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Environmentally benign hardness removal using ion-exchange fibers and snowmelt

机译:使用离子交换纤维和融雪剂对环境无害的硬度去除

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Many industrial unit operations and unit processes require near-complete removal of hardness to avoid scaling in heat-transfer equipment, fouling in membranes, and high consumption of detergents and sequestering chemicals in cooling and wash water. Lime softening and cation exchange are the most commonly used processes practiced to date for hardness removal. Herein, we report and discuss the results and attributes of a new hardness removal process using ion-exchange fibers (IX-fibers). Most importantly, the process uses harvested snowmelt (or rainwater) as the regenerant chemical along with sparged carbon dioxide. Consequently, the spent regenerant does not contain a high concentration of aggressive chemicals such as sodium chloride or acid like traditional ion-exchange processes nor does the process produce voluminous sludges similar to lime softening. The bulk of carbon dioxide consumed during regeneration remains sequestered in the aqueous phase as alkalinity. IX-fibers form the heart of the process. They are essentially thin cylindrical polymeric strands 10-20 mu m in diameter. The weak-acid carboxylate functional groups reside near to the surface of these cylindrical fibers. Low intraparticle diffusional resistance is the underlying reason IX-fibers are amenable to efficient regeneration with snowmelt sparged with carbon dioxide. When the carbon dioxide partial pressure is increased to 6.8 atm, over 90% calcium desorption efficiency is obtained. On the contrary, commercial weak-acid ion-exchange resins in spherical bead forms are ineffective for regeneration with carbon-dioxide-sparged snowmelt due to extremely slow ion-exchange kinetics involving counter-transport of Ca2+ and H+.
机译:许多工业单元操作和单元过程要求几乎完全去除硬度,以避免传热设备结垢,膜结垢以及在冷却水和洗涤水中大量消耗洗涤剂和螯合化学物质。石灰软化和阳离子交换是迄今为止去除硬度最常用的方法。在这里,我们报告并讨论了使用离子交换纤维(IX-纤维)的新硬度去除工艺的结果和属性。最重要的是,该过程使用收获的融雪(或雨水)作为再生化学品以及喷射的二氧化碳。因此,用过的再生剂不像传统的离子交换工艺那样包含高浓度的腐蚀性化学物质,例如氯化钠或酸,该工艺也不会产生类似于石灰软化的大量污泥。再生过程中消耗的大部分二氧化碳仍被隔离在水相中作为碱度。 IX纤维是该过程的核心。它们基本上是直径为10-20微米的细圆柱状聚合物线。弱酸羧酸盐官能团位于这些圆柱形纤维的表面附近。较低的颗粒内扩散阻力是IX纤维适合于用二氧化碳喷吹的融雪进行有效再生的根本原因。当二氧化碳分压增加到6.8atm时,钙解吸效率超过90%。相反,由于涉及Ca2 +和H +逆向转运的离子交换动力学极其缓慢,球形珠粒形式的商用弱酸离子交换树脂无法有效地利用二氧化碳喷射的融雪进行再生。

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