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An investigation of the factors involved in the decomposition of sodium hypochlorite.

机译:研究涉及次氯酸钠分解的因素。

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摘要

Chlorine is the most commonly used oxidizing agent for the disinfection of drinking water in the United States. Common sources of chlorine include chlorine gas, aqueous sodium hypochlorite, and solid calcium hypochlorite. Hypochlorite ion (OCl{dollar}sp-{dollar}) is known to undergo decomposition to form chlorate ion (ClO{dollar}sb3sp-{dollar}). Prior to 1991, there was very little concern given by utilities to ClO{dollar}sb3sp-{dollar} formation in hypochlorinated drinking water. It appears to have been the general belief of water utility personnel that observed decreases in the concentration of OCl{dollar}sp-{dollar} were due to the decomposition of OCl{dollar}sp-{dollar} to form oxygen. As high as 0.3 mg/L ClO{dollar}sb3sp-{dollar} may be present in hypochlorinated drinking water.; The primary objective of this work was to determine how various experimental variables affect the kinetics and mechanism of decomposition of concentrated OCl{dollar}sp-{dollar} and the formation of ClO{dollar}sb3sp-{dollar} and O{dollar}sb2{dollar}. The concentrations of OCl{dollar}sp-{dollar}, ClO{dollar}sb3sp-{dollar}, ClO{dollar}sb2sp-{dollar}, and OH{dollar}sp-{dollar} have been measured as a function of time for a variety of experimental conditions. Various analytical methodologies were developed in order to measure these species. An extensive series of decomposition experiments has been carried out by varying the following experimental parameters: OH{dollar}sp-{dollar} concentration, OCl{dollar}sp-{dollar} concentration, temperature, Cl{dollar}sp-{dollar} concentration, presence of common matrix ions.; A second objective of this work was to simulate (and thus predict) the decomposition of OCl{dollar}sp-{dollar} while taking into account the effect of each experimental variable studied. A Predictive Chemical Model has been refined with this task in mind. Accomplishing this objective has lead to a protocol to minimize OCl{dollar}sp-{dollar} decomposition and ClO{dollar}sb3sp-{dollar} formation when concentrated OCl{dollar}sp-{dollar} solutions are used as a source of free available chlorine for drinking water disinfection. From a practical point of view, this allows drinking water utilities to minimize the loss of oxidizing strength during OCl{dollar}sp-{dollar} storage (a cost ultimately passed on to the consumer). This also makes it easier for utilities to comply with any future ClO{dollar}sb3sp-{dollar} regulation that may be established by the USEPA.; The decomposition of OCl{dollar}sp-{dollar} in the pH 9 to 14 region has been applied to a simulation technique based on numerical integration. This simulation has allowed the straight forward investigation into some of the mechanistic detail of OCl{dollar}sp-{dollar} decomposition.
机译:氯是美国饮用水消毒中最常用的氧化剂。氯的常见来源包括氯气,次氯酸钠水溶液和固态次氯酸钙。次氯酸根离子(OCl {dollar} sp- {dollar})会分解形成氯酸根离子(ClO {dollar} sb3sp- {dollar})。 1991年之前,公用事业公司对在低氯饮用水中形成ClO {sb3sp- {dollar}}的关注很少。自来水公司的工作人员普遍认为,观察到OCl {dol} sp- {dollar}的浓度降低是由于OCl {dollar} sp- {dollar}分解为氧气。次氯酸饮用水中可能含有高达0.3 mg / L的ClO {dollar} sb3sp- {dollar}。这项工作的主要目的是确定各种实验变量如何影响浓OCl {dollar} sp- {dollar}的分解动力学和机理以及ClO {dollar} sb3sp- {dollar}和O {dollar} sb2的形成{美元}。已测量了OCl {dollar} sp- {dollar},ClO {dollar} sb3sp- {dollar},ClO {dollar} sb2sp- {dollar}和OH {dollar} sp- {dollar}的浓度作为时间用于各种实验条件。为了测量这些物种,开发了各种分析方法。通过改变以下实验参数,进行了一系列分解实验:OH {dollar} sp- {dollar}浓度,OCl {dollar} sp- {dollar}浓度,温度,Cl {dollar} sp- {dollar}浓度,常见基质离子的存在。这项工作的第二个目标是模拟(并由此预测)OCI {dollar} sp- {dollar}的分解,同时考虑到所研究的每个实验变量的影响。考虑到此任务,已完善了预测化学模型。当使用浓缩的OCl {dol} sp- {dollar}溶液作为游离来源时,实现此目标已导致将OCl {dollar} sp- {dollar}分解和ClO {dollar} sb3sp- {dollar}的形成降至最低的方案可用氯进行饮用水消毒。从实践的角度来看,这使饮用水公用事业公司能够在OCl {dollar} sp- {dollar}储存期间最大程度地降低氧化强度的损失(最终将成本转嫁给了消费者)。这也使公用事业公司更容易遵守美国环保局可能制定的任何未来的ClO {sb3sp- {dollar}法规。在pH值9至14范围内OCl {dollar} sp- {dollar}的分解已应用于基于数值积分的模拟技术。该模拟允许直接研究OCl {dollar} sp- {dollar}分解的一些机理细节。

著录项

  • 作者

    Adam, Luke Christopher.;

  • 作者单位

    Miami University.;

  • 授予单位 Miami University.;
  • 学科 Chemistry Analytical.; Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;无机化学;
  • 关键词

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