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Heat supply from municipal solid waste incineration plants in Japan: Current situation and future challenges

机译:日本城市固体废物焚化厂的供热:现状和未来挑战

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The use of waste-to-energy technology as part of a municipal solid waste management strategy could reduce the use of fossil fuels and contribute to prevention of global warming. In this study, we examined current heat and electricity production by incineration plants in Japan for external use. Herein, we discuss specific challenges to the promotion of heat utilisation and future municipal solid waste management strategies. We conducted a questionnaire survey to determine the actual conditions of heat production by incineration plants. From the survey results, information of about 498 incineration plants was extracted. When we investigated the relationship between heat production for external use and population density where incineration plants were located, we found that regions with a population density <1000 persons (km~2)~(-1) produce <500MJt~(-1) of heat. We also found that external use of such energy for factories, markets, and related use, was noted in cities with a population density of 2000 to 4000 persons (km~2)~(-1). Several incineration plants have poor performance for heat production because there are few facilities near them to provide demand for the energy. This is the result of redundant capacity, and is reflected in the heat production performance. Given these results, we discussed future challenges to creating energy demand around incineration plants where there is presently none. We also examined the challenges involved in increasing heat supply beyond the present situation.
机译:将废物转化为能源的技术作为市政固体废物管理策略的一部分,可以减少化石燃料的使用,并有助于防止全球变暖。在这项研究中,我们检查了日本焚烧厂目前供外部使用的热能和电力生产。在此,我们讨论了促进热利用和未来城市固体废物管理策略的具体挑战。我们进行了问卷调查,以确定焚烧厂生产热量的实际条件。从调查结果中,提取了大约498个焚化厂的信息。当我们研究焚烧厂所处的外部供热与人口密度之间的关系时,我们发现人口密度<1000人(km〜2)〜(-1)的地区产生<500MJt〜(-1)的焚烧厂。热。我们还发现,在人口密度为2000至4000人(km〜2)〜(-1)的城市中,这种能源在工厂,市场和相关用途方面的外部使用已得到关注。几座焚烧厂的热能表现很差,因为它们附近的设施很少,无法满足能源需求。这是冗余容量的结果,并反映在热量产生性能中。鉴于这些结果,我们讨论了在目前尚无焚烧厂附近的焚烧厂附近创造能源需求方面的未来挑战。我们还研究了当前形势之外增加供热所面临的挑战。

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