WOOD POTENTIAL OF 33-YEAR-OLD Corymbia citriodora FOR PULP AND PAPER IN THREE SOIL TYPES

IF 0.1 0 LITERATURE, ROMANCE
W. L. Vieira, E. Longui, E. P. Amorim, M. Freitas, Iraê Amaral Guerreni, M. Rossi
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Abstract

The pulp and paper industry is important to the Brazilian economy. In the present study, we investigated Corymbia citriodora wood in three soil types: Quartzarenic Neossol, Red Latosol and Red Nitosol. We aimed to determine how differences in physical, chemical and water-holding capacity among these three types of soils can cause changes in wood density and anatomical ratios in C. citriodora wood, important parameters in the production of pulp and paper. We used standard techniques in the methodology. Soil types did infuence wood quality and could be used as a factor in considering the fnal quality of the product. Corymbia citriodora wood have not previously been considered for use in paper/pulp production. However, if we consider wood density as a key factor, wood from Red Nitosol - NV trees can be used since lower basic densities were identifed and are most appropriate for the production of printing and writing paper, owing to fber features. Otherwise, woods from Quartzarenic Neossol - RQ and Red Latosol - LV trees are more suitable for absorbent paper (tissue). We found that more clayey soil promotes lower basic density, and NV soil was found to be the most clayey of the studied soils. Based on nutritional information from soil, it appears that wood from LV soil trees would be the most suitable for present fewer problems in production. However, to be sure of this tentative conclusion, the contents of these nutrients would have to be analyzed in wood ash.
33年生香茅在3种土壤类型下制浆造纸的木材潜力
纸浆和造纸工业对巴西经济非常重要。在本研究中,我们在三种土壤类型:石英新土、红Latosol和红Nitosol中调查了柠檬木。我们的目的是确定这三种类型土壤的物理、化学和持水能力的差异如何导致柠檬木的木材密度和解剖比例的变化,这是纸浆和纸张生产中的重要参数。我们在方法中使用了标准技术。土壤类型确实影响木材质量,可以作为考虑产品最终质量的因素。柠檬木以前没有被考虑用于造纸/纸浆生产。然而,如果我们将木材密度视为一个关键因素,则可以使用红Nitosol-NV树的木材,因为由于fber的特征,已经确定了较低的基本密度,并且最适合生产印刷和书写纸。除此之外,Quartzarenic Neossol-RQ和Red Latosol-LV树的木材更适合用作吸水纸(纸巾)。我们发现,粘性土壤越多,基本密度越低,NV土壤是研究土壤中粘性最强的土壤。根据来自土壤的营养信息,LV土壤树的木材似乎最适合在生产中出现较少的问题。然而,为了确定这一初步结论,必须对木灰中这些营养物质的含量进行分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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