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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Recycling of domestic wastewater treated by vertical-flow wetlands for irrigation of two consecutive Capsicum annuum generations
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Recycling of domestic wastewater treated by vertical-flow wetlands for irrigation of two consecutive Capsicum annuum generations

机译:垂直流湿地处理垂直湿地治疗两种连续胶囊的灌溉灌注

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摘要

Due to water scarcity, there is great interest in reusing various nutrient-rich wastewaters. The aim of this article is consequently to evaluate if domestic wastewater treated by various wetland systems can be successfully recycled to irrigate generations of commercial crops such as Chilli (Capsicum annuum) grown in compost within a laboratory environment to obtain a cultivar adapted to domestic wastewater. The corresponding objectives were to assess the irrigation water for long-term growth when applying recycled wastewater, the impact of various wastewaters subject to the wetland characteristics, the impact of treated wastewater volume for irrigation, and the economic return of different experimental set-ups in terms of marketable yields. The vertical-flow wetlands treated domestic wastewater well, meeting the irrigation water quality standards for most water quality parameters, except for phosphorus (4.2 +/- 0.48 mg/l), ammonia-nitrogen (4.2 +/- 2.64 mg/l), potassium (7.0 +/- 3.03 mg/l) and total coliforms (69647 +/- 64852.6 CFU/100 ml), which showed high values significantly (p < 0.05) exceeding common thresholds set for irrigation applications of 2 mg/l, 5 mg/l, 2 mg/l, and 1000 CFU/100 ml. Chilli generations were grown successfully when applying wastewater treated by wetlands and organic soil. High Chilli generation yields concerning economic return were linked with wetlands containing small aggregates with long contact and resting times and fed with a high inflow loading rate (undiluted wastewater), releasing more nutrients into their effluent producing the best fruit quality with respect to weight, length and width resulting in a greater marketable profit of about 46% compared with the others. First generation Chilli plants were grown with considerably shorter heights and produced abundant fruit numbers, which were harvested earlier than their mothers due to the reduction (approximately 55%) of irrigation water volume used for them compared to their mothers. However, excessive nutrients applied on mother plants via irrigation water resulted in better fruit quality regarding dimensions and weights compared with their corresponding first generation plants, leading to a greater marketable profit by about 25%. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于水资源稀缺,对重用各种富含营养丰富的废水有很大的兴趣。因此,本文的目的是评估各种湿地系统治疗的国内废水是否可以成功再循环,以灌溉在实验室环境中堆肥中生长的辣椒(辣椒增压)等几代商业作物,以获得适合国内废水的品种。相应的目标是在施加回收废水时评估长期增长的灌溉水,各种废水受到湿地特征的影响,灌溉处理废水体积的影响,以及不同实验组的经济回报可销售率的条款。垂直流湿地处理了国内废水,满足大多数水质参数的灌溉水质标准,除磷外(4.2 +/- 0.48 mg / L),氨 - 氮(4.2 +/- 2.64 mg / L),钾(7.0 +/- 3.03 mg / L)和总大肠杆菌(69647 +/- 64852.6 cfu / 100ml),显着显示出高值(p <0.05)超过灌溉应用的常见阈值,适用于2 mg / L,5 Mg / L,2 mg / L和1000 CFU / 100毫升。在涂抹湿地和有机土壤处理的废水时,辣椒世代成功地增长。关于经济回报的高辣椒生成产量与含有小骨料的湿地联系,具有长的接触和休息时间,并用高流入载速(未稀释废水)喂养,释放更多的营养物,以重量,长度产生最佳水果质量的流出物与其他人相比,宽度导致更大的营销利润约为46%。第一代辣椒植物的增长率相当较短,并产生丰富的果实数,而且由于与母亲相比,由于它们的灌溉水量减少(约55%)的灌溉水量,而不是母亲收获的果实数。然而,通过灌溉水在母植物上施加过量的营养素导致与其相应的第一代植物相比的尺寸和重量更好,导致更大的可销售利润约为25%。 (c)2017 Elsevier B.v.保留所有权利。

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