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首页> 外文期刊>Environmental Science and Pollution Research >Influence of organic waste and residue mud additions on chemical, physical and microbial properties of bauxite residue sand
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Influence of organic waste and residue mud additions on chemical, physical and microbial properties of bauxite residue sand

机译:有机废物和残渣泥的添加对铝土矿渣砂化学,物理和微生物特性的影响

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Background, aim and scope In an alumina refinery, bauxite ore is treated with sodium hydroxide at high temperatures and pressures and for every tonne of alumina produced, about 2 tonnes of alkaline, saline bauxite processing waste is also produced. At Alcoa, a dry stacking system of disposal is used, and it is the sand fraction of the processing waste that is rehabilitated. There is little information available regarding the most appropriate amendments to add to the processing sand to aid in revegetation. The purpose of this study was to investigate how the addition of organic wastes (biosolids and poultry manure), in the presence or absence of added residue mud, would affect the properties of the residue sand and its suitability for revegetation. Materials and methods Samples of freshly deposited residue sand were collected from Alcoa's Kwinana refinery. Samples were treated with phosphogypsum (2% v/v), incubated, and leached. A laboratory experiment was then set up in which the two organic wastes were applied at 0 or the equivalent to 60 tonnes ha~(-1) in combination with residue mud added at rates of 0%, 10% and 20% v/v. Samples were incubated for 8 weeks, after which, key chemical, physical and microbial properties of the residue sand were measured along with seed germination. Results and discussion Additions of residue mud increased exchangeable Na~+, ESP and the pH, and HCO_3~- and Na~+ concentrations in saturation paste extracts. Additions of biosolids and poultry manure increased concentrations of extractable P, NH_4~+, K, Mg, Cu, Zn, Mn and Fe. Addition of residue mud, in combination with organic wastes, caused a marked decrease in macroporosity and a concomitant increase in mesoporosity, available water holding capacity and the quantity of water held at field capacity. With increasing residue mud additions, the percentage of sample present as sand particles (<1 mm diameter) decreased, and the percentage present in aggregated form (>2 mm diameter) increased; greatest aggregation occurred where a combination of residue mud and poultry manure were added. Stability of aggregates, as measured by wet sieving, was greatest where poultry manure was applied. Although total organic C and soluble organic C were greater in biosolids than poultry manure treatments, the reverse was the case for microbial biomass C and basal respiration. In the biosolids and poultry manure treatments, increasing residue mud additions tended to increase soluble C, microbial biomass C and basal respiration. Germination index of watercress was highest in control samples and reduced by additions of biosolids and poultry manure which was attributed to the high EC and possibly high extractable P and NH_4~+. Conclusions The concurrent addition of residue mud and organic wastes can improve chemical, microbial and particularly physical properties of residue sand. Future research should include neutralisation of the mud (e.g. with gypsum) and subsequent leaching to remove salts originating from both the mud and organic wastes.
机译:背景,目的和范围在氧化铝精炼厂中,铝矾土矿石在高温高压下用氢氧化钠处理,每生产一吨氧化铝,也会产生约2吨碱性,盐碱铝土矿加工废料。在美国铝业公司(Alcoa),使用的是干式堆放系统,而处理过的废料中的沙子部分则得到了修复。关于添加到加工砂中以帮助植被恢复的最合适的修改的信息很少。这项研究的目的是研究在存在或不存在残留泥浆的情况下添加有机废物(生物固体和家禽粪便)如何影响残留砂的性质及其对植被恢复的适应性。材料和方法从Alcoa的Kwinana精炼厂收集新沉积的残留砂样品。样品用磷石膏(2%v / v)处理,孵育并浸出。然后建立了一个实验室实验,其中两种有机废物的添加量为0或相当于60吨ha-1(-1),并以0%,10%和20%v / v的比例添加残留泥浆。将样品孵育8周,然后测量残留沙粒的关键化学,物理和微生物特性以及种子发芽。结果与讨论残留泥浆的添加增加了饱和糊状提取物中可交换的Na〜+,ESP和pH值以及HCO_3〜-和Na〜+的浓度。生物固体和家禽粪便的添加增加了可提取的P,NH_4〜+,K,Mg,Cu,Zn,Mn和Fe的浓度。残留泥浆与有机废物的结合,使大孔隙度显着下降,中孔隙度,有效持水量和田间持水量随之增加。随着残渣泥添加量的增加,以砂粒形式存在的样品百分比(直径小于1毫米)减少了,以聚集形式存在的样本百分比(直径大于2毫米)增加了;加入残渣泥和家禽粪便的组合时发生最大的聚集。通过湿筛分测得的骨料稳定性在使用家禽粪便的地方最大。尽管生物固体中的总有机碳和可溶性有机碳比家禽粪便处理高,但微生物生物量碳和基础呼吸却相反。在生物固体和家禽粪便处理中,增加残渣泥的添加量往往会增加可溶性碳,微生物生物量碳和基础呼吸。对照样品中豆瓣的发芽指数最高,而生物固形物和家禽粪便的添加降低了豆瓣的发芽指数,这归因于高EC以及可能的高可萃取P和NH_4〜+。结论同时添加残渣泥和有机废物可以改善残渣砂的化学,微生物,特别是物理性质。未来的研究应包括中和泥浆(例如用石膏)和随后的淋洗以去除泥浆和有机废物中的盐分。

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