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首页> 外文期刊>Journal of Environmental Quality >Co-composting of Acid Waste Bentonites and their Effects on Soil Properties and Crop Biomass
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Co-composting of Acid Waste Bentonites and their Effects on Soil Properties and Crop Biomass

机译:酸性废膨润土的共堆肥及其对土壤性质和作物生物量的影响

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摘要

Acid waste bentonite is a byproduct from vegetable oil bleaching that is acidic (pH 3.0) and hydrophobic. These materials are currently disposed of in landfills and could potentially have a negative impact on the effective function of microbes that are intolerant of acidic conditions. A study was undertaken using three different sources of acid waste bentonites, namely soybean oil bentonite (SB), palm oil bentonite (PB), and rice bran oil bentonite (RB). These materials were co-composted with rice husk, rice husk ash, and chicken litter to eliminate their acid reactivity and hydrophobic nature. The organic carbon (OC) content, pH, exchangeable cations, and cation exchange capacity (CEC) of the acid-activated bentonites increased significantly after the co-composting phase. In addition, the hydrophobic nature of these materials as measured using the water drop penetration time (WDPT) decreased from 10 800 s to 16 to 80 s after composting. Furthermore, these composted materials showed positive impacts on soil physical attributes including specific surface area, bulk density, and available water content for crop growth. Highly significant increases in maize biomass (Zea mays L.) production over two consecutive cropping cycles was observed in treatments receiving co-composted bentonite. The study clearly demonstrates the potential for converting an environmentally hazardous material into a high-quality soil conditioner using readily available agricultural byproducts. It is envisaged that the application of these composted acid waste bentonites to degraded soils will increase productivity and on-farm income, thus contributing toward food security and poverty alleviation.
机译:酸性废膨润土是植物油漂白的副产品,是酸性(pH <3.0)和疏水性的。这些材料目前被丢弃在垃圾填埋场中,并且可能会对不耐酸性条件的微生物的有效功能产生负面影响。研究使用了三种不同的酸性废膨润土来源,即大豆油膨润土(SB),棕榈油膨润土(PB)和米糠油膨润土(RB)。这些材料与稻壳,稻壳灰和鸡粪混合在一起,以消除其酸反应性和疏水性。在共堆肥阶段之后,酸活化膨润土的有机碳(OC)含量,pH,可交换阳离子和阳离子交换容量(CEC)显着增加。此外,堆肥后,使用水滴渗透时间(WDPT)测得的这些材料的疏水性从> 10 800 s降低到16到80 s。此外,这些堆肥材料对土壤物理特性(包括比表面积,堆积密度和可用于作物生长的水分)显示出积极影响。在接受共混膨润土的处理中,两个连续的种植周期中玉米生物量(Zea mays L.)的产量显着增加。这项研究清楚地证明了使用容易获得的农业副产品将对环境有害的材料转化为优质土壤改良剂的潜力。设想将这些堆肥酸废膨润土用于降解土壤将提高生产力和农场收入,从而有助于粮食安全和减轻贫困。

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