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首页> 外文期刊>WSEAS Transactions on Environment and Development >The Disposal of Biosolids and Water Treatment Residuals on Soils of Arid Regions: Effect on Wheat Biomass and P and Al Availability
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The Disposal of Biosolids and Water Treatment Residuals on Soils of Arid Regions: Effect on Wheat Biomass and P and Al Availability

机译:干旱地区土壤中生物固体和水处理残留物的处置:对小麦生物量和磷铝利用率的影响

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摘要

Land co-application of biosolids and WTR is a new concept. Therefore, information on the effect of co-application of biosolids and WTR on plant growth and elements uptake are very limited especially in alkaline soils. A glasshouse experiments was established to evaluate the effects of co-application of WTR and biosolids on agronomic performance of wheat crop grown in alkaline soils as well as P and Al plant concentration and uptake, and to improve management of industrial and toxic wastes and provides environmentally sound guidelines for their disposal. The results indicated that increases of 47, 359 and 55% in total dry matter yield were achieved as a result of applying 40 gkg~(-1) WTR and 10 gkg~(-1) biosolids to clay, sandy and calcareous soils respectively. In all studied soils treated with a constant biosolid rate 10 gkg~(-1), application of 20 gkg~(-1) WTR significantly increased plant P concentration in the plant materials. Combined analyses of all soils, all treatments of biosolid and WTR rates studied indicated clearly significant relationships between ABDTPA P concentration and P uptake (r = 0.81, p < 0.001). Application of WTR combined with biosolid showed significant increases in extractable Al in all the soils studied. However, application rates of WTR and biosolid did not increase extractable Al in amended soils beyond 6.06 mg Al kg~(-1).
机译:生物固体和WTR在土地上的联合应用是一个新概念。因此,有关生物固体和WTR共同施用对植物生长和元素吸收影响的信息非常有限,尤其是在碱性土壤中。建立了温室试验,以评估WTR和生物固体的共同施用对在碱性土壤中种植的小麦作物的农艺性能以及磷和铝植物的浓度和吸收的影响,并改善工业和有毒废物的管理,并为环境提供保护合理的处置方法。结果表明,将40 gkg〜(-1)的WTR和10 gkg〜(-1)的生物固体分别施用到粘土,砂质和石灰质土壤上,干物质总产量分别提高了47%,359%和55%。在以10 gkg〜(-1)恒定生物固形物处理的所有研究土壤中,施加20 gkg〜(-1)的WTR均可显着提高植物材料中植物P的浓度。对所有土壤,所有生物固体处理和WTR速率的综合分析表明,ABDTPA P浓度与P吸收之间存在明显的显着关系(r = 0.81,p <0.001)。 WTR结合生物固体的应用表明,在所有研究的土壤中可提取铝的含量均显着增加。然而,在改良土壤中,WTR和生物固体的施用量并未增加可提取的铝,超过6.06 mg Al kg〜(-1)。

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