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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Alkyl Chain Cross-Linked Sulfobutylated Lignosulfonate: A Highly Efficient Dispersant for Carbendazim Suspension Concentrate
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Alkyl Chain Cross-Linked Sulfobutylated Lignosulfonate: A Highly Efficient Dispersant for Carbendazim Suspension Concentrate

机译:烷基链交联的磺基丁基化木质素磺酸盐:多菌灵悬浮液的高效分散剂

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摘要

A new family of highly water-soluble alkyl chain cross-linked sulfobutylated lignosulfonates (AASLSs) with a three-dimensional network structure and naked alkyl sulfonic acid groups were readily prepared by using 1,4-butane sultone (BS) and C6H12Br2 by a one step reaction in water, which simultaneously improved the sulfonation degree and molecular weight. GPC, 1H NMR, FTIR and functional group content tests confirmed their cross-linked chemical structure and efficient nucleophilic substitution reaction mechanism. Furthermore, the dispersion properties of AASLSs in a carbendazim suspension concentrate (SC) system were investigated. AASLS4 with high molecular weights (M_(w)) and moderate sulfonation degrees showed suspensibility of 99% in 45% carbendazim SC after hot storage at 50 ℃ for 14 days. Meanwhile, AASLS4 also showed smaller SC particle size and better rheological performance than commercial lignosulfonate. The adsorption isotherms and ζ- potential of AASLSs on carbendazim SC particles were studied to reveal the dispersion mechanism. The alkyl chain cross-linked structure and long alkyl chain-containing sulfonic acid groups contribute to the excellent dispersion properties on carbendazim SC. Our modification approach for lignin might provide a novel concept and prospective avenue for the design of efficient dispersants.
机译:一个新的高水溶性烷基链交联的磺丁基丁基木质素磺酸盐(AASLSs)系列具有三维网络结构和裸烷基磺酸基团,可以很容易地使用1,4-丁烷磺酸内酯(BS)和C6H12Br2在水中进行一步反应,同时提高了磺化度和分子量。 GPC,1 H NMR,FTIR和官能团含量测试证实了它们的交联化学结构和有效的亲核取代反应机理。此外,还研究了AASLSs在多菌灵悬浮剂(SC)体系中的分散性能。分子量(M_(w))和中等磺化度的AASLS4在50℃下热藏14天后,在45%多菌灵SC中的悬浮度为99%。同时,AASLS4还显示出比市售木质素磺酸盐更小的SC粒径和更好的流变性能。研究了AASLSs在多菌灵SC颗粒上的吸附等温线和ζ-电势,以揭示其分散机理。烷基链交联结构和含长烷基链的磺酸基有助于在多菌灵SC上的优异分散性能。我们对木质素的改性方法可能为高效分散剂的设计提供新颖的概念和预期的途径。

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