首页> 外文期刊>Journal of Environmental Management >Water hyacinth (Eichhornia crassipes (Mart.) Solms.) as an alternative raw material for the production of bio-compost and handmade paper
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Water hyacinth (Eichhornia crassipes (Mart.) Solms.) as an alternative raw material for the production of bio-compost and handmade paper

机译:水合风信花(Eichhornia Crassipes(Mart。)solms。)作为生产生物堆肥和手工纸的替代原料

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Water hyacinth (WH) is considered as the worst aquatic weed in the world because of its rapid growth and fast spread into new areas of fresh water bodies. We investigated the potentiality of using WH as a raw material for production of handmade paper and compost in Bangladesh. Potash pulping was done using potassium hydroxide (KOH) at different alkali concentrations (8-12%) with a liquor to solid ratio of 7∶1 at 145 °C for 2 h. The pulp was bleached using hydrogen peroxide (H_2O_2), and pulp properties (brightness, tear index and tensile index) of bleached and unbleached pulps were analyzed following the respective TAPPI standards. The produced black liquor was mixed with WH along with kitchen bio-wastes to produce compost. The properties of the compost were tested following the published protocols, i.e., wet digestion, Kjeldahl, vanadomolybdophosphoric acid, and Flame Spectrophotometry methods. Brightness, tensile index and tear index of bleached hand sheets were found to be 37.2%, 49.2 N m/g and 6.79 m.Nm~2/g, respectively suggesting significant contribution of bleaching on WH paper quality. Addition of black liquor significantly increased the nitrogen and potassium content of bio-waste compost. Thus, WH can be used as a raw material for making handmade paper while the process by-product can be supplemented to improve the nutritional quality of compost. Such cottage-industry fabrication of WH green products could be developed to control the infestation of WH in water bodies, and this technology may provide for new possible sustainable livelihood option.
机译:由于其快速增长和快速蔓延到新的淡水尸体,水葫芦(WH)被认为是世界上最糟糕的水生杂草。我们调查了使用WH作为孟加拉国制作手工纸和堆肥的原料的潜力。使用氢氧化钾(KOH)在不同的碱浓度(8-12%)以不同的碱浓度(8-12%)进行钾浆,在145℃下为7:1的实体比例2小时。使用过氧化氢(H_2O_2)漂白纸浆,并在相应的Tappi标准下分析漂白和未漂白纸浆的纸浆性质(亮度,撕裂指数和拉伸指数)。将生产的黑液与WH一起混合在一起,与厨房生物废物一起产生堆肥。在公开的方案,即湿法消化,kjeldahl,钒钼酰基磷酸和火焰分光光度法的方法中测试了堆肥的性质。发现漂白手抄单的亮度,拉伸指数和撕裂指数为37.2%,49.2nm / g和6.79m.nm〜2 / g,分别表明漂白对WH纸质质量的显着贡献。添加黑液的添加显着增加了生物废物堆肥的氮和钾含量。因此,可以用作制造手工纸的原料,而可以补充工艺副产物以提高堆肥的营养质量。这种山寨行业的WH绿色产品可以开发用于控制水体内WH的侵蚀,这项技术可以提供新的可能可持续的生计选择。

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