首页> 外文会议>Conference of the Australian Society of Sugar Cane Technologists >OBSERVATIONS OF THE HARVESTING,TRANSPORTING AND TRIAL CRUSHING OF SWEET SORGHUM IN A SUGAR MILL
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OBSERVATIONS OF THE HARVESTING,TRANSPORTING AND TRIAL CRUSHING OF SWEET SORGHUM IN A SUGAR MILL

机译:糖厂中甜高粱的收获,运输和试碎的观察

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SWEET sorghum has previously been evaluated as having the potential to contribute fermentable sugars to a bioenergy industry producing ethanol.Sweet sorghum grown and processed complementarily with sugarcane can potentially increase efficiency of production by utilising existing infrastructure to harvest,transport and extract fermentable sweet sorghum sugars.This paper reports observations of a trial of sweet sorghum harvest, transport and crushing at Mossman Central Mill at the conclusion of the 2002 sugarcane crushing season.A 15 hectare sweet sorghum plant crop was harvested with a cane harvester in two separate batches:1. with the harvester’s extractor fans operating;and 2. with the harvester’s extractor fans turned off.Each batch was transported and crushed with existing sugarcane infrastructure.The first ratoon of sweet sorghum was harvested with a forage harvester.The bulk density of forage harvested sweet sorghum is approximately 400 kg/m~3 compared with approximately 300 kg/m~3 for sugarcane and 200 kg/m~3 for sweet sorghum harvested with a cane harvester.The higher bulk density material is cheaper to transport,placing limits on the geographical area in which cane harvested sweet sorghum could be sourced.A deterioration analysis showed a slight reduction in juice extraction percentage and no reduction in brix of extracted juice of cane harvested sweet sorghum. Brix declined rapidly in forage harvested sweet sorghum over the first 42 hours after harvest.Juice extraction percentage exhibited a similar trend to cane-harvested sweet sorghum.There are significant cut-to-crush limitations of forage harvested sweet sorghum due to the rapid decline in brix of extracted juice.Comparisons of both batches of sweet sorghum were made with sugarcane crushed at the same mill settings for moisture,brix and fibre of fibrated material prior to entering No.1 mill and after the final mill.Brix extraction percentage was lower for both batches of sweet sorghum than sugarcane.Fibre levels of sweet sorghum are higher and final moisture for sweet sorghum is comparable with sugarcane.
机译:先前曾对甜高粱进行评估,认为其潜力可为生产乙醇的生物能源行业贡献可发酵糖。与甘蔗互补种植和加工的甜高粱可以利用现有基础设施来收获,运输和提取可发酵甜高粱糖,从而提高生产效率。本文报道了在2002年甘蔗压榨季节结束时在Mossman Central Mill进行的甜高粱收获,运输和压榨试验的观察结果。用甘蔗收割机分两批收获了15公顷甜高粱植物:1。在收割机的抽风机运转的情况下;以及2.关闭收割机的抽风机。每一批均用现有的甘蔗基础设施运输并压碎。甘蔗收割机收获的甘蔗约为300 kg / m〜3,甘蔗收获的约为200 kg / m〜3,甘蔗收获的甜高粱约为200 kg / m〜3。劣化分析显示,甘蔗收获的甜高粱的汁液提取率略有降低,而榨汁的白利糖度却没有降低。收获后的头42小时,糖料收获的甜高粱的糖度迅速下降,果汁提取率与甘蔗收获的甜高粱的趋势相似。在进入第一磨机之前和最终磨机之后,在相同的磨机设置下将甘蔗压榨成纤维物料的水分,糖浆和纤维,比较两批甜高粱的糖度。这两个批次的甜高粱都比甘蔗高。甜高粱的纤维水平更高,甜高粱的最终水分可与甘蔗相媲美。

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