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首页> 外文期刊>Journal of Wood Science >Effective combinations of functional groups in chemically modified kraft lignins for reduction of aluminum toxicity
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Effective combinations of functional groups in chemically modified kraft lignins for reduction of aluminum toxicity

机译:化学修饰的牛皮纸木质素中官能团的有效组合,可降低铝的毒性

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摘要

Plant growth tests were performed with radish (Raphanus sativa var. radicula Pers.) in culture solutions containing low molecular weight compounds in the presence of aluminum to determine the types of functional groups in kraft lignin (KL) modified with ozone and alkali that contributed to reducing aluminum toxicity. The low molecular weight compounds used in this study contained carboxyl, formyl, methoxyl, alcohol hydroxyl, and phenolic hydroxyl groups. The compounds that had adjacent two carboxyl groups (oxalic acid), carboxyl/alcohol hydroxyl groups (glycolic acid), or carboxyl/formyl groups (glyoxylic acid) were effective in reducing aluminum toxicity. Malonic acid, having two carboxyl groups, also reduced aluminum toxicity. The ability of ozone-treated KLs to reduce aluminum toxicity was considered to be partly due to these chemical structures. Protocatechuic acid, having two adjacent phenolic hydroxyl groups, was also effective in reducing aluminum toxicity. This indicated that the effectiveness of the alkaline-treated KL was partly due to its catechol structure.
机译:在含有铝和低分子量化合物的培养液中,在铝的存在下,用萝卜(Raphanus sativa var。radicula Pers。)进行植物生长试验,以确定经臭氧和碱改性的牛皮纸木质素(KL)中官能团的类型减少铝的毒性。在这项研究中使用的低分子量化合物包含羧基,甲酰基,甲氧基,醇羟基和酚羟基。具有相邻两个羧基(草酸),羧基/醇羟基(乙醇酸)或羧基/甲酰基(乙醛酸)的化合物可有效降低铝的毒性。具有两个羧基的丙二酸还降低了铝的毒性。臭氧处理的KLs降低铝毒性的能力被认为部分归因于这些化学结构。具有两个相邻酚羟基的原儿茶酸在减少铝毒性方面也有效。这表明碱处理的KL的有效性部分归因于其儿茶酚结构。

著录项

  • 来源
    《Journal of Wood Science》 |2009年第3期|220-224|共5页
  • 作者单位

    Laboratory of Biomass Sciences Department of Forest Sciences and Resources College of Bioresource Sciences Nihon University Kanagawa 252-8510 Japan;

    Laboratory of Biomass Sciences Department of Forest Sciences and Resources College of Bioresource Sciences Nihon University Kanagawa 252-8510 Japan;

    Laboratory of Biomass Sciences Department of Forest Sciences and Resources College of Bioresource Sciences Nihon University Kanagawa 252-8510 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aluminum toxicity; Acid soil; Combination of functional groups; Lignin; Soil-conditioning agent;

    机译:铝的毒性;酸性土壤;官能团的结合;木质素;土壤调理剂;

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