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이영희,임희정,Kazuhito Ichii,Yingnian Li 한국기상학회 2013 Asia-Pacific Journal of Atmospheric Sciences Vol.49 No.5
The Tibetan plateau plays an important role in energy and carbon cycles by providing an elevated heat source and by storing a large amount of soil carbon due to low temperature. The main vegetation of the plateau is alpine grassland. This study evaluates performance of Community Land Model 3.5 with carbon and nitrogen cycles (CLM3.5CN) over a alpine grassland in the Tibetan plateau in terms of energy and carbon fluxes in conditions of reasonable phenology and initial carbon pool comparable to observations. Comparison between model and observation shows following features. The model captures the magnitude of maximum leaf area index (LAI) but underestimats leaf mass. Net ecosystem exchange (NEE) is significantly underestimated during the growing season and soil temperature is also underestimated throughout a year with higher negative bias in winter than in other seasons. In order to examine the cause of the model deficiencies, we design four sensitivity tests:seasonal mulch; shallow rooting depth; reduction of critical soil moisture to limit the decomposition rate; smaller specific leaf area (SLA). Considering seasonal mulch improves the negative bias of soil temperature during dormant season has little effect on the NEE during the growing seasson. Underestimation of NEE during the growing season is partly due to underestimated decomposition rate which results from underestimated soil temperature and deep root placement in the soil column. Underestimation of latent heat flux during summer is partly due to use of large SLA in the model. Other deficiencies are also discussed.
Zhu, Yang,Nakanishi, Takahiro,Kanamori, Kazuyoshi,Nakanishi, Kazuki,Ichii, Shun,Iwaida, Kohji,Masui, Yu,Kamei, Toshiyuki,Shimada, Toyoshi,Kumamoto, Akihito,Ikuhara, Yumi H.,Jeon, Mina,Hasegawa, George American Chemical Society 2017 ACS APPLIED MATERIALS & INTERFACES Vol.9 No.1
<P>Multifunctional catalysts are of great interest in catalysis because their multiple types of catalytic or functional groups can cooperatively promote catalytic transformations better than their constituents do individually. Herein we report a new synthetic route involving the surface functionalization of nanoporous silica with a rationally designed and synthesized dihydrosilane (3-aminopropylmethylsilane) that leads to the introduction of catalytically active grafted organoamine as well as single metal atoms and ultrasmall Pd or Ag-doped Pd nanoparticles via on-site reduction of metal ions. The resulting nanomaterials serve as highly effective bifunctional dehydrogenative catalysts for generation of H-2 from formic acid.</P>
Rural Systems Visioneering: Paradigm Shift from Flux Measurement to Sustainability Science
김준,강민석,타이칸 오끼,박은우,카즈히토 이치이,요하나 마리아 인드라와티,조성식,문지현,유완철,이지영,이협승,카롤리 은자우,안성훈,Kim, Joon,Kang, Minseok,Oki, Taikan,Park, Eun Woo,Ichii, Kazuhito,Indrawati, Yohana Maria,Cho, Sungsik,Moon, Jihyun,Yoo, Wan Ch Korean Society of Agricultural and Forest Meteorol 2018 한국농림기상학회지 Vol.20 No.1
지속가능성과학은 다양한 학문 배경과 관심을 가진 과학자, 전문직 종사자 및 이해당사자들 간의 소통과 협력뿐 아니라 결정론적 환원주의적 접근에서 오래전 기본으로의 패러다임 전환이 요구되는 떠오르는 초학문적 연구다. 생태-사회시스템은 많은 구성성분(또는 행위자)들로 이루어져 이들의 국지 규모의 무작위 상호작용이 자연스럽게 시스템 전체 규모의 질서를 만들어내는 공진화하는 복잡계다. 여기서, 시스템과 주변환경 간의 에너지와 물질과 정보의 흐름이 중요한 역할을 한다. 본 통신에서는 이렇게 계속 변화하는 역동적 시스템, 즉 '자기-조직화하는 계층구조의 열린 시스템(SOHOs)'의 개념적 틀을 소개한다. 먼저 SOHOs의 구조와 기능성을 이해하기 위해 물리학의 두 기본 법칙을 다시 논의한다. 두 법칙의 재해석을 통해 시스템의 운명과 지속가능성을 향한 보다 나은 경로, 또한 생태계의 온전함과 사회의 비전/가치 추구를 어떻게 조화시킬 것인가에 대한 이해를 돕고자한다. 그 다음에 소위 '비저니어링(V)'이라는 틀을 되먹임/전방급전(feedback/feedforward) 루프로 SOHOs 틀에 통합시켜서, '슬쩍 찌르는(nudged) 자기-조직화'가 시스템을 구성하는 행위자들이 합력하여 지속가능한 생태-사회 시스템을 이루어 가도록 유도한다. 마지막으로, SOHOs-V의 적용사례로서, 현재 탄자니아의 농촌마을에서 진행되고 있는 미래지구의 지속가능발전목표 연구실(SDG Lab)인 '농촌시스템 비저니어링(Rural Systems Visioneering)'을 예로 제시하였다. Sustainability science is an emerging transdisciplinary research which necessitates not only the communication and collaboration of scientists, practitioners and stakeholders from different disciplines and interests, but also the paradigm shift from deterministic and reductionist approaches to the old basic. Ecological-societal systems (ESS) are co-evolving complex systems having many interacting parts (or agents) whose random interactions at local scale give rise to spontaneous emerging order at global scale (i.e., self-organization). Here, the flows of energy, matter and information between the systems and their surroundings play a key role. We introduce a conceptual framework for such continually morphing dynamical systems, i.e. self-organizing hierarchical open systems (SOHOs). To understand the structure and functionality of SOHOs, we revisit the two fundamental laws of physics. Re-interpretation of these principles helps understand the destiny and better path toward sustainability, and how to reconcile ecosystem integrity with societal vision and value. We then integrate the so-called visioneering (V) framework with that of SOHOs as feedback/feedforward loops so that 'a nudged self-organization' may guide systems' agents to work together toward sustainable ESS. Finally, example is given with newly endorsed Sustainable Development Goals (SDG) Lab (i.e., 'Rural systems visioneering') by Future Earth, which is now underway in rural villages in Tanzania.