INVESTIGATION OF WASTE BIOMASS ASH FROM PAPER INDUSTRY

Q3 Engineering
Ekaterina Serafimova, Asya K. Manoylova, Vilma Stoyanova
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Abstract

The main part of companies in Bulgaria are built, however in the 70s, and upgraded last decade. The countrysupplies around 80 % of its supplies of paper, paperboard and pulp with own production. Integrated treatment ofwastes is a priority for realizing closed life cycle of materials. The aim of the present work is to investigate thecomposition and other important characteristics of biomass wood ash wasted from paper industry. The correlationsand associations among the chemical characteristics are also studied to find some basic trends and importantrelationships between two similar wastes from different enterprises. It was proved that all samples taken containedBa, Cr, Mn, Ni, Co, Al, Fe, Cu and Zn far below the legal limits for such type of products. A product has a certain anti-acidic effect. The other positive result was that the content of iron is between 34 to 60 mg per 1 kg dry waste. The microscopic photos confirmed that the particles are close to the nano-size materials. The content of the elements C, N, H is in good quantities and ratios, which is a prerequisite for their use as a soil improver. By the results of this study, it was confirmed that all samples produced as a result of the thermal treatment and final low water content achieved are free from pathogen microorganisms and different weed seeds, affecting the yield and soil sustainability. That allows determining the optimal ratio between the used components with a view to obtain products with desired thermal stability and physico-chemical properties as soil improvers.
造纸业废弃生物质灰调查
保加利亚的大部分公司都是在上世纪 70 年代建立的,并在最近十年进行了升级。保加利亚自产的纸张、纸板和纸浆约占其供应量的 80%。废物综合处理是实现材料封闭生命周期的首要任务。本研究旨在调查造纸工业产生的生物质木灰的组成和其他重要特征。同时还研究了化学特征之间的相关性和关联性,以发现来自不同企业的两种类似废物之间的一些基本趋势和重要关系。结果表明,所有样品中的钡、铬、锰、镍、钴、铝、铁、铜和锌含量都远远低于此类产品的法定限值。该产品具有一定的抗酸作用。另一个积极的结果是,每 1 公斤干垃圾中铁的含量在 34 至 60 毫克之间。显微照片证实,这些颗粒接近纳米级材料。C、N、H 元素的含量和比例都很好,这是将其用作土壤改良剂的先决条件。这项研究的结果证实,所有经过热处理并最终实现低含水量的样品都不含病原微生物和不同的杂草种子,不会影响产量和土壤的可持续性。因此,可以确定所用成分之间的最佳比例,以获得具有理想热稳定性和物理化学特性的产品,作为土壤改良剂。
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来源期刊
Journal of Chemical Technology and Metallurgy
Journal of Chemical Technology and Metallurgy Engineering-Industrial and Manufacturing Engineering
CiteScore
1.40
自引率
0.00%
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