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首页> 外文期刊>Journal of food, agriculture & environment >Long-term effects of olive mill wastewater sludge on soil biological properties and yield efficiency: a case study of a fig grove in southern Turkey.
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Long-term effects of olive mill wastewater sludge on soil biological properties and yield efficiency: a case study of a fig grove in southern Turkey.

机译:橄榄磨坊废水污泥对土壤生物学特性和产量效率的长期影响:土耳其南部无花果树丛的案例研究。

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Many studies have been conducted on the interactions of olive mill wastewater (OMW) with soils at the laboratory scale, but less attention has been paid to the effect of OMW on soils at a field scale, particularly over a long period. Additionally, little is known about the effect of OMW on soil microorganisms in terms of the soil enzymatic activities. The storage and evaporation in open tanks is a strategy followed by many producers to reduce the volume of OMW and to valorize OMW through the settlement of suspended sludge. Olive mill wastewater sludge (OMWS) was applied to a fig orchard with 15-year-old trees (cv. "Sarilop") during the winter for 6 consecutive years at a maximum annual rate of 100 kg tree-1. In particular, nine treatments were considered: 100, 75, 50, 25 and 0 kg of OMWS tree-1 both every year (EY) and once every two years (ETY). The long-term trial aimed to assess the cumulative (EY) and residual (ETY) effects of the incorporation of increasing amounts of OMWS on soil biological properties, which were evaluated by measuring the soil microbial biomass carbon (MBC), basal soil respiration (BSR), N-mineralization (Nmin), several soil enzyme activities (hydrolases and oxidoreductases) involved in the cycles of the main biological nutrients (C, N, and P), and plant yield as yield efficiency per unit of trunk cross-sectional area (TCSA). The results of this study demonstrated that OMWS significantly stimulated soil microbial activity and fig yield at the levels applied and was not harmful to soil microflora in general, except for the highest dose with yearly treatment (100 EY). OMWS applications provided 41-1046% of the increases in the level of microbial activity with respect to the control at the end of the experiment. For this reason, no toxic effect of OMWS was observed. The application of OMWS to the soil caused the highest increase in DHG activity, while the lowest increase was observed for MBC content. Microbial activities were most stimulated by 75 kg OMWS tree-1 with yearly application, while they were least stimulated by 25 kg OMWS tree-1 with application every two years. This agro-industrial waste could represent a strategic resource in the integrated management of agricultural systems, as its use enhances soil biological activities and improves soil fertility, and consequently, the use of chemical fertilizers can be reduced. Additionally, the results suggest that 75 kg tree-1 applied every year and 100 kg tree-1 applied every two years applications are the best amendment rates for degraded and poor Mediterranean soils and fig orchards in this region.
机译:在实验室规模上已经进行了许多研究,涉及橄榄磨坊废水(OMW)与土壤之间的相互作用,但在田间规模上,尤其是在长期内,很少有人关注OMW对土壤的影响。另外,就土壤酶活性而言,关于OMW对土壤微生物的影响知之甚少。在开放式储罐中的存储和蒸发是许多生产商遵循的一项策略,即通过减少悬浮污泥的沉降来减少OMW的数量并实现OMW的增值。冬季连续6年将橄榄厂废水污泥(OMWS)连续6年应用于具有15年历史的树木(cari。“ Sarilop”)的无花果园,最大年产量为100 kg tree -1 。特别是,考虑了九种处理方法:每年(EY)和每两年一次(ETY)分别处理100、75、50、25和0 kg OMWS tree -1 。这项长期试验旨在评估掺入越来越多的OMWS对土壤生物学特性的累积(EY)和残余(ETY)效应,这些效应通过测量土壤微生物生物量碳(MBC),基础土壤呼吸作用进行评估( BSR),氮矿化作用(N min ),参与主要生物养分(C,N和P)循环的几种土壤酶活性(水解酶和氧化还原酶)以及植物产量(作为产量)单位行李箱横截面积的效率(TCSA)。这项研究的结果表明,OMWS在施用的水平上能显着刺激土壤微生物活性和无花果产量,并且除年度处理的最高剂量(100 EY)外,总体上对土壤微生物区系无害。在实验结束时,相对于对照,OMWS应用提供了微生物活性水平的41-1046%的增长。因此,未观察到OMWS的毒性作用。在土壤中施用OMWS导致DHG活性增加最高,而MBC含量增加最低。每年施用75 kg OMWS tree -1 对微生物活性的刺激最大,而每两年施用25 kg OMWS tree -1 对微生物活性的刺激最小。这种农业工业废料可以作为农业系统综合管理中的战略资源,因为其使用可以增强土壤生物活动并改善土壤肥力,因此可以减少化学肥料的使用。此外,结果表明,每年施用75 kg tree -1 和每两年施用100 kg tree -1 是退化和贫瘠的地中海土壤的最佳改良率。还有这个地区的无花果园

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