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Wastewaters from citrus processing industry as natural biostimulants for soil microbial community

机译:来自柑橘加工行业的废水作为土壤微生物群落的天然生物染色剂

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摘要

Citrus fruit processing wastewaters (CWWs), being rich in organic matter, may be a valuable resource for agricultural irrigation and, possibly, for the improvement of soil organic carbon (TOC). This issue is becoming crucial for soils of arid and semiarid environments increasingly experiencing water scarcity and continuous decline of TOC towards levels insufficient to sustain crop production. However, before using CWWs in agriculture their effects on the soil living component have to be clarified. Therefore, in this study we assessed the impact of CWWs on soil chemical and biochemical properties. Under laboratory conditions, lemon, orange and tangerine wastewaters were separately added to a sandy clay soil reaching 1/3, 2/3 and 3/3 of its 50% water holding capacity. Then soils were incubated for 56 days at 22-24 °C in the dark and analyzed for total and extractable organic C, microbial biomass C and N, and the main microbial groups at days 7, 28 and 56, while microbial respiration kinetics was fitted to a first-order decay model by nine distinct daily rates measurements throughout incubation. During the first 3 days following the addition of CWWs, soil pH decreased by 2-3 units; however, afterwards the soil recovered its initial pH values. Total and extractable C pools, as well as microbial biomass C and N, were stimulated by CWWS with such a stimulation depending on CWWs type and added dose. Also microbial respiration kinetics was greatly affected by CWWs, although the effects were generally ephemeral at the lowest two doses, whereas at the highest dose still persisted up to day 56, especially in orange and lemon wastewaters. The concomitant general increase of both microbial and metabolic quotients after the addition of CWWs suggested that also under stress conditions, soil microorganisms were able to immobilize C. Both bacteria and fungi were stimulated by CWWs but the latter, at the beginning of incubation, were more favored probably due to a transient soil acidification by CWWs. In conclusion, CWWs when added to a sandy-clay soil increased total and labile C pools, stimulated soil microbial activity and biomass, i.e. improved the overall biological soil fertility, thus suggesting a possible role of CWWs in sustainable agriculture. However, soil electrical conductivity has to be monitored when CWWs are applied recurrently.
机译:柑橘类水果加工废水器(CWWS)富含有机物质,可能是农业灌溉的有价值资源,并且可能是改善土壤有机碳(TOC)。这个问题对于干旱和半干旱环境的土壤至关重要,越来越多地经历水资源稀缺和致富国对水平的持续下滑,不足以维持作物生产。但是,在农业中使用CWWS,必须澄清它们对土壤生活成分的影响。因此,在这项研究中,我们评估了CWWS对土壤化学和生化特性的影响。在实验室条件下,柠檬,橙色和橘子废水分别加入到达到其50%水持续容量的1/3,2 / 3和3/3的沙质粘土土壤中。然后在22-24℃下在黑暗中孵育土壤56天,并在第7,28和56天的总微生物基团和主要微生物组中进行孵育56天,并在第7,28和56天,同时安装了微生物呼吸动力学在孵育过程中九个不同的每日速率测量到一阶衰减模型。在添加CWWS后的前3天,土壤pH值下降2-3个单位;然而,之后土壤回收了其初始pH值。通过CWWS通过这种刺激刺激总和可提取的C池以及微生物生物量C和N,这取决于CWWS类型并添加剂量。 CWWS也极大地影响了微生物呼吸动力学,尽管效果通常在最低两剂量的短暂性,而最高剂量仍然持续到第56天,尤其是橙色和柠檬废水。在添加CWWS后,伴随着微生物和代谢版本的一般性增加,也提出了在压力条件下,土壤微生物能够固定C. CWWS刺激细菌和真菌,但后者在孵化开始时,还有更多可能是由于CWWS的瞬态土壤酸化,可能是由于CWWS的瞬态酸化。总之,CWWS加入砂岩土壤时,总和不稳定的C池,刺激土壤微生物活性和生物质,即改善了整体生物土壤肥力,从而提出了CWWS在可持续农业中的可能作用。然而,当CWWS常用时,必须监测土壤导电性。

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