Pressmud: a sustainable source of value-added products

Q1 Environmental Science
V. Poria, Prakriti Jhilta, Anuj Rana, Jaswant S Khokhar, Surender Singh
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Abstract

ABSTRACT The pressmud, a valuable by-product in sugarcane processing, is disposed of either by incineration or by dumping in landfills. However, the pressmud being rich in nutrients and organic matter can be used for several purposes. The current review’s objectives are to explore the agricultural and industrial uses of pressmud, the role of microorganisms to improve its properties, and technological challenges & barriers in pressmud value addition. Two online databases, PubMed and Scopus, were used to search the relevant information using keywords ‘Pressmud’ and/or ‘Press mud’ and 457 results were obtained. After following exclusion criteria and removal of duplicate entries, out of the remaining 169 records, only 36 records were selected for final analysis based on title, abstract, and other relevant parameters. Furthermore, 62 records were included based on cross-referencing from selected literature. The evidence from different studies showed that pressmud is a rich source of nutrients, for example, calcium (Ca), silicon (Si), zinc (Zn), iron (Fe), copper (Cu), and manganese (Mn). The efficacy of pressmud compost could be improved using microorganisms, for example, Pseudomonas, Bacillus, Aspergillus, Trichoderma and Streptomyces. The pressmud has the potential to be used as a biofuel, microbial carrier, soil conditioner, bioremediation of heavy metals, animal feed, wax production, and concrete formation. However, the pressmud composition is affected by sugarcane varieties, soil type, and other environmental factors. Technological barriers are also a big challenge for researchers to exploit the potential use of pressmud in different industries. Therefore, extensive research on pressmud use in the agriculture sector is warranted. GRAPHICAL ABSTRACT
Pressmud:增值产品的可持续来源
压榨渣是甘蔗加工过程中的一种有价值的副产品,其处理方法有焚烧法和填埋法。然而,富含营养和有机物质的压力泥可用于多种目的。本综述的目的是探讨压渣的农业和工业用途,微生物在改善其性能方面的作用,以及压渣增值的技术挑战和障碍。使用PubMed和Scopus两个在线数据库,使用关键词“Pressmud”和/或“Pressmud”搜索相关信息,得到457个结果。在遵循排除标准和删除重复条目后,在剩余的169条记录中,根据标题、摘要和其他相关参数,只选择了36条记录进行最终分析。此外,通过交叉引用所选文献纳入62条记录。来自不同研究的证据表明,压力是营养物质的丰富来源,例如钙(Ca)、硅(Si)、锌(Zn)、铁(Fe)、铜(Cu)和锰(Mn)。利用假单胞菌、芽孢杆菌、曲霉菌、木霉和链霉菌等微生物可以提高压泥堆肥的效果。压力泥浆具有用作生物燃料、微生物载体、土壤调节剂、重金属生物修复、动物饲料、制蜡和混凝土成型的潜力。然而,甘蔗的压榨成分受甘蔗品种、土壤类型和其他环境因素的影响。技术壁垒也是研究人员在不同行业开发压浆潜在用途的一大挑战。因此,有必要对农业部门的压榨使用进行广泛的研究。图形抽象
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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来源期刊
Environmental Technology Reviews
Environmental Technology Reviews Environmental Science-Water Science and Technology
CiteScore
6.90
自引率
0.00%
发文量
8
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