制糖业产生的压榨泥废料在制砖业中的应用潜力,促进绿色企业和可持续发展

M. Mohamad, Khai Lin Chong, Muhammad Hafeez Abdul Nasir, Rahimi Abidin, Noor Hidayah Abu, M. R. Razalli, Che Azlan Taib, Yuhainis Mohd Yusoff, Vignes Chellamuthu
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摘要

目前,马来西亚的建筑业正在持续扩张,这一点从我国各地对住宅、商业建筑和其他基础设施不断增长的需求就可以看出来。因此,本研究旨在确定利用工业废料制造轻质砖的合适材料和比例。本研究调查了使用甘蔗精炼厂废料压榨泥(pressmud)作为精细生物骨料生产建筑材料的可行性。通过将普通硅酸盐水泥与不同重量百分比(50%、40%、30%、20% 和 10%)的榨泥混合,形成了水泥-榨泥二元混合砖。为了研究和比较压泥砖和商用砂砖的特性,进行了各种实验。实验的重点是密度测定和压缩试验(标准砖)。压缩测试表明,水泥加压泥砖的重量比最高为 20%,其强度与标准砖相当,数值从 17.16 兆帕到 23.01 兆帕不等。压制泥砖的重量也有所减轻,10% 和 20% 的压制泥砖的重量比标准砖轻 17%-23%。因此,可以得出结论,如果按适当的比例使用,碾压泥作为一种生物骨料,在生产轻质、经济的建筑材料方面具有巨大的潜力。
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Potential of Pressmud Waste from Sugar Industry in Brick Manufacturing for Green Business and Sustainability
The construction industry in Malaysia is currently witnessing sustained expansion, as seen by the rising demand for residential properties, commercial structures, and other infrastructures throughout our country. Therefore, the present study seeks to identify suitable materials and proportions for manufacturing lightweight bricks utilizing industrial waste materials. This study investigates the feasibility of using pressmud, a sugarcane refinery waste, as a fine bio-aggregate for the production of construction materials. Binary blended cement-pressmud bricks were formed by mixing Ordinary Portland cement with pressmud at various weights percentages (50%, 40%, 30%, 20%, and 10%). Various experiments were undertaken to investigate and compare the characteristics of pressmud bricks and commercial sand bricks. The experiments focused on density determination and compression tests (standard brick). The compression tests demonstrated that cement-pressmud bricks with a weight ratio of up to 20% exhibited a compatible strength to standard brick, with values ranging from 17.16 MPa to 23.01 MPa. The pressmud bricks exhibited reduced weight, with 10% and 20% variants weighing 17-23% less than the standard brick. Thus, it can be concluded that pressmud possesses significant potential as a bio-aggregate for producing lightweight and cost-effective construction materials when used in appropriate proportions.
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