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首页> 外文期刊>Waste Management >Thermochemical digestate fertilizer from solid waste: Characterization, labile carbon dynamics, dehydrogenase activity, water holding capacity and biomass allocation in banana
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Thermochemical digestate fertilizer from solid waste: Characterization, labile carbon dynamics, dehydrogenase activity, water holding capacity and biomass allocation in banana

机译:来自固体废物的热化学消化施肥:表征,不稳定碳动力学,脱氢酶活性,香蕉中的水持有能力和生物质分配

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摘要

Thermochemical digestion is a rapid technology of biowaste management resulting in the instant production of organic fertilizer. Characterization and assessment of its suitability as an organic fertilizer is essential for recommendation for crop application. Biowaste and the thermochemical digestate were subjected to physicochemical and biochemical characterization and the compost maturity parameters assessed. The product integrated with inorganic fertilizers was tested in an Ultisol grown with banana in comparison with farmyard manure based fertilizers. Temporal variation in soil reaction, water holding capacity, carbon dynamics, dehydrogenase activity and plant biomass were determined. The thermochemical digestate fertilizer had a bulk density (0.76 Mg m~(-3)), pH (neutral), C:N ratio (16.26), CEC (85.70 cmol_((+)) kg~(-1)), CEC/TOC ratio (3.99), Fertilizing index (4.7) and a Clean index (5.0). Field evaluation revealed enhanced water holding capacity (38.75-83.17%). Total carbon increased with consistently high labile (R~2 = 0.9551) and non labile carbon fractions and the lowest average lability index (0.78). Dehydrogenase activity at harvest enhanced by 72.81%. An even biomass allocation resulted in 38.84% more biomass production in the fruit over farmyard manure based treatments. In addition to ensuring the safety of the environmental ecosystem, the thermochemical digestate conformed to be a quality resource favoring microbial proliferation and carbon sequestration, thereby restraining carbon dioxide emission. The thermochemical digestate fertilizer based nutrition serves the key deliverables of natural resource management, eco-friendly rapid disposal of biowaste and quality organic fertilizer for banana in Ultisols.
机译:热化学消化是生物空速管理的快速技术,导致有机肥的即时生产。作为有机肥料的适应性表征和评估对于作物应用的建议至关重要。对生物流和热化学消化进行物理化学和生物化学特征,并评估堆肥成熟度参数。与香蕉生长的乌尔托醇中,与野地粪肥的肥料相比,在与香蕉种植的Ultisol中集成的产品。确定土壤反应,水持能力,碳动力学,脱氢酶活性和植物生物质的时间变化。热化学消化肥具有堆积密度(0.76mg m〜(-3)),pH(中性),C:n比(16.26),CEC(85.70 Cmol _((+))kg〜( - 1)),CEC / TOC比率(3.99),施肥指数(4.7)和清洁指数(5.0)。现场评估显示出增强的水持有能力(38.75-83.17%)。总碳始终如一的高不稳定(R〜2 = 0.9551)和非不稳定碳馏分和最低的平均含量指数(0.78)。收获的脱氢酶活性增强了72.81%。均匀的生物量分配导致饲养农场粪便治疗的水果中的38.84%。除了确保环境生态系统的安全性之外,热化学消化符合优质资源,是有利于微生物增殖和碳封存的质量资源,从而限制二氧化碳排放。热化学消化肥料基础营养供应自然资源管理的关键可交付成果,生态友好迅速处理BioWaste和优质有机肥的Banana在Ultisols中。

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