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Leachate migration from spent mushroom substrate through intact and repacked subsurface soil columns

机译:渗滤液从废蘑菇基质迁移到完整的和重新包装的地下土壤柱

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Field weathering of spent mushroom substrate (SMS) produces soluble compost leachate that percolates into underlying soils and may adversely impact groundwater. Laboratory experiments were conducted to investigate movement and retention of SMS leachate solutes in subsurface soil columns. Spent mushroom substrate leachate with high concentrations of dissolved organic matter (DOM) and inorganic salts was passively loaded to intact and repacked columns of Btl soil (fine-loamy, mixed, semiactive, mesic Typic Hapludults) and effluents were monitored for changes in chemical composition. Transport of SMS leachate in undisturbed soil cores was mainly via preferential flow, whereas matrix flow was predominant in repacked soil columns. Leachate DOM and phosphate were sorbed by soil minerals while Cl~-, SO_4~(2-), Na~+ and NH_4~+ were eluted. Leachate K~+ displaced exchangeable native cations and was retained. Biodegradation of leachate DOM resulted in reduction and elution of soil Mn and Fe, especially in repacked columns. Persistent anoxia also inhibited nitrification. Precipitation of gypsum and CaCO_3 blocked preferential flow channels, and movement of SMS leachate was subsequently reduced. The results demonstrate that SMS leachate migrates via rapid preferential flow initially, followed by matrix flow at a lower rate. Leachate solutes may transport to depth in soil profiles through preferential channels. To protect water resources, weathering of deep SMS piles should be conducted on compact surfaces or in fields with a condensed soil layer (no structural cracks) above the groundwater table, and measures controlling leachate runoff be imposed.
机译:废蘑菇基质(SMS)的田间风化产生可溶的堆肥渗滤液,该渗滤液渗入下面的土壤并可能对地下水产生不利影响。进行了实验室实验,以研究地下土壤柱中SMS渗滤液溶质的迁移和保留。用过的蘑菇底物浸出液中含有高浓度的溶解有机物(DOM)和无机盐,将其被动加载到Btl土壤的完整和重新填充柱(细壤土,混合,半活性,典型的典型Typl Hapludults)中,并监测废水中化学成分的变化。 SMS渗滤液在原状土壤芯中的运输主要是通过优先流,而基质流在重新装填的土壤柱中占主导地位。渗滤液中的DOM和磷酸盐被土壤矿物质吸附,而Cl〜-,SO_4〜(2-),Na〜+和NH_4〜+被洗脱。渗滤液K +置换了可交换的天然阳离子并被保留。渗滤液DOM的生物降解导致土壤Mn和Fe的减少和洗脱,特别是在重新装填的色谱柱中。持续性缺氧也会抑制硝化作用。石膏和CaCO_3的沉淀阻塞了优先流动通道,随后减少了SMS渗滤液的运动。结果表明,SMS渗滤液最初通过快速优先流迁移,随后以较低速率迁移。渗滤液溶质可通过优先渠道转运至土壤剖面的深处。为了保护水资源,应在密实的地面上或在地下水位以上具有凝结土层(无结构性裂缝)的田间进行深SMS桩的风化,并采取控制渗滤液径流的措施。

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