인문학
사회과학
자연과학
공학
의약학
농수해양학
예술체육학
복합학
개인구독
소속 기관이 없으신 경우, 개인 정기구독을 하시면 저렴하게
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지원사업
학술연구/단체지원/교육 등 연구자 활동을 지속하도록 DBpia가 지원하고 있어요.
커뮤니티
연구자들이 자신의 연구와 전문성을 널리 알리고, 새로운 협력의 기회를 만들 수 있는 네트워킹 공간이에요.
초록·키워드
Manure and slurry are commonly used as fertilisers in arable agriculture due to their ability to provide large quantities of nitrogen (N) required for crop growth. However, a considerable amount of the N applied from organic substrates is inefficiently utilised by crops, and is vulnerable to loss to the environment in gaseous forms such as nitrous oxide (N2O) and ammonia (NH3), and through leaching as nitrate after undergoing transformations in the soil. The emission of N2O and NH3 result in damaging environmental impacts; N2O is a powerful greenhouse gas (GHG) with a global warming potential 298 times greater than that of CO2 and also acts to deplete the ozone layer. Ammonia and nitrate may be deposited in aquatic or terrestrial environments resulting in indirect environmental impacts such as eutrophication, indirect GHG emissions, and soil acidification. It is therefore imperative that organic fertiliser applications are carefully managed if significant environmental pollution is to be avoided. Timing of fertiliser application is critical when considering GHG emissions as these are significantly affected by soil conditions. It is thus vital to understand how manipulation of the timing of organic fertiliser applications may reduce potential environmental effects and impact on the tradeoffs in losses of different N forms. This research has quantified emissions of N2O and NH3 following application of a variety of organic fertilisers to an arable field trial in Eastern Scotland. Emissions from spring and autumn fertiliser applications were compared, to assess what effect the timing of application has on gaseous emissions and nutrient leaching. ... 전체 초록 보기
본문·목차
인공지능 문자 인식 모델을 통해 추출된 텍스트로, 일부 오타나 오류가 포함될 수 있으나 지속적으로 개선 중입니다.
오류를 발견하셨다면 해당 부분을 드래그한 후 ' 를 통해 신고해주세요.
오류를 발견하셨다면 해당 부분을 드래그한 후 ' 를 통해 신고해주세요.