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Characterization of dissolved organic matter in source water treated by catalytic wet air oxidation

机译:湿式催化氧化处理原水中溶解有机物的表征

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Based on water lifting and aeration,catalytic wet air oxidation (CWAO) was realized and utilized to treat dissolved organic matter (DOM) in source water from a large reservoir in the northwest China.The experiment was carried out under room temperature and atmospheric pressure,catalyst dosage,reaction time,pH and dissolved oxygen (DO)were investigated in static state to indicate the adaptability of CWAO,it was found even if catalyst dosage was 1g·L-1,certain effect can be achieved with prolonging treating time,and the CWAO process had a good adaptability under the value of pH 5~9.Considering actual reservoir bottom conditions,low DO and low temperature test was designed.If only DO is not less than 1 mg/L,we can find the natural organic matter (NOM) removal effect resulted from CWAO.And then dynamic simulation test result showed that when hydraulic retention time (HRT) was 30 days,UV254 and total organic carbon (TOC) was decreased by 70.31% and 61.76%.The characterization of DOM in water samples was analyzed to demonstrate the difference of water quality before and after treatment,which contributes to the mechanism of CWAO.It was found that molecular weight distribution changed,macromolecular proportion declined.Powder activated carbon (PAC) adsorption test indicated more NOM could be adsorbed by PAC,this maybe result from small molecule ratio increased.Three dimensional excitation emission matrix fluorescence spectroscopy (3DEEM) was employed to identify the relative source of DOM.It can be seen that NOM in source water exhibited greater humic nature,however the intensity weakened obviously and hypochromic shift occurred after treatment.Polarity rapid assessment method (PRAM) revealed clear differences in the hydrophobic/hydrophilic nature between water samples and variation of polarity of DOM.
机译:在提水和曝气的基础上,实现了催化湿式氧化(CWAO)并用于处理西北某大型水库水源水中的溶解性有机物(DOM)。该实验在室温和大气压下进行,静态研究了催化剂用量,反应时间,pH和溶解氧(DO),表明了CWAO的适应性,发现即使催化剂用量为1g·L-1,延长处理时间也能达到一定效果。 CWAO工艺在pH值为5〜9的条件下具有良好的适应性。考虑到储层实际底部条件,设计了低溶解氧和低温试验方法。如果溶解氧的含量不低于1 mg / L,则可以发现天然有机物。动态模拟测试结果表明,当水力停留时间(HRT)为30天时,UV254和总有机碳(TOC)分别降低了70.31%和61.76%。水通过分析r样品来证明处理前后水质的差异,这有助于CWAO的机理。发现分子量分布发生了变化,大分子比例下降了。粉末活性炭(PAC)吸附试验表明,NOM可能更多PAC吸附了这可能是由于小分子比例增加所致。采用三维激发发射矩阵荧光光谱法(3DEEM)鉴定了DOM的相对来源。可以看出,源水中的NOM表现出更大的腐殖质,但强度极性快速评估法(PRAM)显示出水样之间的疏水/亲水性质和DOM极性的变化存在明显差异。

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