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首页> 外文期刊>European Journal of Soil Biology >Changes in the physico-chemical and biological quality attributes of soil following amendment with untreated coffee processing wastewater.
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Changes in the physico-chemical and biological quality attributes of soil following amendment with untreated coffee processing wastewater.

机译:用未经处理的咖啡处理废水修正后的土壤理化和生物质量属性的变化。

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Discharge of untreated coffee processing wastewater (CPW) into natural water bodies without adequate treatment poses serious threat to environment. In India, due to high cost incurred in construction of 'Effluent Treatment Plants', coffee growers are employing rudimentary land based wastewater storage and treatment facilities at on-farm levels, which affects the soil quality. In the present study, we investigated the effects of untreated CPW at different loading rates (250 m 3, 500 m 3, 750 m 3, and 1000 m 3 per hectare) on soil physico-chemical and biological properties. Higher loading rates of CPW (75-100 L/m 2) were found to significantly increase ( p<0.01) the electrical conductivity (EC), bulk density (BD), water holding capacity (WHC), organic carbon (OC), available nitrogen, available potassium, while the soil pH and available phosphorus were significantly reduced ( p<0.01) by higher loading rates. Application of higher volumes of CPW (75-100 L/m 2) significantly reduced the soil respiration, dehydrogenase (DHA), urease activity and Fluorescin diacetate activity (FDA) at both the soil depths (0-15 and 15-30 cm). Significant decrease in populations of pelops, eulohmannia and springtail was observed with the application of higher volumes of CPW (75-100 L/m 2). CPW at a rate of 25-50 L/m 2 found to significantly increase the population of culturable bacteria ( p<0.01), fungi ( p<0.05) yeast ( p<0.01) and actinomycetes ( p<0.01), while their populations were drastically reduced above 75 L/m 2. In functional microflora, application of CPW at a rate of 25-50 L/m 2 found to significantly increase the population of Pseudomonas fluorescence ( p<0.01), phosphorus solubilisers ( p<0.05), Azotobacter sp. ( p<0.01) and Beijerinkia sp. ( p<0.05) at 0-15 cm.
机译:未经处理的未经处理的咖啡处理废水(CPW)排入天然水体会对环境造成严重威胁。在印度,由于建造“污水处理厂”的成本高昂,咖啡种植者正在农场上使用基本的陆基废水存储和处理设施,这会影响土壤质量。在本研究中,我们研究了未经处理的CPW在不同的加载速率(每公顷250 m 3、500 m 3、750 m 3和1000 m 3)下对土壤理化和生物学特性的影响。发现较高的CPW加载速率(75-100 L / m 2)可以显着提高(p <0.01)电导率(EC),堆积密度(BD),持水量(WHC),有机碳(OC),有效氮,有效钾,较高pH值可显着降低土壤pH和有效磷(p <0.01)。在两个土壤深度(0-15和15-30 cm)处,使用较大体积的CPW(75-100 L / m 2)均显着降低了土壤呼吸,脱氢酶(DHA),脲酶活性和二乙酸氟乙酸酯活性(FDA)。 。随着CPW用量的增加(75-100 L / m 2),观察到了肉眼,欧洲人和跳蚤种群的显着减少。发现CPW以25-50 L / m 2的速率显着增加可培养细菌(p <0.01),真菌(p <0.05)酵母(p <0.01)和放线菌(p <0.01)的种群,显着降低到75 L / m 2以上。在功能性菌群中,以25-50 L / m 2的比例施用CPW可显着增加假单胞菌荧光(p <0.01),磷增溶剂(p <0.05) ,Azotobacter sp.。 (p <0.01)和Beijerinkia sp。 (p <0.05)在0-15厘米处。

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