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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Factors influencing photobiological treatment process to remove reactive silica from brackish groundwater reverse osmosis concentrate
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Factors influencing photobiological treatment process to remove reactive silica from brackish groundwater reverse osmosis concentrate

机译:影响光生物处理过程的因素从咸水地下水反渗透浓缩物中除去反应性二氧化硅

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摘要

Recently it was demonstrated that silica assimilating brackish water diatoms can remove the reactive silica and inorganic scalants from the reverse osmosis (RO) concentrate. Photobiologically treated RO concentrate can be further treated using a secondary RO for improved permeate recovery and minimal brine generation. Here, the factors influencing reactive silica uptake from a brackish groundwater RO concentrate containing 93 mg/L of reactive silica and 338 mg/L of calcium, by a brackish water diatom Pseudostaurosira trainorii PEWL001 are discussed. Several semi-batch experiments revealed that P. trainorii PEWL001 could remove 85% of reactive silica and 50% of calcium within 28 h. Externally supplemented orthophosphate and nitrate-N were found to be the preferred sources of nutrients, whereas ammonia-N inhibited the growth of the diatom. Vigorous mixing negatively affected the reactive silica uptake by the diatom, possibly by causing mechanical damage to the cells. Carbon dioxide addition reduced the pH of brackish groundwater RO concentrate from 8.21 to 6.8, did not enhance the reactive silica uptake but drastically decreased the efficiency of calcium removal. Reactive silica uptake rate was slower under the direct sunlight than under the LED light. The results of this study have important implications in advancing the photobiological treatment process.
机译:最近,有人证明了二氧化硅同化脆泡水硅藻可以从反渗透(RO)浓缩物中除去反应性二氧化硅和无机粘合剂。光生物处理的RO浓缩物可以使用仲RO进一步处理,用于改善渗透物回收和最小的盐水产生。这里,讨论了影响含有93mg / L反应性二氧化硅和338mg / L钙的盐渍地下水Ro浓缩物的反应性二氧化硅的因素通过咸水硅藻土探测器训练毒素训练器训练毒剂PEWL001。几个半批量实验表明,P. Trainorii PEWL001可以去除> 85%的反应性二氧化硅和50%的钙在28小时内。外部补充的正磷酸盐和硝酸盐-N被发现是优选的营养来源,而氨-N抑制了硅藻的生长。剧烈混合对硅藻的反应性二氧化硅吸收产生负面影响,可能是通过对细胞的机械损伤导致机械损伤。二氧化碳添加降低了8.21至6.8浓缩物的咸水地下水Ro浓缩物的pH,并未增强反应性二氧化硅摄取,但大大降低了钙去除效率。在阳光直射下方的反应性二氧化硅摄取率比LED光线较慢。该研究的结果对推进光生物处理过程具有重要意义。

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