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首页> 外文期刊>Waste Disposal & Sustainable Energy >Microwave physicochemical activation: an advanced approach to produce activated biochar for palm oil mill effluent treatment
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Microwave physicochemical activation: an advanced approach to produce activated biochar for palm oil mill effluent treatment

机译:微波理化活化:一种用于棕榈油厂废水处理的活性生物炭的先进方法

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摘要

Abstract Empty fruit bunch (EFB) is an industrial waste that is abundantly available in Malaysia. Traditionally, EFBs were burned and dumped on the plantation site, resulting in global warming pollution from methane and carbon dioxide. In this study, the EFB was transformed into a high-surface area of activated biochar through a microwave physicochemical approach involving the combination of steam followed by?a hydroxide mixture for palm oil mill effluent?(POME) treatment. It was found that BET?(Brunauer–Emmett–Teller) surface area and total pore volume of activated biochar were 365.60 m2/g and 0.16 cm3/g, respectively. The surface morphology of activated biochar revealed the formation of well-developed pores that can potentially be used as adsorbents to treat POME. The removal efficiency of biochemical oxygen demand (BOD) and chemical oxygen demand (COD) of POME achieved 75%–55%, respectively. This study offers insight into the transformation of industrial waste into value-added products for sustainable environmental remediation.
机译:摘要空果串(EFB)是一种工业在马来西亚的丰富的浪费。传统上,efb被焚烧和倾倒种植园的网站,导致全球变暖甲烷和二氧化碳污染。这项研究中,EFB变成了高表面活性生物炭通过涉及微波物理化学方法结合蒸汽紧随其后的是吗?棕榈油厂废水混合吗?(梨果)治疗。打赌吗? (Brunauer-Emmett-Teller)表面积和总孔隙体积激活生物炭365.60 m2 / g和0.16立方厘米/ g,分别。激活的生物炭的表面形态发达的毛孔能的形成可能被用作吸附剂对梨果。生化氧气的去除效率需求(BOD)和化学需氧量(COD)的分别梨果达到75% - -55%。提供洞察的变换工业废料转化为增值产品可持续的环境修复。

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