Staging and Re-cycling


Book Description

In Staging and Re- cycling , John Keefe and Knut Ove Arntzen re-visit and reappraise a selection of their work to explore how the retrieval, re-approaching and re-framing of material can offer pathways for new work and new thinking. The book includes a collection of reprinted and first-published (although previously presented) textual material interspersed with editorial material - reflective essays from John and Knut on these pieces from the archives and original essays from invited scholars that explore the theme of repetition and re-cycling. The project has a number of aims: to suggest how the status of 'new' with regard to academic and staged dramaturgical materials may be reframed; to re-examine these through certain lenses and concepts (re-cycling; re-working; the spectator; landscape, post- and other dramaturgies); to explore the possibilities of critique offered by particular modes of juxtaposition, dialogue and dialectic; to offer further provocations to received ideas; and to retrieve and re-approach material, once published or presented, that becomes 'lost' in archives or on library shelves. As shown here, the role of the hyphen acts as an indicator to the status of 're-' in relation to the 'new'. Written for scholars and academics, researchers, undergraduate and postgraduate students, and practitioners working in all forms for theatre and performance, Staging and Re-cycling suggests a new form of dialogue between work, authors and readers, and draws out threads that extend back into the past and potentially forward into the future.










Planning for Learning through Recycling


Book Description

Plan for six weeks of learning covering all six areas of learning and development of the EYFS through the topic of recycling. The Planning for Learning series is a series of topic books written around the Early Years Foundation Stage designed to make planning easy. This book takes you through six weeks of activities on the theme of recycling Each activity is linked to a specific Early Learning Goal, and the book contains a skills overview so that practitioners can keep track of which areas of learning and development they are promoting. This book also includes a photocopiable page to give to parents with ideas for them to get involved with their children's topic, as well as ideas for bringing the six weeks of learning together. The weekly themes in this book include: what we can recycle and recycling paper, clothes and toys.




Designing Two-stage Recycling Operations for Increased Usage of Undervalued Raw Materials


Book Description

Recycling provides a key strategy to move towards a more sustainable society by partially mitigating the impact of fast-growing material consumption. Recent advances in reprocessing technologies enable recyclers to incorporate low-quality secondary materials into higher quality finished products. Despite technological development, the use of these materials in the re-melting stage to produce final alloys is still limited. This thesis addresses this issue by raising the following question: given the complexity of the reprocessing operational environment, what is the most effective way to manage two-stage recycling operations to maximize the usage of low-quality secondary materials? This thesis answers this question for two systems: when outputs from the reprocessing stage can be delivered (1) as sows and (2) as liquid metals to the re-melting stage. In the first system, the main barrier to use of these materials is the highly variable quality of raw materials. This study suggests the use of data mining as a strategy to manage raw materials with uncertain quality using existing data from the recycling industry. A clustering analysis provides criteria for grouping raw materials by recognizing the pattern of varied compositions. This grouping (binning) strategy using the clustering analysis increases the homogeneity and distinctiveness of uncertain raw materials, allowing recyclers to increase their usage while maintaining minimum information about them. In the second system, significant energy cost can be saved by immediately incorporating reprocessed secondary raw materials as liquid metal into final alloy production. In this case, the coordination between the reprocessing stage and the re-melting stage is critical. This study suggests integrated production planning for two stages. The mathematical pooling problem is used to model two-stage recycling operations. Integrated planning across the two operations can adjust batch plans and design intermediate products by reflecting demand information of final products. This approach maximizes the use of intermediate products as liquid in the remelting stage and, therefore, lowers energy cost significantly. Both strategies are applied to industrial cases of aluminum recycling to explore the benefits and limitations. The results indicate the potential opportunity to significantly reduce material costs and to increase the use of undervalued secondary raw materials.




Save that Trash!


Book Description

Many things can be made from recyclable materials.




Recycling Paper


Book Description

Papers on recycling have been a part of Conference Proceedings and Tappi Journal for decades. In just the past nine years, several hundred papers ona spects of recycling ahve been presented at conferences and published in the journal. To use htis collected body of knowledge, this book was created by reviewing and selecting the best of the appers on recycling presented at TAPPI Conference or published in Tappi Journal during the past nine years. The issues of collected wasste paper quality, deinking of newsprint, and the challenges of recycled paper production are addressed in these pages. Solid waste, mandatory collection, quality control, "stickies" contamination, and more are all a part of this collection.










Integrated Planning for Design and Production in Two-Stage Recycling Operations


Book Description

Recycling is a key strategy to reduce the environmental impact associated with industrial resource use. Recent improvements in materials recovery technologies offer the possibility for recouping additional value from recycling. However, incorporation of secondary raw materials into production may be constrained by operational complexity in two-stage blending processes. In this paper, we derive a analytical solution to demonstrate the importance of integrated planning (IP) approaches for two-stage blending operations in recycling. Our results suggest that the quality of materials obtained from the first stage strongly influences performance in the second stage. Current disjointed planning (DP) approaches in the recycling industry, where individual stages are independently planned without decision-making about intermediate blend design, overlook this interaction and, therefore, make conservative use of lower quality materials. We develop an IP model using a formulation of the pooling problem and apply it to an industrial-scale aluminum recycling facility located in Europe. The results suggest that the IP model can reduce material costs by more than 5%, for the case examined, and can enable increased use of undervalued raw materials. This study also investigates the impact of variations in operational conditions on the benefits of IP.