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首页> 外文期刊>Reactive & Functional Polymers >A macromolecular oxidant, the N,N-dichlorosulfonamide for removal of residual nitrites from aqueous media
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A macromolecular oxidant, the N,N-dichlorosulfonamide for removal of residual nitrites from aqueous media

机译:一种大分子氧化剂,N,N-二氯磺酰胺,用于去除水性介质中的残留亚硝酸盐

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摘要

Nitrites are highly harmful compounds. They are extremely undesirable in surface and municipal water. The permissible content in natural water is very low and should not exceed 0.01 mg of NO_2~-/dm~3. In this instance a redox copolymer, a macromolecular analogue of Dichloramine T (i.e. a macroporous S/DVB copolymer containing -SO_2NCl_2 groups) was used for the removal of nitrite ions from aqueous solutions by its oxidation to achieve the less toxic nitrates. The resin was prepared starting from Amberlyst 15 by a three-step transformation of the sulfonic - via chlorosulfonyl and sulfonamide - to the N,N-dichlorosulfonamide groups. The resulting copolymer contained 8.2 meq of active chlorine/g and showed strong oxidizing properties. It was employed in batch and flow processes for treatment of NaNO_2 solutions containing 115 and 230 or 460 mg of NO_2~-/dm~3. The effects of various parameters on the reaction course have been studied (mole ratio of reagents, pH of the reaction media, flow rate in the column processes). The solid phase oxidation carried out in a dynamic regime provided the drive to bring the reaction to completion. Thus, nitrite free effluents (< 3.0 μg/dm~3) were obtained in the column processes. The reaction of nitrite oxidation by means of this heterogeneous oxidant was fast, and therefore the permissible flow rate was highly satisfactory - close to 20-25 bed volumes/h. Under the examined reaction conditions, 1 mol of NO_2~- ions was oxidized by 1 mol of active chlorine, thus the oxidation capacity of the resin was nearly 200 mg NO_2~-/g of the copolymer. The N,N-dichlorosulfonamide copolymer is very useful for the purification of neutral solutions from nitrites. The copoly-mers redox potentials determined here and the complex redox titration measurements which have been carried out, prove why the macromolecular oxidant shows varied reactivity, depending on the solution's pH.
机译:亚硝酸盐是高度有害的化合物。它们在地表水和市政用水中是极不希望的。天然水中的允许含量非常低,并且不得超过0.01 mg NO_2〜-/ dm〜3。在这种情况下,氧化还原共聚物,即二氯胺T的大分子类似物(即含有-SO_2NCl_2基团的大孔S / DVB共聚物)被用于通过氧化从水溶液中除去亚硝酸根离子,从而获得毒性较小的硝酸盐。从Amberlyst 15开始,通过三步将磺酸(通过氯磺酰基和磺酰胺基)转变为N,N-二氯磺酰胺基团来制备树脂。所得共聚物含有8.2meq的活性氯/ g,并显示出强的氧化性能。它被用于分批处理和流动处理中,以处理含有115和230或460 mg NO_2〜-/ dm〜3的NaNO_2溶液。已经研究了各种参数对反应过程的影响(试剂的摩尔比,反应介质的pH值,柱工艺中的流速)。在动态状态下进行的固相氧化提供了使反应完成的动力。因此,在柱法中获得了不含亚硝酸盐的流出物(<3.0μg/ dm〜3)。通过这种非均相氧化剂进行的亚硝酸盐氧化反应很快,因此允许的流速非常令人满意-接近20-25床体积/小时。在检查的反应条件下,1摩尔的NO_2〜-被1摩尔的活性氯氧化,因此该树脂的氧化能力接近200 mg NO_2〜-/ g共聚物。 N,N-二氯磺酰胺共聚物对于从亚硝酸盐纯化中性溶液非常有用。此处测定的共聚体氧化还原电势和已进行的复杂氧化还原滴定测量证明了高分子氧化剂为何根据溶液的pH值显示出不同的反应性。

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