CLAD: Carbon Landscapes And Drainage
CLAD: Carbon Landscapes And Drainage
批准号:
NE/G008833/1
负责人:
Susan Waldron
金额:
$23.05万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2009
资助国家:
英国
项目状态:
已结题
起止时间:
2009 至 --
中文摘要
该项目旨在提高对英国部分地区的理解和管理。储存了大量的碳,泥炭地泥炭含有约45-60%的碳。英国泥炭地所含的碳量与英国未来35年化石燃料燃烧所产生的碳量相当。碳储存在泥炭中的植物遗骸中,这些植物不会完全分解,但有些以各种方式损失,包括二氧化碳和甲烷气体。很大一部分碳也以溶解的有机碳的形式流失,这些碳被冲入溪流和河流,使泥炭水呈现出独特的棕色。侵蚀性泥炭可以流失到河流中的颗粒物质。溶解碳和颗粒碳都可以在水中分解并释放为二氧化碳,这意味着这些水体可以成为大气中二氧化碳的重要来源。众所周知,人类对泥炭地的干扰,例如森林的砍伐,可以显着增加碳流失到河流中的速度。目前,英国的泥炭地被管理用于美学,娱乐和商业活动,例如,在许多泥炭地地区发现的孤立和多风的环境为风力发电场的开发提供了合适的位置。这种类型的开发可能是近代历史上最重要的,大规模的,人类对泥炭地的干扰。虽然从长期来看,这种损失被非矿物燃料发电节省的二氧化碳所抵消,但在短期内,为安装涡轮机而挖掘所需的洞穴、修建通道和清除森林都可能导致排放系统中碳损失量的增加。这些排水系统的损失在环境上是否可以接受,目前并不是负责批准和监督发展的人的考虑因素。考虑到泥炭地作为“碳储存”的重要性,令人惊讶的是,泥炭地没有被管理用于其最重要的功能之一,碳储存。我们希望这一点以及定义生态上可接受的碳流的必要性在未来几年内发生变化,并通过立法,要求将其纳入管理计划和泥炭地开发所需的环境影响评估。一种容易评估泥炭地碳损失的方法是监测泥炭地排水系统中溶解碳和颗粒碳的输出。研究人员知道很多关于碳是如何从泥炭地流失到河流中的,而这次竞标的PI也知道很多关于风电场如何影响集水区排水的信息。但这些信息还没有被综合起来,供那些对泥炭地负责的人使用。我们建议通过建立知识交流网络来改变这一点,作为一种学习工具,考虑风电场干扰对碳景观的影响,特别是排水系统。我们将建立一个利益相关者网络,这些利益相关者对泥炭地管理、研究和开发感兴趣。这将使学术界对泥炭地碳损失研究的前沿知识与管理人员和开发人员之间的知识交流,他们关心在泥炭地内开展的日常活动。我们将举办研讨会,展示和教授通过水生途径监测泥炭地碳损失的最新技术。我们将提供借调,允许与关注碳景观和排水系统中碳管理的专业人员进行响应式互动。我们将利用集体网络知识,制定一套有关排水系统泥炭地管理的指导方针。该项目将是向专业管理人员和研究人员提供根据当前最佳实践管理泥炭地碳循环所需的最新理解、技术和工具的重要一步。
英文摘要
This project aims to improve understanding and management of parts of the U.K. which store significant amounts of carbon, peatlands. Peat contains about 45-60% of its weight as carbon. UK peatlands contain about as much carbon as is produced by fossil fuel burning in the UK for the next 35 years at current rates. Carbon is stored in peat in the remains of plants which do not fully decompose, but some is lost in a variety of ways including as carbon dioxide and methane gas. A significant proportion of carbon is also lost as dissolved organic carbon, which is flushed into streams and rivers giving peaty water its distinctive brown colour. Eroding peat can be lost to the rivers are particulate matter. Both dissolved and particulate carbon can be broken down in the water and released as carbon dioxide, meaning that these water bodies can be significant sources of carbon dioxide to the atmosphere. It is known that human disturbance to peatlands e.g. clear felling of forestry, can significantly increase the rate at which carbon is lost to the rivers. Currently peatlands in the UK are managed for aesthetic, recreational, and commercial activities e.g. the isolated and windy environment found in many peatland areas offers a suitable location for windfarm developments. This type of development is probably the most important, large-scale, human disturbance to peatlands in recent history. Although in the longer terms, this loss is offset by the carbon dioxide saved in non-fossil fuel energy generation, in the short term digging the holes needed to place the turbines, building access roads and the clearance of forestry can all lead to increases in the amounts of carbon lost to drainage systems. Whether these losses to drainage systems are environmentally acceptable or not is not currently a consideration of those responsible for approving and overseeing the development. Given their importance as 'carbon landscapes', it is surprising that peatlands are not managed for one of their most important functions, carbon storage. We expect this, and the need to defined an ecologically acceptable carbon flow, to change in the coming years and legislation to be passed which will require this to be included in management plans and the environmental impact assessments required for developments on peatlands. One way in which it is easy to assess loss of carbon from peatlands is by monitoring export of dissolved and particulate carbon in the peatland drainage systems. Researchers know quite a lot about how carbon is lost from peatlands to rivers, and the PIs of this bid, know quite a lot about how windfarms impact on catchment drainage. But this information has not yet been synthesised for those with a responsibility for peatlands. We propose to change this through setting up on a knowledge exchange network, using as a learning vehicle, consideration of the impact of windfarm disturbance on carbon landscapes, particularly drainage systems. We will set up a network of stakeholders with interests in peatland management, research and development. This will allow the exchange of knowledge between academics on the cutting edge of research into carbon losses from peatlands and managers and developers concerned with the day-to-day activities pursued within them. We will run workshops to demonstrate and teach the latest techniques for monitoring carbon losses from peatlands via aquatic pathways. We will offer t for secondment, allowing responsive interaction with professionals concerned with carbon management in carbon landscapes and drainage systems. We will harness collective network knowledge to produce a set of guidelines concerning the management of peatlands on drainage systems. This project will be a significant step towards arming professional managers and researchers with the up-to-date understanding, techniques and tools needed to manage the peatland carbon cycle according to current best practise.
期刊论文(6)
专著(0)
科研奖励(0)
会议论文
DOI:
10.1017/s0376892914000034
发表时间:
2014
期刊:
Environmental Conservation
影响因子:
2.7
作者:
[PADFIELD R]
通讯作者:
PADFIELD R
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项目类别:Research Grant
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资助金额:$5.09万
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财政年份:2014
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依托单位:
A United Kingdom Lake Ecological Observatory Network
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