Environmental Assessment and Technology for Hazardous Waste Management Research Center, Department of Civil and Environmental Engineering, Faculty of Engineering, Prince of Songkla University, Hat Yai, Songkhla, Thailand.
Center of Excellence on Hazardous Substance Management (HSM), Bangkok, Thailand.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2024;59(7):369-378. doi: 10.1080/10934529.2024.2399453. Epub 2024 Sep 13.
The performance capability of granular activated carbon (GAC) adsorption in terms of disinfection by-product (DBPs) removal was investigated with synthetic water containing 1) trihalomethanes (THMs), 2) haloacetronitriles (HANs), and 3) Mix-THMs & HANs. The initial 20 min of adsorption resulted in the maximum adsorption rate, with the total THMs, total HANs, and total Mix-THMs & HANs being 4.972, 2.071, and 6.460 µg/gGAC-min, respectively. GAC dosage affects the adsorption selectivity of THMs and HANs. Under a low GAC dosage, the selectivity of GAC adsorbs more bromo-THMs than chloro-THMs. The adsorption selectivity of THMs on GAC following bromoform > dibromochloromethane > bromodichloromethane > chloroform was investigated. As the GAC concentration increased, the selectivity of THM adsorption by GAC became comparable. Chloro-HAN, in contrast to THMs, has a higher adsorption selectivity than bromo-HAN. Trichloroacetonitrile was removed by GAC more rapidly than the other HAN species when the GAC dose was increased. The toxin of bromoform was primarily eliminated through GAC adsorption, caused by a greater removal rate than that of the other THMs. As an implemented measure, GAC is introduced to reduce THMs and HANs and the toxic contents associated with THMs and HANs.
采用含有 1)三卤甲烷(THMs)、2)卤乙腈(HANs)和 3)混合 THMs 和 HANs 的合成水研究了颗粒活性炭(GAC)吸附在消毒副产物(DBPs)去除方面的性能。吸附的最初 20 分钟达到了最大吸附速率,总 THMs、总 HANs 和总混合 THMs 和 HANs 分别为 4.972、2.071 和 6.460μg/gGAC-min。GAC 剂量会影响 THMs 和 HANs 的吸附选择性。在低 GAC 剂量下,GAC 吸附更多的溴代 THMs 而不是氯代 THMs。研究了 GAC 对三卤甲烷的吸附选择性,结果表明溴仿>二溴氯甲烷>二溴二氯甲烷>氯仿。随着 GAC 浓度的增加,GAC 对 THM 的吸附选择性变得相当。与 THMs 相比,氯代 HAN 的吸附选择性更高。当 GAC 剂量增加时,三氯乙腈比其他 HAN 物质更快地被 GAC 去除。GAC 吸附是消除溴仿毒素的主要途径,因为其去除率高于其他 THMs。作为一种实施措施,引入 GAC 以减少 THMs 和 HANs 以及与 THMs 和 HANs 相关的毒性含量。