植物化学法去除工业印染废水中的污染物

IF 2.8 Q2 ENGINEERING, CHEMICAL ChemEngineering Pub Date : 2023-09-28 DOI:10.3390/chemengineering7050090
Néstor A. Urbina-Suarez, Cristian J. Salcedo-Pabón, Jefferson E. Contreras-Ropero, German L. López-Barrera, Janet B. García-Martínez, Andrés F. Barajas-Solano, Fiderman Machuca-Martínez
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引用次数: 0

摘要

本研究考察了光周期和废水浓度对微藻和蓝藻生长的影响,以去除印染废水中的环境重要参数(COD、BOD、Cr、Fe、颜色、氯化物、氮化合物和磷酸盐)。采用具有表面响应的双因素中心复合设计,研究对象为两种藻类(小球藻和Scenedesmus sp.)和两种蓝藻(Hapalosiphon和振荡藻sp.)。结果表明,延长光照周期(13 h)和提高废水浓度(70-80% v/v)提高了所有菌株的生物量产量。而单色虹吸管和小球藻(1.6 g/L和0.45 g/L)对高毒性废水表现出更好的耐受性,单色虹吸管的生物量浓度更高,COD和BOD去除率分别达到75%和80%。对所得生物量的进一步分析揭示了其潜在的应用前景。在蓝藻中,Hapalosiphon sp.合成的总蛋白和脂质浓度最高(分别为38%和28% w/w),而振荡菌sp.的蛋白质含量最高(42% w/w)。相比之下,藻类表现出大量储存总碳水化合物的强烈倾向(情景藻和小球藻分别为65%和57% w/w)。这些结果表明,在工业印染废水中培养光合微生物作为目标代谢物生产的可持续营养来源是可行的。
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A Phytochemical Approach to the Removal of Contaminants from Industrial Dyeing Wastewater
This study investigates the influence of photoperiod and wastewater concentration on the growth of microalgae and cyanobacteria for the removal of environmentally significant parameters (COD, BOD, Cr, Fe, color, chlorides, nitrogen compounds, and phosphates) from dyeing wastewater. A two-factor central composite design with surface response was employed, involving two algae species (Chlorella and Scenedesmus sp.) and two cyanobacteria species (Hapalosiphon and Oscillatoria sp.). The findings indicated that extended photoperiods (>13 h) and higher wastewater concentrations (70–80% v/v) enhanced biomass production across all strains. However, Hapalosiphon and Chlorella sp. (1.6 and 0.45 g/L) exhibited better tolerance to the wastewater’s high toxicity, resulting in higher biomass concentrations and improved COD and BOD removal by Hapalosiphon sp. (75% and 80%, respectively). Further analysis of the obtained biomass revealed their potential applications. Among the cyanobacteria, Hapalosiphon sp. synthesized the highest concentrations of total proteins and lipids (38% and 28% w/w, respectively), while Oscillatoria sp. displayed a high protein content (42% w/w). In contrast, the algae demonstrated a strong propensity for storing substantial quantities of total carbohydrates (65% and 57% w/w for Scenedesmus and Chlorella sp., respectively). These results signify the feasibility of cultivating photosynthetic microorganisms in industrial dyeing wastewater as a sustainable source of nutrients for targeted metabolite production.
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来源期刊
ChemEngineering
ChemEngineering Engineering-Engineering (all)
CiteScore
4.00
自引率
4.00%
发文量
88
审稿时长
11 weeks
期刊最新文献
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