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Offsetting greenhouse gas emissions through biological carbon sequestration in north eastern Australia.

机译:通过澳大利亚东北部的生物固碳来抵消温室气体的排放。

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摘要

The Kyoto Protocol recognises trees as a sink of carbon and a valid means to offset greenhouse gas emissions and meet internationally agreed emissions targets. This study details biological carbon sequestration rates for common plantation species Araucaria cunninghamii (hoop pine), Eucalyptus cloeziana, Eucalyptus argophloia, Pinus elliottii and Pinus caribaea var hondurensis and individual land areas required in north-eastern Australia to offset greenhouse gas emissions of 1000 t CO2e. The 3PG simulation model was used to predict above and below-ground estimates of biomass carbon for a range of soil productivity conditions for six representative locations in agricultural regions of north-eastern Australia. The total area required to offset 1000 t CO2e ranges from 1 ha of E. cloeziana under high productivity conditions in coastal North Queensland to 45 ha of hoop pine in low productivity conditions of inland Central Queensland. These areas must remain planted for a minimum of 30 years to meet the offset of 1000 t CO2e.
机译:《京都议定书》承认树木是碳汇,是抵消温室气体排放并达到国际商定排放目标的有效手段。这项研究详细介绍了常见人工林物种杉木南极(环松),克罗埃西亚桉,桉树, ellius elliottii 和 caribaea var hondurensis 以及澳大利亚东北部抵消1000吨CO 2 温室气体排放所需的单个土地区域e。 3PG模拟模型用于预测澳大利亚东北部农业地区六个代表性地点在一系列土壤生产力条件下的生物量碳的地上和地下估算。抵消1000 t CO 2 e所需的总面积为1公顷的 E。昆士兰州北昆士兰州沿海地区高生产力条件下的松果油菜,内陆昆士兰中部地区低生产力条件下的环松树种为45公顷。这些地区必须至少种植30年,以补偿1000 t CO 2 e的偏移量。

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