秸秆回收外文翻译--收获系统和分析草本植物的产量
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1、 1 1 Harvest systems and analysis for herbaceous biomass Abstract Biomass feedstocks including crop residues and energy crops hold great potential for energy source. They are currently being considered for use in direct combustion systems and for value added byproducts such as biofuels or biocrude.
2、A major roadblock associated with utilization of biomass feedstocks is the high cost of handling and storage due to low energy and bulk density of these feedstocks. In addition, a wide variety of existing harvest systems creates logistics difficulties for bioenergy industries. The utilization of her
3、baceous biomass requires optimized handling systems to collect, store, and transport year round. This then requires selecting the most economical methods from various existing handling systems for loose and baled biomass materials. How these different harvesting systems can be integrated into a cost
4、-effective supply system is a challenge. The number of harvest days or the window of harvest depends on the type of crops, geographic and climate conditions, soil and nutrient management strategies, etc. The window of harvest could greatly impact on harvest, handling and storage costs. Efficient use
5、 of existing harvesting and handling equipment in a limited harvest window is desired. This chapter provides principles of selecting field harvest machine systems to increase system efficiency and productivity. Practical examples are used to demonstrate cost analysis methods of different harvest sys
6、tems. Field observation results are used to quantitatively describe field capacities of typical biomass harvest and handling machine systems. Optimization models based on typical biomass logistics systems are described. This chapter will guide readers through the decision process to address the meth
7、odology required to design, or specify, a biomass logistics system based on the size of the bioenergy plant being supplied. Cost analysis methods and examples are used to demonstrate components of the process that will enable biorefinery industries and landowners to determine the most cost-effective
8、 way to harvest, store, and transport biomass feedstocks. 1. Introduction Biomass is a distributed energy resource. It must be collected from production fields and accumulated at storage locations. Previous studies of herbaceous biomass as a feedstock for a bioenergy industry have found that the cos
9、ts of harvesting feedstocks are a key cost component in the total logistics chain beginning with a crop on the field and ending with a stream of size-reduced material entering the biorefinery. Harvest of herbaceous biomass is seasonal and the window of harvest is limited. Biomass needs to be stored
10、at a central location. 2 2 Normally, several or many of these central storage locations in a certain range of a biorefinery are needed to ensure 24 hours a day and seven days a week supply. These centralized storage locations are commonly called satellite storage locations (SSL). The size and number
11、 of SSLs depend on the size of the biorefinery plant, availability of biomass within a given radius, window of harvest, and costs. It is convenient to envision the entire biomass logistics chain from fields to biorefineries with three sections. The first section is identified as the “farmgate operat
12、ions”, which include crop production, harvest, delivery to a storage location, and possible preprocessing at the storage location. This section will be administrated by farm clientele with the potential for custom harvest contracts. The second section is the “highway hauling operations,” and it envi
13、sions commercial hauling to transport the biomass from the SSL to the biorefinery in a cost effective manner. The third section is the “receiving facility operations,” and it includes management of the feedstock at the biorefinery, control of inventory, and control of the commercial hauler contract
14、holders to insure a uniform delivery of biomass for year-round operation. Agricultural biomass has low bulk density, and it is normally densified in-field with balers, or chopped with a self-propelled forage harvester. Currently, there are four prominent harvesting technologies available for biomass
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- 秸秆 回收 外文 翻译 收获 收成 系统 以及 分析 草本植物 产量
