.
Environmental science & technology
|May 9, 2024
概括
一种新的时间解决技术准确地测量了水处理的激进量子产量. 这种方法克服了旧技术的局限性,为先进的氧化过程提供了可靠的数据.
科学领域:
- 环境化学环境化学
- 水处理技术水处理技术
- 化学动力学 化学动力学
背景情况:
- 激素量子产量 () 对于评估基于激素的水处理效率至关重要.
- 现有测量方法的选择性,特异性和干扰性差,导致错误.
研究的目的:
- 开发一种直接且可靠的时间解析技术,以在pH值7.0下确定绝对基数量子产量 ().
- 在高级氧化过程 (AOPs) 中量化常见基因前体.
主要方法:
- 采用直接时间解析技术测量过氧化 (H2O2) 和过氧化硫酸盐 (PDS).
- 开发了一种新的方法,使用铁酸作为在非稳定状态系统中探测过氧硫酸盐 (PMS).
- 利用密度函数理论 (DFT) 的计算来阐明基质形成机制.
主要成果:
- 对H2O2的测量为1.10 ± 0.01和PDS的测量为1.46 ± 0.05在266nm.
- 确定PMS的为0.56,这是与
- DFT的计算显示,O-O抗结合轨道促进过氧键的不稳定,从而产生激素.
结论:
- 开发的时间解析技术提供了一种可靠的方法来确定绝对基数量子产量 ().
- 该技术为各种基于激素的水处理工艺的准确性能评估提供了科学基础.
- 了解激素形成机制有助于优化AOPs.
相关概念视频
Radical Formation: Abstraction
3.5K
The electron of an atom can be abstracted from a compound by a relatively unstable radical to generate a new radical of relatively greater stability. For example, an initiator which forms radicals by homolysis can abstract a suitable species like a hydrogen atom or a halogen atom from a compound to generate a new radical. This ability of radicals to propagate by abstraction is a crucial feature of radical chain reactions.
Even though homolysis produces radicals, it is different from radical...
Even though homolysis produces radicals, it is different from radical...
3.5K
Radical Formation: Elimination
1.7K
Another method of radical formation is the elimination process. It is the opposite of the addition route and is driven by the instability of the radical. For example, as depicted in Figure 1, dibenzoyl peroxide yields a pair of unstable radicals upon homolysis. Given its instability, this radical spontaneously undergoes elimination via a C–C bond cleavage to form a relatively more stable phenyl radical. The mechanism involves cleavage of the bond between the α and β positions...
1.7K
Radical Reactivity: Overview
2.1K
Radicals, the highly reactive species, gain stability by undergoing three different reactions. The first reaction involves a radical-radical coupling, in which a radical combines with another radical, forming a spin‐paired molecule. The second reaction is between a radical and a spin‐paired molecule, generating a new radical and a new spin‐paired molecule. The third reaction is radical decomposition in a unimolecular reaction, forming a new radical and a spin‐paired...
2.1K
Radical Substitution: Hydrogenolysis of Alkyl Halides with Tributyltin Hydride
1.8K
Radical substitution reactions can be used to remove functional groups from molecules. The hydrogenolysis of alkyl halides is one such reaction, where the weak Sn–H bond in tributyltin hydride reacts with alkyl halides to form alkanes. Here, the reagent Bu3SnH yields tributyltin halide as a byproduct.
The bonds formed in this reaction are stronger than the bonds broken, making it energetically favorable. The reaction follows a radical chain mechanism similar to radical halogenation...
The bonds formed in this reaction are stronger than the bonds broken, making it energetically favorable. The reaction follows a radical chain mechanism similar to radical halogenation...
1.8K
Radical Formation: Homolysis
3.6K
A bond is formed between two atoms by sharing two electrons. When this bond is broken by supplying sufficient energy, either two electrons can be taken up by one atom forming ions by the cleavage called heterolysis, or the two electrons are shared by two atoms, with one each creating radicals by the cleavage called homolysis.
3.6K
Radical Oxidation of Allylic and Benzylic Alcohols
2.0K
Activated manganese(IV) oxide can selectively oxidize allylic and benzylic alcohols via a radical intermediate mechanism. Primary allylic alcohols are oxidized to aldehydes, while secondary allylic alcohols yield ketones. The redox reaction of potassium permanganate with an Mn(II) salt such as manganese sulfate (under either alkaline or acidic conditions), followed by thorough drying, yields the oxidizing agent: activated MnO2. While MnO2 is insoluble in the solvents used for the reaction, the...
2.0K


