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Addition of an organic amendment and/or residue mud to bauxite residue sand in order to improve its properties as a growth medium

机译:在铝土矿渣砂中添加有机改性剂和/或渣浆,以改善其作为生长介质的性能

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摘要

The effects of addition of carbonated residue mud (RMC) or seawater neutralized residue mud (RMS), at two rates, in the presence or absence of added green waste compost, on the chemical, physical and microbial properties of gypsum-treated bauxite residue sand were studied in a laboratory incubation study. The growth of two species commonly used in revegetation of residue sand (Lolium rigidum and Acacia saligna) in the treatments was then studied in a 18-week greenhouse study. Addition of green waste-based compost increased ammonium acetate-extractable (exchangeable) Mg, K and Na. Addition of residue mud at 5 and 10% w/w reduced exchangeable Ca but increased that of Mg and Na (and K for RMS). Concentrations of K, Na, Mg and level of EC in saturation paste extracts were increased by residue mud additions. Concentrations of cations in water extracts were considerably higher than those in saturation paste extracts but trends with treatment were broadly similar. Addition of both compost and residue mud caused a significant decrease in macroporosity with a concomitant increase in mesoporosity and microporosity, available water holding capacity and the quantity of water held at field capacity. Increasing rates of added residue mud reduced the percentage of sample present as discrete sand particles and increased that in aggregated form (particularly in the 1-2 and >10 mm diameter ranges). Organic C content, C/N ratio, soluble organic C, microbial biomass C and basal respiration were increased by compost additions. Where compost was added, residue mud additions caused a substantial increase in microbial biomass and basal respiration. L rigidum grew satisfactorily in all treatments although yields tended to be reduced by additions of mud (especially RMC) particularly in the absence of added compost. Growth of A. saligna was poor in sand alone and mud-amended sand and was greatly promoted by additions of compost. However, in the presence of compost, addition of carbonated mud had a marked depressive effect on both top and root growth. The significant positive effect of compost was attributed to substantial inputs of K and marked reductions in the Na/K ratio in soil solution while the depressive effect of RMC was attributed to its greater alkalinity and consequently higher concentrations of HCO_3~- in solution.
机译:在存在或不存在添加的绿色废物堆肥的情况下,以两种速率添加碳酸残渣泥(RMC)或海水中和残渣泥(RMS)对石膏处理的铝土矿残渣砂的化学,物理和微生物特性的影响在实验室孵化研究中进行了研究。然后,在一项为期18周的温室研究中,研究了处理中常用于残留沙的植被恢复的两种物种(黑麦草和阿拉伯相思树)的生长。添加基于绿色废物的堆肥增加了乙酸铵可萃取(可交换)的Mg,K和Na。以5%和10%w / w的量添加残渣泥可减少可交换的Ca,但增加了Mg和Na(对于RMS则为K)。加入残留泥浆可以增加饱和糊状提取物中钾,钠,镁和EC的含量。水提取物中的阳离子浓度明显高于饱和糊状提取物中的阳离子浓度,但处理趋势大致相似。堆肥和残渣泥的添加均导致大孔隙度的显着降低,同时中孔隙度和微孔隙度,可用持水量和田间持水量也随之增加。增加的残留泥浆比率降低了以离散砂粒形式存在的样品的百分比,并以聚集形式(特别是直径在1-2和> 10 mm范围内)增加了百分比。堆肥的添加增加了有机碳含量,碳氮比,可溶性有机碳,微生物量碳和基础呼吸。在添加堆肥的地方,添加残留泥浆导致微生物生物量和基础呼吸的大量增加。尽管通过添加泥浆(特别是RMC)会降低产量,特别是在没有添加堆肥的情况下,僵硬菌在所有处理中均能令人满意地生长。仅在沙子和泥沙中,曲的生长就很差,并且通过添加堆肥大大促进了它的生长。但是,在堆肥的存在下,添加碳酸泥对顶部和根部生长均具有显着的抑制作用。堆肥的显着积极作用归因于钾的大量输入和土壤溶液中Na / K比的显着降低,而RMC的抑制作用归因于其更大的碱度,因此溶液中HCO_3〜-的浓度更高。

著录项

  • 来源
    《Journal of Environmental Management》 |2012年第1期|p.29-38|共10页
  • 作者单位

    School of Land, Crop and Food Sciences/CRC CARE, The University of Queensland, St Lucia, Queensland 4072, Australia;

    School of Land, Crop and Food Sciences/CRC CARE, The University of Queensland, St Lucia, Queensland 4072, Australia;

    Mining Environmental Croup, Alcoa of Australia Ltd., PO Box 172, Pinjarra, WA 6208, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bauxite processing sand; compost; red mud; remediation;

    机译:铝土矿砂堆肥;红泥整治;

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