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首页> 外文期刊>Tropical Journal of Pharmaceutical Research >Characterization of Biotic and Abiotic Profiles of Greenhouse Evaporative Cooling System Fouling
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Characterization of Biotic and Abiotic Profiles of Greenhouse Evaporative Cooling System Fouling

机译:温室蒸发冷却系统结垢的生物特征和非生物特征的表征

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Purpose: To characterize the microorganisms influencing greenhouse evaporative cooling system fouling as a prelude to designing a sustainable remediation scheme that would assist in reducing the heavy financial loss incurred by stakeholders due to deterioration of cooling pads. Methods: Samples of biofilms on evaporative cooling system pads were collected from various locations in Saudi Arabia and fixed with 5% formaldehyde. Light microscopy, scanning electron microscopy (SEM) and QWIN software were employed for the identification of different morphometric parameters of the constituent microbes. pH and conductivity were assessed using Pasport PS-2102 and PS-2116 sensors, respectively. Results: Different genera of cyanobacteria and diatom including Phormidium, Oscillatoria, Lyngbya, Navicula, Melosira and Gomphonema were identified and characterized, in addition to various types of bacteria and white crust fungus, Phanerochaete crysosporium. Total dissolved solids (TDS) values of 2641 ppm (conductivity, 5282 μS/cm) for Al-Rasheed, 2327.5 ppm (conductivity, 4655 μS/cm) for Sara, 3352 ppm (conductivity, 6704 μS/cm) for Dammam Municipality Greenhouse (DMG) and 61.5 ppm (conductivity, 123 μS/cm; pH 6.88) for KFUPM were obtained at 25?C. Conclusion: Various organisms, including cyanobacteria and diatoms, which have been implicated in the biofilms of evaporative cooling systems at different locations in Saudi Arabia, were characterized with the aid of morphometric parameters. Identifying the constituent microorganisms would aid in designing a sustainable remediation scheme that is expected to reduce the heavy financial cost incurred by stakeholders due to frequent replacement of evaporative cooling pads during routine maintenance.
机译:目的:表征影响温室蒸发冷却系统结垢的微生物,作为设计可持续修复方案的序幕,该方案将有助于减少由于冷却垫变质而导致利益相关者蒙受的巨大财务损失。方法:从沙特阿拉伯的不同地点收集蒸发冷却系统垫上的生物膜样品,并用5%甲醛固定。使用光学显微镜,扫描电子显微镜(SEM)和QWIN软件来鉴定组成微生物的不同形态参数。分别使用Pasport PS-2102和PS-2116传感器评估pH和电导率。结果:除了各种细菌和白壳真菌,Phanerochaete crysosporium,还鉴定并鉴定了蓝藻和硅藻的不同属,包括Pormidium,Oscillatoria,Lyngbya,Navicula,Melosira和Gomphonema。 Al-Rasheed的总溶解固体(TDS)值为2641 ppm(电导率,5282μS/ cm),Sara的总溶解固体(TDS)值为2327.5 ppm(电导率,4655μS/ cm),达曼市政温室的总溶解固体值为3352 ppm(电导率,6704μS/ cm)在25°C下获得KFUPM(DMG)和61.5 ppm(电导率,123μS/ cm; pH 6.88)。结论:借助形态计量学参数对沙特阿拉伯不同地区蒸发冷却系统生物膜中涉及的各种生物(包括蓝细菌和硅藻)进行了表征。鉴定组成微生物将有助于设计一种可持续的修复方案,该方案有望减少由于日常维护期间频繁更换蒸发冷却垫而导致利益相关者承担的沉重财务成本。

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